Bulletin BULLETIN of the , ILLINOIS NATURAL HISTORY SURVEY [ I HARLOW B. MILLS, Chief t ( The Mosquitoes of Illinois (Diptera, Culicidae) HERBERT H. ROSS \ 1 I j Printed by Authority of the STATE OF ILLINOIS J DWIGHT H. GREEN, Governor k ^ DEPARTMENT OF REGISTRATION AND EDUCATION FRANK G. THOMPSON, Director STATE OF ILLINOIS DvviGHT H. Green, Governor DEPARTMENT OF REGISTRATION AND EDUCATION Frank G. Thompson, Director NATURAL HISTORY SURVEY DIVISION Harlow B. Mills, Chief lume 24 BULLETIN Article 1 The Mosquitoes of Illinois (Diptera, Culicidae) HERBERT H. ROSS Printed hy Authunty of the State of Illinois URBANA, ILLINOIS Auijust 1947 STATE OF ILLINOIS DwicHT H. Green, Governor DEPARTMENT OF REGISTRATION AND EDUCATION Frank G. Thompson, Director BOARD OF NATURAL RESOURCES AND CONSERVATION Frank G. Thompson, Chairman Carl G. Hartman, Ph.D., Biology Gforge D. Stoddard, Ph.D., President L. H. Tiffany, Ph.D., Forestry of tlie University of Illinois L. R. HowsON, B.S.C.E., C.E., Engineering Walter H. Newhouse, Ph.D., Geology Roger Adams, Ph.D., D.Sc, Chemistry NATURAL HISTORY SURVEY DIVISION Urbana, Illinois Scientific and Technical Staff Harlow B. Mills, Chief Bessie B. Henderson, M.S., .Assistant to the Chief Section of Aquatic Biology George W. Bennett, Ph.D., Limnologist D. F. Hansen, Ph.D., Assistant Zoologist Paul G. Barnickol, M.A., Ichthyologist Elizabeth B. Chase, Ph.D., Research Assistant Section of Economic Entomology G. C. Decker, Ph.D., Entomologist J. H. Bigger, M.S., Associate Entomologist L. L. English, Ph.D., Research Entomologist S. C. Chandler, B.S., Southern Field Ento- mologist James W. Apple, M.S., Northern Field Ento- mologist C. J. Weinman, Ph.D., Associate Entomolo- gist John M. Wright, B.A., Assistant Entomol- ogist Willis N. Bruce, B.S., Assisitant Entomolo- gist H. B. Petty, Jr., M.A., Associate in Ento- mology Extension George F. Ludvik, M.A., Special Research Assistant John E. Porter, M.S., Laboratory Assistant Clara Z. Eisenberg, B.S., Laboratory Assist- ant Section of Faunistic Surveys and Insect Identi- fication H. H. Ross, Ph.D., Systematic Entomologist Cail O. Mohr, Ph.D., Associate Entomolo- gist, Artist (on leave) B. D. Burks, Ph.D., Assistant Entomologist Milton W. Sanderson, Ph.D., Assistant Entomologist Lewis J. Stannard, Jr., B.S., Assistant Ento- mologist Elizabeth N. Maxwell, B.A., Artist, Ento- mological Assistant Phyllis A. Beaver, Laboratory Assistant Section of Forestry WiLLET N. Wandell, M.F., Forester Lawson B. Culver, B.S., Extension Forester Section of Game Research and Management R. E. Veatter, Ph.D., Game Specialist Dean H. Ecke, Assistant in Game Research Section of Migratory Waterfowl F. C. Bellrose, Jr., B.S., Associate Game Technician Harold C. Hanson, M.S., Assistant Game Technician Cooperative Wildlife Research (fVitJi State Department of Conservation and U. S. Fish and ff'ildlife Service) C. C. Swears, M.F., Project Leader George C. Arthur, B.S., Project Leader Paul J. Moore, B.S., Project Leader A. B. Cowan, B.S.F., Assistant Project Leadei Section of Applied Botany and Plant Pathology Leo R. Tehon, Ph.D., Botanist J. C. Carter, Ph.D., Associate Botanist G. H. BOEWE, M.S., Field Botanist J. L. FORSBERG, M.S., Research Pathologist Robert A. Evers, M.S., Assistant Botanist Section of Publications James S. Ayars, B.S., Technical Editor Frances B. Kimbrough, B.S., Assistant Tech nical Editor Robert E. Hesselschwerdt, B.A., Assistant Technical Photographer Technical Library Marguerite Simmons, M.A., M.S., Techni- cal Librarian Consultants in Herpetolocy: Howard K. Gloyd, Ph.D., Director of the Museum, Chicago Academy of Sciences; Clifford H. Pope, B.S., Curator of Amphibians and Reptiles, Chicago Natural History Museum. This paper is a contributionfrom the Section of Insect Surucy. CONTENTS BIOLOGY 1 Eggs.—Larvae.—Pupae.—Adults.— Hibernation.—Habitat Preferences. SEASONAL DISTRIBUTION 8 DISTRIBUTION PATTERN 8 ECONOMIC IMPORTANCE 9 CONTROL CONSIDERATIONS 9 :OLLECTING AND PRESERVING 10 Larvae.—Adults.—Labeling. 5TUDY TECHNIQUES 12 Larvae.—Adults. REARING 13 Individual Rearings.—Group Rearings.—Larval Food.— Temperature, Aeration, and Sunlight. CLASSIFICATION 14 Terminology.—Literature.—Material Studied.—Acknowledgments. Key to Subfamilies 16 CH.-iOBORINAE 17 CULICINAE 17 Mosquitoes of Illinois 17 Key to Genera 17 Anopheles 24 Meffarhinus 32 Uranotaenia 33 IVyeornyia 34 Mansonia 35 Orthrtpodomyia 36 Culise/a 37 Ciilex 40 Jedes 52 Psorophora 82 LITERATURE CITED 9,3 INDEX 95 One of the largest Illinois mosqui- toes is the "gallinipper," Psorophora ciliata, which may attain a wingspread of 15 mm. (over half an inch). It is a vicious biter and is generally distrib- uted over Illinois. The larvae or wig- glers of this species breed in rain pools and have the habit of feeding on larvae of other mosquito species. The Mosqviitoes of Illinois (Diptera, Culicidae) HERBERT H. ROSS MOSQUITOES are midgelike insects cif various sizes, some of them minute, some of them nearly a half inch Ions. I hey belong to the family Culici- dae, which belongs to the order Diptera, embracing the common housefly and other two-winged flies. Mosquitoes have aquatic larvae called wiggle-tails, wigglers, or wrig- glers, which transform to aquatic pupae called tumblers. The adults, which emerge from the pupae, are aerial. About 150 species of mosquitoes are known to occur in the United States and Canada, and 52 of these have been taken in Illinois. The Illinois mosquito fauna repre- sents a combination of the northern and the southern mosquito faunas, a combination not yet treated in the various reports giving keys to the faunas of limited regions. Mosquitoes are a real nuisance in many parts of Illinois. Although some of the more intensively farmed areas are compara- tively free from all but local incursions of imosquito broods brought on by unusual weather conditions, in all other parts of the state mosquitoes are a perennial problem. An extremely vicious biter, the salt marsh Imosquito. Aedes soUicitans, has invaded a ifew Illinois cities. The malaria mosquito, \Anrjpheles quadrimaculatus, is a menace to ihuman health in some areas. To be eco- nomical as well as effective and thorough, a control program for these and other mos- jquitoes must be based on accurate identifica- tions of the species involved and a knowl- edge of their peculiarities of life history and habits. The nation's annual "mosquito bill" is high—probably $100,000,000 due to mos- quito-borne diseases, and close to $50,000,- 000 for screening, pest control programs, and depressed real estate values. The object of this paper is to provide means for making mosquito control pro- grams more effective, first by furnishing illustrated keys and descriptions for the identification of mosquito species that occur in Illinois and states similar in climate, and second by summarizing information regard- ing the distribution, biology, and habitat preferences of the species. BIOLOGY Mosquitoes, in common with other groups of flies, have four distinct stages in their life history: (1) the egg, laid by the female; (2) the larva, wiggle-tail, wiggler, or wrig- gler; (3) the pupa, or tumbler; and (4) the adult fly. Eggs Eggs deposited by Illinois species of mos- quitoes fall into three fairly distinct cate- gories: (I) those laid singly on water; (2) those glued together in rafts that float on water; and (3) those laid singly in damp humus or other semidry material. Eggs Laid Singly on Water.—In this category belong the eggs of Anopheles, fig. \C. They are elongate oval, usually pointed at one end, and have a pair of lateral floats. From 100 to .?00 eggs may be laid by an adult female after taking a blood meal; usually the eggs hatch in a few days. Little is known about the eggs of the tree hole genus Meff/irliinus e.xcept that they are laid singly on the surface of water. Anopheles and Megarhinus are the only genera in this class known to occur in Illinois. Eggs Laid in Rafts on Water.—The eggs of many mosquito genera are deposited side by side in such a manner as to form a raft, tig. \A. This raft floats on the surface of water, and the eggs hatch in a few days, each larva escaping from its egg at the end that touches the water. The raft may con- tain a hundred eggs or more. In the genera Culex, Culiseta, Mansonia, and Uranotae- nia, eggs are deposited in rafts. The larvae of all these groups breed in permanent bod- ies of water. Eggs Laid Singly in Semidry Places. — In many genera ot mosquitoes, including Aedes, Psorophora, Orlhopodo/nyia, and [ 1 ] Illinois Natural History Survey Bulletin Fol. 24, Art. 1 JVyeomyia, the eggs are laid out of water, but they do not hatch until water has risen and inundated them. The eggs may be laid either just above the water line in such sit- uations as tree holes, various water contain- ers, and marsh edges, or in damp humus in the bottoms of recently dried-up pools that are subject to periodic flooding. The eggs of Aedes, fig. \B, and Psorophora, normally known as intermittent breeders. They in elude all species of Psorophora and certain species of Aedes: vexans, sollicitans, trivit-'. tatus, and many southern species. In the other class, called annual breeders, because only one generation is developed each year, the eggs must be subjected to winter freez- ing before they develop. Eggs laid by the adults of one generation do not hatch with j L1 Fig. 1.—Eggs of mosquitoes: A, Ciilex restuans; B, Aedes taeniorhynchus ; C, Anopheles guadrimaculatus. (After Howard, Dyar, & Knab.) laid in damp humus, are adapted to with- stand desiccation and may lie dormant 1 or 2 years without losing their viability. Wye- omyia lays its eggs above the water line in the pitcher plant, and these eggs do not hatch until the water within the pitcher rises. The same habit is a characteristic of the tree-hole mosquitoes, Orthopodumyia and Aedes triseriatus and aegypti, which lay eggs on the sides of tree holes or water contain- ers just above the edge of the water so that with a rise in the water level the eggs hatch. The species of Psorophora and Aedes, which lay their eggs out of the water, may be divided into classes with respect to sig- nificant differences in egg hatching. In one class the eggs hatch as soon as they are flooded; since in this species the life history is completed rapidly, several generations usually are produced in a summer as pools dry and flood with alternate dry and rainy periods. Species belonging to this class are summer flooding but lie dormant through the winter and hatch the next spring. To this class belong many species of Aedes, such as grossbecki, stimulans, and implaca- bilis. Larvae The mosquito larva or wriggler, fig. 2,' has a distinct head, broad thora.x, and tubu- lar abdomen. It lives only in water. The larval period is one of feeding, 4uring which the small larva hatching from the egg grows to a size large enough to produce the adult^ fly. Unlike the adult, this larva has no( beak and does not suck food; instead it haS' a series of brushlike rakes in addition to thei grinding and grasping mouthparts, a combi- nation enabling it to strain, scoop, and ingesti small aquatic organisms and particles of: plant or animal matter floating in or upon the water or resting on the bottom. In the duffust. 1947 Ross: Mosquitoes of Illinois few genera in which the hirvae are preda- ceous on other mosquito larvae, the mouth- parts are sharp-toothed for grasping and swallowing the prey. Unlike fish, the wriggler does not obtain oxygen from the water by means of gills. When in need of air, the larva in most spe- cies swims upward until it is just below the surface of the water, if it is not already there, and sticks the breathing apparatus (in some species a tube and in others a plate), which is near the end of the abdomen, through the surface tension membrane into actual contact with the air, fig. 2. With the larva in this position, the air inside the body is exchanged for fresh air above the water. Among Illinois mosquitoes, only the larva of Marisoitiii does not come to the surface for air. In this species, fig. 18, the air tube forms a sharp, piercing organ, which is thrust into the air chambers in the under- water portions of marsh plants such as the cattail. The larva of Mansonia obtains its oxygen entirely from this source. The larvae of Illinois mosquitoes may be divided into two distinct types on the basis of breathing structures and feeding habits, the anopheline type and the culicine type. In the anopheline type (including only the genus Anopheles) , the larvae normally rest paral- lel to the surface, touching the surface ten- sion membrane, fig. 2A. They have no air tubes; the spiracles form a flat structure on the back of segment 8. The larvae normally twist their heads through a 180-degree angle and feed on microorganisms or other parti- cles at or on the surface, but occasionally feed below the surface much as do culicine larvae. When disturbed they swim to the bottom and hide. In the culicine type, the larvae normally feed on or near the bottom and come to the surface only periodically for air. This group includes all of the Illinois mosquitoes except Anopheles, and all of them have distinct air tubes. The predaceous species, such as Psorophora cillata, do not feed on bottom microorganisms but usually cruise near the bottom and grasp their prey F'S. 2.—Larvae of mosquitoes: A, Anophrles : B, Ciilrx. (.'\fter King, Bradley, & McNeel.) Illinois Natural History Survey Bulletin Vol. 24, Art. 1 Fig^. 3.—Pupa of mosquito. (After King, Bradley, & McNeel.) there. The curious genus Mansonia is also included in this group although, as mentioned above, it does not come to the surface for air. It is a true bottom feeder. Pupae The pupae do not feed but they breathe in the same manner as the larvae; the air tube is situated on the thora.x, fig. 3, instead of near the end of the abdomen as in the larvae. The pupal stage, in which the mus- cular and other body structures of the larva are broken down and reorganized into the structures of the adult, generally lasts only a few days. At the end of that time the mature pupa comes to the surface of the water, and the adult within it breaks the pupal skin, crawls out onto the surface of the water, and flies away. Adults Mosquito adults, fig. 4, are fairly small, delicate, winged flies, quite slender, and always with long, spindly legs. All the adults of the true mosquitoes have beaks. The visible part of the beak is a scabbard or sheath in which a group of extremely fine stylets makes up a needle-like piercing and sucking organ; it is the function of the sheath to keep this slender needle straight when it is thrust through the skin of the animal upon which the female mosquito feeds. Both males and females fly with a distinct humming or buzzing sound. Only the female mosquito "bites," or feeds upon animals; the male feeds on nec- tar and water. Whereas the female seeks out her prey and may travel long distances to it, the male is relatively inactive, gener- ally hiding in grass or shrubbery except dur- ing the mating flights. There is evidence that the female does not bite for several Fig. 4.—Adult of Aedes aegypti. (From photograph, loaned by the U. S. Public Healt!J Aiujust. 1947 Ross: Mosquitoes of Illinois days after she becomes an adult. Not all species bite humans. Some feed on nectar, and it is thought that a few others feed chiefly either on plant juices or the blood of birds and small mammals. Females of most species seek their blood meal during the dusk and night periods. Many of these same mosquitoes attack readily in the late afternoon or on cloudy days and during the dawn period. The woodland species almost invariably bite throughout the day, although their attacks are usually most vicious during the crepus- cular period. A few species attack readily in the open during the day time. Probably the best known Illinois species having this habit is Anopheles walkeri. Of unusual interest is the biting habit of Psorophora cyaneseens, which attacks in the open and during times of bright sunlight. Flight habits of mosquitoes have been the subject of considerable study, in which marked or colored specimens have been released and their recovery in light traps or resting places has been plotted. A spe- cies of mosquito apparently will behave dif- ferently under different conditions. It is usually considered that malaria mosquitoes normally have a flight range of not more than 1 or 2 miles. Probably the longest flight ranges occur in species of Aedes. It is not unusual for summer swarms of Aedes vexans to migrate 2 or 3 miles and possibly up to 15 miles, and the salt water mosquito, Aedes sollicitans, has been known to migrate 40 or 50 miles. Many woodland species appear to be fairly restricted in their move- ments and seldom leave the piece of woods in which they have matured. The length of life of adult mosquitoes is not well known. Some of the Anopheles and Aedes females undoubtedly live 1 or 2 months during the summer period. The adults that hibernate have a much longer life span. Hibernation The great majority of Illinois mosquitoes, including most of the species of Aedes and Psorophora, hibernate in the egg stage. A few species, such as If'yeomyia smithii. Anopheles barberi, and species of Orthopo- domyia, hibernate as larvae frozen in pitcher plants or tree holes in which they breed. Anopheles, Culex, and at least inornata of Culiseta overwinter as fertilized females. The males die with the advent of cold weather. The females hide in hollow trees, cellars, manholes, and other sheltered places, from which they emerge in spring and lay c.iiiis. Habitat Preferences The various species of mosquitoes differ greatly in the type of habitat frequented by the larvae. Some species breed in a great variety of situations, whereas others are extremely restricted in their breeding places. The following summary outlines in a general way the habitats preferred by the Illinois species. Running Water.—Anopheles punetipen- nis usually breeds in small streams, fre- quenting the edges and shallow areas where the current is sluggish. This species breeds with equal success in still water. A few species of Culex sometimes breed in moving water heavily laden with organic matter where the current is slow. These same species normally breed in still water. Still Water.—All Illinois species will breed in still water, and most of them only in still water, chiefly small ponds and pools of many types, the shallow edges of lakes, and the still water in shallow, dense weed beds along the edges of streams. Still water habitats are of several types and may be classified as permanent, temporary, special- ized, and semidomestic areas. Permanent Are.as.—^AU species that lay eggs on the surface of the water, whether singly or in rafts, frequent permanent water areas. All prefer areas with shallow water and little wave action, abundant cover in the form of at least moderate aquatic vegeta- tion, and abundant food in the form of humus or other organic matter on the bottom and floating particles or microorganisms at the surface. Marshes, fig. 5, or shallow ponds with cattails, sedges, and associated aquatic vegetation are ideal for many mos- quito species. Tempor.ary Areas.—In this category are ponds that till with water intermittently for variable periods. In all these ponds one of the chief requirements for a good mosquito habitat is that they have ample organic matter (usually in the form of rotting leaves) on the bottom. In Illinois, temporary ponds are extremely varied with respect to how and when they are tilled, where they are situated, and how Illinois Natural History Survey Bulletin Vol. 24, Art. 1 Fig. 5.—Marsh near Hinsdale, Illinois. In spring the more abundant mosquitoes at the marsh edge include Culiseta inornata, Aedes fttc/iii, Acdes vexans, and Culex apicalis. long they last. Most of them fall into one of four classifications: winter seepage ponds, flood plain ponds, summer rain ponds, and marsh edges. Winter seepage ponds fill up during the winter or early spring with surface or seep- age water from winter precipitation or the spring thaw. Ponds of this type, fig. 6, may have water in them for several months, but during much of this time the weather is too cold to allow mosquito development. They support many of our most vicious early spring Aedes, especially canadensis, stimu- lans, grossbecki, and Implacabilis. The same species occur in flooded stump holes, fig. 7. Flood plain ponds form with the over- flow and retreat of streams that leave iso- lated pools of water scattered throughout the flood plain. These are favorite places for many Aedes, especially the early spring species sticticus, and some Pjoro/i/iora species. 1 Summer rain ponds form in many depres-| sions during heavy summer rains and remain for periods of a few days or weeks. In these breed Aedes vexans and many species of Psorophorn Fig. 6.—Woodland pool, Bensenville, Illinois. This spring pool contains an enormous popu-- lation of Aedes stimulans. It dries up in summer. August. 1947 Ross: Mosquitoes of Illinois Vi n-A^ J \t^ J' '%• '4 Fig. 7.—Stump hole, Bensenville. A favorite habitat of Aedes canadensis. Marsh edges that are alternately flooded and exposed by the rise and fall of water give the same conditions as temporary ponds, as far as mosquitoes are concerned. These marsh edges or margins, fig. 5, are impor- tant mosquito breeding grounds, especially for Aedes rexans. Spechlized H.ABiTATS.—Two situations of unique interest from the standpoint of the mosquito fauna are tree holes and pitcher plants. Each of these may harbor species of mosquitoes found in no other situation. Tree holes, fig. 8, include cavities within standing tree trunks and inside fallen trees (Jenkins & Carpenter 1946). Illinois mosquitoes that are restricted to this habitat include Megarhinus septen- trionalis, species of Ortliopodornyia, Anoph- eles barberi, and Aedes Iriseriatus. The tree holes fill up either with rain water or with sap that has risen within the wounded tissues. Larvae that live in the tree holes develop much more slowly than is usual for species living in ponds. Only one Illinois spe- cies of mosquito, fVyeomyia smithii, breeds in pitcher plants; it is found in no other situation. Its larva feeds on decomposini; animal material trapped in the pitcher. Semioomkstic Situations.—Several spe- cies of mosquitoes breed readily in situations around human habitations. They breed in the water that accumulates in fish ponds, tin cans, or almost any other type of container, fig. 9. They may frequent also the accumu- lation in stopped-up eaves troughs, drains, and cisterns. In Illinois the chief species found in these situations are Culex restnans, pip'uns. and quinquefasciatus. In contain- ..'-^ST Fig. 8.—Tree hole at Starved Rock State Park. This is the habitat for Aedes Iriseria- tus, Orlhopndomyia species, and Anopheles barhcri. 1 Illinois Natural History Survey Bulletin J'ol. 24. Art. 1 Fig. 9.—Refuse heap near Wilmette, Illinois. Water in the containers is a favorite breeding place for Culex pipiens and restuans. ers that are out of doors and that have in them an abundance of organic material (neglected fish ponds are the favorites), Anopheles punctipennis may breed in enor- mous numbers. Aedes aegypti also breeds in similar containers, usually those inside build- ings. SEASONAL DISTRIBUTION The various mosquito species appear in a fairly definite sequence as the season advances. The earliest species are Aedes, whose larvae develop in the spring pools. In southern Illinois the principal species are canadensis, grossbecki, and sticticus, through the central part of the state canadensis and sticticus, and in the northeastern part stim- ulans, implacabilis, fitchii, and others. In southern Illinois the first emergence may occur as early as April 1, in northern Illi- nois by the middle of May, but usually first emergence is about two weeks later than these dates. The early Aedes listed above are without e.\ception annual breeders. They are followed in rapid succession by Culiseta inornata and Culex apicalis. A week or so after these appear, the large number of summer species begin to make their appearance. These include Anopheles, several species of Culex, and usually Aedes vexans and trivittatus. The summer spe- cies continue to breed in suitable locations throughout the summer or intermittently with the summer rains. A third group of species, which includes Culex quinquefasciatus and Uranotaenia sapphirina, may be present early in the sea- son, but an appreciable population of this group usually does not appear until at least midsummer. When the spring weather is uniformly cold well into May, and then is followed by a series of warm weeks, early and midsea- son species come out together, and there is little demarcation apparent between sea- sonal groups. DISTRIBUTION PATTERN The mosquito fauna of Illinois resolves itself into three well-marked groups: (1) species of wide distribution, which are gen- erally distributed in Illinois; (2) northern species that have a range widespread to the north, and that occur in only the northern portion of the state; and (3) southern spe- cies that have a range extending only slightly into Illinois and that are only spo- radic north of the southern third of the state. The species that are generally distributed include some of our most abundant nui- sance species, such as Aedes vexans, trivit- tatus, canadensis, and sticticus, Psorophora ciliata and ferox, Culex pipiens, apicalis, and restuans, and Culiseta inornata. Northern species whose range extends into northern Illinois include many of the annual-breeding large Aedes found in the glacial bogs and marshes in the extreme northeastern corner of the state. These species are Aedes implacabilis, punctor, stimulans, excrucians, fitchii, flavescens, and cinereus. A few of these, such as flavescens and punctor, are rarities; excrucians is pres- ent in only moderate numbers; the other species breed tremendous populations. Other mosquitoes in this northern group include Culiseta morsitans, confined to the tamarack bogs, and PFyeomyia smithii, the pitcher plant mosquito, which also occurs only in tamarack bogs. On the basis of Illinois collecting. Anopheles walkeri appears to be in the same group, since in this state it is abundant only in the cattail marshes and bogs of the northern part; records from other states indicate, however, that its range extends far to the south where marshes are available. Another northern mosquito taken in Illinois is Aedes spencerii, for which our only record came from the northwestern corner of the state. Many southern species have been taken in the extreme southern tip of Illinois, most of them in the woodland pools of the post oak flats in the Mississippi River valley. The post oak flats list includes Aedes ftilvus Amjiisl. I'Ul Ross: Mosquitoes of Illinois piillciis, iluprccl, and grnssbccki, Psorophora hrnvardii. and Anopheles erucians. Aedcs thihautti has been taken near Carbondale, only 50 miles north of Cairo at the southern tip of Illinois. Psorophora discolor, varipes, and cyanescens , and Megarhhius septeiitri- oiialis are southern species which often occur in the southern eighth or fourth of Illinois and sometimes sparingly north of that. Aedes acgypti is another southern mos- quito that has been taken in the St. Louis area and southward. Apparently it is unable to maintain itself there and occurs only as a temporary adventive during favorable years. The southern house mosquito, Ciilex quinquefdsciattis, which has been taken in some numbers in southern Illinois, occasion- ally extends northward at least as far as Urbana. Present collection data are far from conclusive but suggest that unfavor- able winters push back the range of this species and that it migrates northward again during a succession of favorable years. Perhaps our most unusual record is that for Aedes aurifer, a northern and eastern mosquito for which we have only one Illi- nois record, from the e.xtreme southern tip of the state. Almost as unusual is the occur- rence of the northern Aedes cinereus in the same locality. Presence of these northern species in southern Illinois illustrates a tend- ency, which has been noticed in several other insect groups, for occasional northern spe- cies to occur in or near the Mississippi River region south of the main body of their range. ECONOMIC IMPORTANCE Mosquitoes cause an economic loss both as nuisances and as disease carriers. The nuisance category includes all those species that inflict painful bites but that are not known to carry diseases. Most impor- tant in this group are the various species of Aedes and Psorophora : in cities and towns, species of Culex are of prime importance. Mosquitoes in the nuisance group inllict financial loss in various ways. In some sec- tions they restrict the vacation season, with subsequent loss of patronage to resort estab- lishments. They attack domestic animals and fow Is and, when in large numbers, cause loss of weight and health. It has been esti- mated that 500 mosquitoes will draw one- twentieth of a pint ot blood per day from an exposed animal. Sometimes mosquitoes become so abundant as to interfere with or stop work by man, with a consequent loss of labor and accomplishment. Mosquitoes are among the worst nuisances of the out- of-doors and prevent enjoyment of recrea- tional facilities by many people seeking exer- cise and relaxation. Disease-transmitting mosquitoes arc the sole vectors of malaria in human beings. Malaria is an endemic disease in southern Illinois. Only 50 miles to the south of Illi- nois, in the Mississippi River valley, occurs one of the high density areas of this disease in eastern North America. Anopheles quad- rimaculatus is considered the only impor- tant mosquito species capable of transmit- ting the disease in Illinois. Several other human diseases, such as yellow fever, filariasis, and dengue, arc transmitted by certain species of mosquitoes that occur in Illinois. However, recent out- breaks of these diseases are so far removed geographically from Illinois, or the known mosquito vectors are so rare in this state, that the diseases are not considered a serious threat to Illinois citizens at the present time. Public health workers have pointed out that a number of the service men returning from areas in the Pacific and Oriental regions where many insect-borne diseases occur will have been infected with these diseases. It is entirely possible that, upon returning home, the men may be a source from which mosquitoes may become infected with some of the tropical diseases and trans- mit them to other persons resident in the same locality. There is little possibility of knowing when and where such situations will arise. At the present time this problem seems to resolve itself into one of early detection and accurate diagnosis of the dis- eases by local medical authorities. Up to the present time measures insti- tuted against mosquitoes in Illinois have been directed toward abatement of nuisance species or toward control of the malaria vector. Anopheles qiiadrirnaculalus. CONTROL CONSIDERATIONS Control measures require consideration as individual problems in each community or locality. In different localities different species of mosquitoes are encountered, bring- ing into the control problem the treatment of different habitats, and involving differ- ences in number and seasonal timing of 10 Illinois Natural History Survey Bulletin Vol. 24, Art. 1 mosquito generations. Vagaries of precipi- tation or flooding frequently require rapid and unexpected changes in control plans. Control measures, to be both economical and thorough, must be based on data obtained by a collecting and identification program. It is wasteful to attempt control measures of every water surface within an area, because many bodies of water (and frequently the most extensive ones) do not serve as breeding places for mosquitoes. Before actual control measures are planned, therefore, larval collections should be made that will serve as a guide to the areas to be treated. To check the efficiency of control opera- tions, it is necessary to supplement larval collections with biting records and adult collections throughout the season. These should include light trap collections and col- lections from resting stations. The persistence of adult mosquitoes in a control area (shown by collections and biting records) may indicate that breeding places within the area have been overlooked or that mosquitoes are coming in from sur- rounding territory. After overlooked sites have been eliminated, collection and identifi- cation of larvae from breeding places in surrounding territory will indicate addi- tional places which should also be treated. When adult mosquitoes are identified as to species, facts about them, fundamental in controlling them, can readily be ascertained: (a) the types of situations in which larvae should be sought and (b) breeding habits, that is, whether the mosquitoes are annual, intermittent, or persistent breeders. Such information is useful in searching out places where control treatments must be applied and determining whether the treatments need to be applied only once a year for annual breeders, following rains or floods for intermittent breeders, or at regular intervals for persistent breeders. COLLECTING AND PRESERVING Mosquitoes, both adults and larvae, are so delicate that their hairs and scales, upon which identification is based, are readily broken or rubbed off by careless handling. For this reason it is necessary to use great care in the procurement of material and in its subsequent handling and preparation for study. Larvae A white enameled dipper, about 6 inches in diameter, is the most convenient utensil for collecting mosquito larvae. It may be used to dip up larvae from ponds and open water. The larvae can be removed from the dipper by one of two methods: ( 1 ) by pulling them into a wide-mouth medicine dropper and then discharging them into a vial of preservative or into a rearing cap- sule or (2) by pouring the contents of the dipper slowly onto a cloth strainer, picking the larvae off the cloth with forceps, and transferring them to a preservative or to a rearing vial. Hairs of the larvae are easily knocked off or the larvae mutilated in other ways if the transfer is made carelessly. Alcohol makes a satisfactory preserva- tive; 80 per cent alcohol is strong enough if the larvae are transferred to it with forceps. If a medicine dropper is used to transfer the larvae, a few drops of water will be dis- charged into the preservative with each larva, and a stronger solution of alcohol should be used. Not more than two live larvae should be placed at the same time in a single vial. If many thrash around in the vial, they knock the hairs off each other.! As many as 10 larvae may be put in a three- • dram vial, but they should be put in one at a time; the second and succeeding larvae should not be put in until the first and others have died. The most satisfactory way to kill a larva desired for a specimen is to place it in a separate killing vial and transfer it to a stock vial after it has died. If larvae are handled in a vial only par- tially filled with preservative, they will jounce around, with a consequent loss of hairs and tufts. If the specimens are in a vial that is filled with preservative, without a single air bubble in it, they will move only slowly, no matter how violently the vial is agitated, and suffer no damage. To preserve larvae in this way, the follow- ing procedure is recommended. Put the dead larvae in a small shell vial; put this vial, open end up, in a larger vial containing alcohol above the top of the shell vial. Now pick up a plug of cotton with a pair of for- ceps, soak the cotton with alcohol, and plug the open end of the shell vial with the cot- ton under the alcohol. Then take the shell vial out of the larger vial, put it in again plugged end down, and stopper the large vial, fig. 10.^. Aiiijiist, 1947 Ross: Mosquitoes of Illinois 11 Fi^. 10. — A, vial with inner vial contain- ing mosquito larvae. B, mosquito mounted on crimped point and genitalia in microvial with pin through cork. The plug is prepared by rolling a small piece of cotton between the fingers until it is fairly hard ; after a little practice, a plug can be gauged that will fit the shell vial tightly but that is not so large that the vial will be broken when the plug is forced in. For storage, the larger vial should be kept well filled with alcohol ; no evaporation will occur froin the inner vial until the alcohol in the outer one is almost gone. Adults There are three principal methods of col- lecting adult specimens: (1) by placing a killing tube over them as they sit in natural resting places or as they alight to bite, (2) by sweeping them from vegetation around their breeding places or sweeping them in the air as they swarm in mating flights, and (.?) by attracting them to light traps. Killing Tube.— Collecting adults with a killing tube calls for the same careful indi- vidual attention as does collecting larvae. Scales of the adults rub off very easily. For this reason, a tube with a strong killing agent should be used and only one live mosquito should be placed in a tube at one time, never more than 6 to 10 dead ones. It is wise to carry several boxes with loose, rumpled cellucotton in the bottom and to transfer to these each dead mosquito from a killing tube. These bo.\es, which should have tight- fitting lids to prevent accumulation of dust on the specimens, should be so placed some- where in the vehicle used for transport that they will not tip. Sweeping.—Sweeping around vegetation does not net good study specimens of females, but it is valuable in collecting males. Fre- quently the males are present around a pond after all the immature stages in it have matured. Collections of males often give an accurate clue as to the species that develop in the pond, and their proportionate popula- tions. The type of sampling done by sweep- ing vegetation is especially valuable in scout- ing temporary pools. A standard sweep net can be used, and the males picked out of the net with an aspirator. If the collector desires to obtain, by using a net, female mosquitoes that are in good condition, it is advisable that the net bag be made of very fine, light material. F"or routine collections of males, it is more practical to use a heavy bag that will withstand the abuse involved in hitting shrubs, thick herbage, and the like. Light Traps.—A standard light trap used Fig. 11.—Light trap. (Photograph by cour- tesy of Bureau of Entomology and Plant Quar- antine, U.S.D.A.) 12 Illinois Natural History Survey Bulletin Vol. 24, Art. for mosquitoes at the present time is the New Jersey light trap, fig. 11. This attracts mosquitoes by means of a low wattage elec- tric light bulb and is provided with a fan that blows them into a killing jar. The light bulb and fan are fastened to the inside of a large cover, which sheds rain, and a funnel is below the fan, fastened to three legs that support the trap when it is placed on the ground. The standard trap has a handle on the top, so that in the field it may be hung in a tree or from some other sup- port. Mosquito specimens collected in this type of trap are usually in fairly good con- dition. Occasionally a swarm of beetles will be attracted to the light and blown into the killing jar. The beetles will crawl and thrash through the collection and mangle the mosquitoes. Individual catches from each trap should be placed, while still pliable, between layers of cellucotton in pill boxes. These layers should be thick enough to dry the insects thoroughly; otherwise mold may engulf the collection and render it useless for study. At the top of the pill box enough extra cot- ton should be added so that, when the lid is put on, the contents will be held firmly, but not so tightly as to crush the specimens. The container may then be transported with- out injury to the contents. A collection of pill boxes having different diameters and cardboard boxes 2 by 3 inches to 3 by 5 inches gives a good selection for handling catches of various sizes. These containers should be packed with cotton in a larger box if shipped by mail. Labeling No matter what type of collection is made, each container, whether box, tube, or vial, should be labeled with station number, locality, date of collection, and name of col- lector. If the collection is of adults, note should be made of whether each container represents a biting record, a catch in a rest- ing station, a light trap catch, or a sweep- ing record. STUDY TECHNIQUES When the mosquito material, either larval or adult, is brought to the laboratory for study, the same care must be exercised in its further preparation as was expended in its collection. Larvae In most instances it is satisfactory to pre serve larval material in alcohol. Diagnos tic characters in most groups are seen read ily on specimens in fluid. For detailed studies of pecten and comb scales, a permanent mount is desirable. The larva should be dehydrated by being run through the alcohols to 95 per cent, cleared in benzol or cedar oil, and then mounted in Damar balsam. Each larva with an air tube should be cut through the seventh abdomi- nal segment and the anterior portion mounted with the dorsum up and the poste- rior end with the left side up. This mount- ing will allow the study of the largest num- ber of characters to best advantage. Pieces of broken slides should be placed around the specimen in such a way that they prevent the cover slip from flattening and distorting the specimen. When the air tube is flat- tened, its proportionate length to width becomes greatly distorted and cannot then be used as an accurate guide for identifica- tion. Adults Material brought in from the field should i be mounted for study. A very satisfactory method of mounting is to glue the insects on card points. If the end of the point is * crimped down quite a distance, and moder- ately thin cellulose cement is used for glue, a neat mount can be made with the dorsum i of the specimen uppermost. Before being : pinned, adult specimens should be relaxed 1 for a short time. There is a tendency fort the specimen to become greasy if relaxed I too long, and care must be observed regard- ing this point. Full data labels should be put on every specimen. Critical study of adult material frequently requires detailed examination of the geni- talia. A preparation of the genitalia may be made as follows: snip or break off the posterior half of the abdomen and place it in a vial of 5 per cent caustic potash or caus- tic soda solution; heat the vial in a boiling water bath for about 5 minutes; remove the preparation from the caustic solution and place it in distilled water; press it gently with a needle to squeeze out dislodged vis- cera and brush it carefully to clean off lodged scales or dirt. Transfer the prepa- ration to fresh, distilled water, leave it August. 1947 Ross: Mosquitoes of Illinois 13 there for 15 minutes to an hour, and then transfer it to 80 per cent alcohol that is very weakly acidulated with acetic acid. After lea\ insi it in this solution for a few minutes, transfer it to a drop of glycerin in a well mount on a slide. The preparation is then ready for microscopic examination. For preservation, place the preparation in a very small vial, about 4 by 10 mm., which has a droplet of glycerin about 3 mm. deep in the bottom. Cork the vial and then push the pin, on which the insect is mounted, through the cork sidewise, as in fig. lOB. In the case of heavily sclerotized genitalia, especially those of many Aeiles, it is neces- sary to use a caustic solution of 10 or 15 per cent instead of 5 per cent. For making large numbers of genital preparations simultaneously, it is conveni- ent to use a battery of small vials of cold caustic solution. Good results with the more heavily sclerotized genitalia, such as those of Aeiles and Psorophora. can be obtained with about 12 hours of clearing in cold 5 per cent caustic solution. For the more weakly sclerotized preparations, such as those of Culex. 5 or 6 hours of clearing are usually ample. It is often necessary to tease apart vari- ous structures of the genitalia in order to see certain characters. For this purpose fine needles can be made from 00 insect pins. Snip off the head of the pin; then, holding the pin near the blunt end with pliers, force it bit by bit into a wooden handle whittled to suit the user. Large match sticks make fairly good handles for small needles. REARING Rearing is a necessary part of the mos- quito study program. There are many in- stances in which the larvae, or the males or females, of two species cannot be differenti- ated, so that for final identification it is nec- essary to have associated larvae and adults. Two types of rearings are useful, individual rearings and group rearings. Individual Rearings A single larva is isolated in a vial or dish, about half full of water, and food is added until the larva matures. When it molts to form a pupa, its cast larval skin is immedi- ately preserved in alcohol or mounted on a slide. At ordinary room temperatures the pupa will mature in 3 or 4 days, and the adult will emerge. It is advisable to have some sticks or rumpled paper towel in the top of the dry part of the container so that the adult may rest there and harden for 2 or 3 days before being killed. Adults killed immediately upon emergence will shrivel. Frequently the adult can be transferred into a second container without free water and kept there for a few days to avoid the possi- bility of its drowning and disintegrating in the water. The pupal skin, larval skin, and adult should be preserved and mounted according to usual methods, and specimens of the same rearing associated by means of a distinctive accession number system. A con- venient system is to use a lot number for each collection and a letter for each indi- vidual of this collection. For example, speci- mens from collection No. 157, bear the accession designations 157C, 157D, \57E, etc.; the adult bearing the label 157C is associated with a larval skin and a pupal skin also bearing the accession designation 1576'. No other specimen or skin in the collection has on its label 157C With this method, it is possible to avoid getting the skins and adults of different rearings mixed. Every skin and adult should be labeled promptly anil clearly. Group Rearings In order to secure large numbers of study specimens in good condition, group rearings are of much use. Larvae may be placed in a large tube or mason jar and fed until they transform to pupae. Vot small cultures of less than 20 specimens, a cap vial about l]/2 inches in diameter and 2 or 3 inches long is very satisfactory. After a culture has pupated, the container should be placed in a large dry-battery jar or cage having a tight muslin top, and a liberal amount of crum- pled paper toweling placed in the bottom. The small container can be fastened upright on the inside of the large container by adhe- sive tape. After adults begin to emerge, water can be squirted through the muslin top onto the paper toweling, care being taken not to bathe the adults. This water will prevent desiccation of the adults and their premature death. In 2 or 3 days the adults will harden satisfactorily, and the entire cage can be treated with a fumigant to kill them. They may then be picked out of the cage and mounted. 14 Illinois Natural History Survey Bulletin J'ol. 24. Art. 1 Larval Food If larvae are collected when almost ready to pupate, a supply of the water in whicli they have been breeding and some of the organic matter from the bottom of the same pond will provide ample food to carry them to full development. If, however, they are collected at an earlier stage, it is necessary to add food. The safest type of food is fresh material from the bottom of a pond; this may be added to the rearing containers every 2 or .3 days. If this food cannot be obtained conveniently, various prepared foods, such as crumbled yeast, powdered dog biscuit, moldy corn, and gold fish food can be substituted. Because there is great danger that these concentrated foods will putrefy in the water, resulting in bacterial growth that will kill the mosquito larvae, they should be used in minute quantities. Temperature, Aeration, and Sunlight If the rearing is done indoors in hot weather, death of the larvae may result from too high a temperature or from insuffi- cient aeration. Larvae that normally live in a cold water environment should be kept relatively cold. It is desirable to keep jars containing such larvae in a running water bath. This will generally keep the tempera- ture of the rearing medium below 75 degrees F. Good ventilation is necessary for indoor rearing of Anopheles larvae. Satisfactory results are obtained with these larvae by using rearing containers nearly filled with water and placed near or in an open win- dow; for adult emergence the pupae should be transferred to containers with 2 or 3 inches of air space above the water. Some exposure to sunlight gives good results, but in the heat of summer this exposure must be short to avoid overheating the water. CLASSIFICATION Mosquitoes belong to the order Diptera, or two-winged flies and to the family Culi- cidae. This family is characterized by the following adult structures: antennae, figs. 32-38, filamentous and slender, with 15 seg- ments, the first 2 forming the base and the last 13 forming the slender thread. Each segment has a whorl of hairs, which in the males are extremely long. The eyes are consist chiefly of a proboscis (which may be either short and flabby, or elongate and forming a beak) and a pair of maxillary palpi; the palpi are referred to in this report as "palps." The legs are long and spindly. The wings are fairly large ; radial sector is 3-branched and Media is 2-branched ; the branches of radial sector are either nearly straight or only slightly curved. The family is divided into two subfamilies, the Chaobo- rinae, or non-biting mosquitoes, and the Culi- cinae, the true mosquitoes. An adult of the Chaoborinae is readily distinguished from all adult Culicinae because it does not have, a beak; each adult of the Culicinae has a well-developed beak or proboscis. The larvae of some Chaoborinae, however, might be readily confused with the larvae of true mosquitoes. Terminology Many special terms are employed for dis- tinctive parts of both adults and larvae of the mosquitoes, and these terms are used throughout the keys and descriptions. Fig. 12 is labeled to identify these distinctive parts of the larvae. Special parts of the Fig. 12.—Larval diagram, Culicinae. (Aftei large and conspicuous. The mouthparts King, Bradley, & McNeel.) .Ill// list, 1947 Ross: Mosquitoes of Illinois 15 CLVPEAL MAIMS ANTENNA mONTAL MAIMS Fiji. 13. — Anoplieles larva. Left figure, dorsal view of entire larva; upper right figure, details of thorax; lower right figure, apex of abdomen, lateral aspect. (After Ross & Roberts, by courtesy of American Entomological Society.) adults are identified on diaj^nostic draw- int;s where they appear in the text associated with the keys. Distinctive structures of Anopheles larvae are shown in fig. 13. Literature Additional information about mosquitoes, especially species not contained in this report, will be found in the general mosquito reports listed below. Additional information con- cerning these reports is given in the section "Literature Cited." Papers of more limited scope are mentioned later in the text in ref- erence to particular genera or species. 1928. The M nsqiiitoes of the Amerieas. by Harrison G. Dyar. 1937. The M osfjiiitoes of Minnesota, by William B. Owen. 19,?9. The Mosquitoes of the Southeast- ern States, by W. V. King, G. H. Bradley, and T. E. McNeel. 1941. The Mosquitoes of Arkansas, by Stanley J. Carpenter. 1942. The Mosquitoes of Oklahoma, by L. E. Rozebooin. 1944. The Mosquitoes of ll'iseonsin, by W. E. Dickinson. 1944. Handbook of the Mosquitoes of North America, by Robert Mathe- son. 1944. The Mosquitoes of Texas, by Texas State Health Department. 1946. The Mosquitoes of the Southern United States, by Stanley J. Car- 16 Illinois Natural History Survey Bulletin Fol. 24, Art. 1 pcnter, Woodrovv W. Middlekauff, and Roy W. Chamberlain. Material Studied The major part of the material on which this study is based was collected by staff members of the Insect Survey Section, Illi- nois Natural History Survey. Various other persons or organizations contributed much valuable material, and I am greatly indebted to them for permission to use their records in this paper. J. Lyell Clarke, Des Plaines Valley Mosquito Abatement District, Lyons, Illinois, and M. A. Dobbs and J. M. Gilbert, East St. Louis Health District, contrib- uted extensive material. I wish to express ray appreciation to officials of the Chicago Natural History Museum, who allowed me to study their mosquito collections; indi- vidual records from their material are marked in this paper with the initials CM. In addition, I am greatly indebted to offi- cials of the U. S. Public Health Service and the Illinois State Department of Public Health for permission to use their extensive records of Illinois mosquitoes; these records are indicated in this paper by the abbrevia- tion USPHS. Acknowledgments I wish to express my gratitude to several workers who were kind enough to check keys and to give advice on many questions which have arisen during the progress of this report. Captains C. F. Gerlach and F. Earle Lyman of the U. S. Public Health Service were very helpful in these matters. I am especially indebted to Dr. Alan Stone, U. S. Bureau of Entomology and Plant Quarantine, who was of the utmost assist- ance regarding the taxonomic problems which arose time and again. I wish to thank also the officers of the U. S. National Museum for the loan of considerable study material of critical species, especially larval material of rare Aedes species. Dr. C. O. Mohr, Dr. B. D. Burks, and Mr. G. T. Riegel were very active in the earlier years of this project, 1938-1942, in collecting and rearing material. In 1944 and 1945, Dr. Kathryn M. Sommerman and Dr. Milton W. Sanderson aided in this work. Dr. Sommerman and Mr. Riegel did the larger part of the rearing in the labora- tory. 1 am greatly indebted to Dr. Som- merman for the many original drawings which she made for this report. Various individuals and organizations were extremely kind in either loaning draw- ings and cuts for use in this bulletin or in giving permission to reproduce illustrations appearing in their publications. On this score I am especially indebted to Professor Robert Matheson and the Comstock Pub- lishing Company; the American Entomolog- ical Society; the Entomological Society of Washington; the Bureau of Entomology and Plant Quarantine, U. S. Department of Agriculture; and the Malaria Control in War Areas, U. S. Public Health Service. Key to Subfamilies larvae Antennae arising close together on a mesa raised area or protuberance of the head, fig. 14 Chaoborinae Antennae arising at sides of head, figs. 12, 13 2 Anal segment with a sclerotized ring or plate, figs. 17—20; antennae without long, prehensile hairs Culicinae Anal segment without either a sclerotized ring or plate ; antennae with long, prehen- sile hairs (Mochlonyx and Eucorethra), figs. 15, 16 Chaoborinae adults Proboscis elongate, figs. 32-38, many times longer than depth of head Culicinae Mouthparts forming only short submeni- branous lobes which are no longer than depth of head Chaoborinae Fig. 14.—Head of larva of Corethrelta. Fig. 15.—Larva of Mochlonyx cindipes. (Redrawn from Matheson.) Fig. 16.—Larva of Chaohorus piinctipennis. (Redrawn from Matheson.) Imtint. VHl Ross: Mosquitoes of Illinois 17 Subfamily CHAOBORINAE The adults of this subfamily are midjre- likc; their bodies usually are hairy but with- out scales. Four genera comprise the North American fauna of the subfamily. Of these, Chaohoriis. Corethrella, and Mochlonyx occur in Illinois; the fourth genus, Eucore- Ihra. is widely distributed north of Illinois but has not yet been taken in the state. Larvae of Chaoborus. fig. 16, have no air tubes. Larvae of the other three genera have either air tubes {Mochlonyx and Core- thrella) or spiracular plates of the Anoph- eles type (Eucorethra) ; in these genera the larvae are predaceous and in gen- eral appearance resemble those of some biting mosquitoes. A synopsis of the North American species, together with keys and illustrations, is pre- sented by .Mathcson (1944). Subfamily CULIGINAE To date, 10 genera of this subfamily, rep- resenting the true mosquitoes, have been taken in Illinois. It should be emphasized that this mosquito group includes all the Culicidae with well-developed beaks, many species that bite, and in addition a few spe- cies that do not bite. The subfamily Culicinae is frequently divided into two tribes, the Anophelini, in- cluding in the Illinois fauna only Anopheles, and the Culicini, including the other nine Illinois genera. However, the subfamily is sometimes divided into a large number of tribes. Since the final solution of this prob- lem in taxonomy will require a study of the world fauna, the most practical solution for the present report has been to avoid segre- gation into tribes and to treat the subfamily as a single unit. Ariles implaeahilis (Walker) Aedes mitehellae (Dyar) Aeiles nigromnnilis (Ludlow) Aedes ptinetor (Kirby) Aedes soUicitans (Walker) Aedes spenceril (Theobald) Aedes stieticus (Meigen) Aedes stimulans (Walker) Aedes thibaulti Dyar & Knab Aedes triseriattts (Say) Aedes trivittatus (Coquillett) Aedes vexans (Meigen) Anopheles barberi Coquillett Anopheles crucians Wiedemann Anopheles punctipennis (Say) Anopheles quadrimaeulatus Say Anopheles ivatkeri Theobald Culcx (ipiealis Adams Culex erratieus (Dyar & Knab) Culex peccator Dyar & Knab Culex pipiens Linnaeus Culex quinquefasciatus Say Culex restuans Theobald Culex salinarius Coquillett Culex tarsalis Coquillett (Uiliseta inornata (Williston) (Uiliseta morsitans (Theobald) Mansonia perturbans (Walker) jMeffarhinus septentrionalis Dyar & Knab Orthopodornyia alba Baker (Jrthopodomyia signijera (Coquillett) I'sorophora ciliala (Fabricius) I'sorophora confinnis ( Arribalzaga) I'sorophora eyanescens (Coquillett) Fsorophora discolor (Coquillett) I'sorophora ferox (Humboldt) Fsorophora horrida (Dyar & Knab) Fsorophora howardii Coquillett Fsorophora varipes (Coquillett) Uranotaenia sapphirina (Osten Sacken) U'yeomyia smithii (Coquillett) Kev to Genera Mosquitoes of Illinois Aedes aegypti (Linnaeus) Aedes aurifer (Coquillett) Aedes canadensis (Theobald) Aedes einereus Meigen Aedes dorsalis (Meigen) Aedes dupreei (Coquillett) Aedes excrucians (Walker) Aedes fitchii (Felt & Young) Aedes flavescens (Miiller) Aedes fulvus pollens E. S. Ross Aedes grossbecki Dyar & Knab LAR\AE Eighth segment with a Hat spiracular plate, but no air tube, tig. 15. .1. Anopheles Eighth segment with an air tube, figs. 17-20 - Air tube short, with some of its sclerites at the apex forming long stout spurlike processes, fig. 18 5. Mansonia Air tube without stout processes, its apical sclerites flat or conical, figs. 17, 19, 20 3 Ventral brush of anal segment represented by only an apical pair of double hairs, tig. 211 4. Wyeomyia 18 Illinois Natural History Survey Bulletin I'ol. 24. Art. 1 20 B Larval parts: A, apex of abdomen; B, dorsum of head. Fig. 17. — Orthopodomyia signifcra. Fig. 18. — Mansonia perturhans (the air tube only.) (After King, Bradley, & McNeel.) Fig. 19. — Megarliiniis sepientrionalis. Fig. 20.—Wyeomyia smit/iii. Note ventral brush reduced to only four long hairs. Aii,jiisi. 1947 Ross: Mosquitoes of Illinois 19 Ventral brush of anal segment consisting of several tufts, figs. 17, 19 4 4. Anal segment with sclerotized plate not meeting ventrad, figs. 102—105. Many species of 9. Aedes Anal segment completely ringed by sclero- tized plate, fig. 17 5 5. Air tube cylindrical and without pecten, figs. 17, 19 6 Air tube either fusiform, fig. 175, or with a pecten, figs. 75, 98, 172 7 6. Abdominal segments 3-7 with three spine- bearing sclerotized plates on each side, fig. 19.-/; head quadrate, with stout mouth brushes and only a few single dorsal setae, fig. 19B. . . .2. Megarhinus Abdominal segments 3—7 without lateral plates, sometimes segments 6 and 7 with dorsal saddle, fig. MA ; head oval, with fine bushy mouth brushes and with most of the dorsal setae multiple, fig. 17B 6. Orthopodomyia 7. Comb teeth situated on the posterior mar- gin of a large sclerotized plate that cov- ers most of the eighth segment; head with four stout black spines; fig. 72 3. Uranotaenia Comb teeth either on a small, poorly de- fined plate, fig. 172, or not on a plate; head with slender hairs, no stout spines, fig. 74 8 8. Air tube with a single pair of ventral tufts situated at base, figs. 74, 75 7. Culiseta Air tube either without ventral tufts, or with tuft near middle or apex, figs. 98- 101, or with air tube having several pairs of tufts, figs. 80-85 9 9. Air tube with several pairs of ventral tufts of which some may be represented by single long hairs, figs. 79-85 8. Culex Air tube with only a single pair of ventral tufts, or with none 10 II). \'entral brush of anal segment having sev- eral tufts that arise out of the sclerotized ring, figs. 172-174.. .10. Psorophora Ventral brush of anal segment with all tufts situated posterior to sclerotized ring, fig. 111. Some species of. .9. Aedes AUL LIS 1. Fork of R;.:, close to margin of wing, cell Rj only half length of its petiole, Ra.i, fig. 21 2 Fork R~»3 much farther from margin of wing, so that cell Rs is as long as its petiole, fig. 22 3 2. Beak curved almost into a quarter circle, palps of both sexes very long, those of female massive, figs. 33, 34; large spe- cies, wing length 6.5 mm 2. Megarhinus Beak only slightly curved, palps of both sexes short and abortive, fig. 32; small species, wing length under 3.5 mm. . . . 3. Uranotaenia 3. Mesoscutellum with apical margin evenly rounded, the setae arranged evenly along it, fig. 24; male with clavate palps, fig. 37, and female with palps as long as beak, fig. 38 1. Anopheles Mesoscutellum with apical margin incised to form a mesal lobe and two lateral lobes, with the setae grouped on these three lobes, fig. 25; male palps not cla- vate and female palps short, fig. 35. . .4 4. Mesonotum with a mesal line of short setae and scales, and with a wide, pol- ished bare area along each side of the mesal line, fig. 26 ; hind femur with a tuft of projecting scales at apex, fig. 28. Large species of 10. Psorophora Mesonotum without linear, polished bare areas; hind femur with only a few pro- jecting hairs at apex, fig. 30 5 5. Hind tarsi with one or two segments en- tirely white, the remainder entirely blue or black. A few species of 10. Psorophora Hind tarsi either with some segments banded, fig. 29, or all segments nearly the same color 6 6. Hind tarsi with wide or conspicuous bands of white on most segments, fig. 29. . . .7 Hind tarsi with no bands or with only inconspicuous ones 13 7. Second, third, and fourth tarsal segments each with a narrow white band at each end, fig. 29 8 Second, third, and fourth tarsal segments each with a white band at base only, figs. 127-131 io 8. Beak black, with a definite white band in middle, as in fig. 35. The species lai- salis in 8. Culex Beak not banded, either all black, or mot- tled, or black with rows of white scales along its entire length 9 9. Mesonotum either without white lines, or generally cream in color as in fig. 119. A few species of 9. Aedes Mesonotum nearly black, with a series of white lines as in fig. 27 6. Orthopodomyia 10. Post-spiracular area entirely bare; hairs on disc of mesonotum long, abundant, and erect, fig. 39 5. Mansonia Post-spiracular area with bristles or a patch of scales; hairs on disc of prono- tum much more appressed, fig. 41 .... 11 11. Outer faces of hind femora in general dark but each with a transverse band of white scales near apex, fig. 31. A few species of 10. Psorophora Outer faces of hind femora without such bands 12 20 Illinois Natural History Survey Bulletin Vol. 24, Art. 1 12. Wings with either Costa banded with white-scaled areas and black-scaled areas, or anal vein white scaled for basal two-thirds with apical portion black scaled. A few species of 10. Psorophora Wings either almost uniformly white or dark scaled, or the two types of scales mingled in a salt-and-pepper, patternless mixture. Some species of 9. Aedes 13. Mesonotura covered with a close mat of blue-black scales, with bristles only around periphery ; fork of R2t3 basad of fork of Mit2, fig. 22 4. Wyeomyia Adult Parts Fig. 21.- Fig. 22.- Fig. 23.- Fig. 24.- notum. Fig. 25.- Fig. 26.- Fig. 27.- notum. Fig. 28.- Fig. 29.- Fig. 30.- lee. -Uriiuotaenia sapphir'tna, wing, -tVyeomyia smithii, wing. -Aedes vexans, wing. -Anopheles rjuadrimaculatus, meso- -Aedes vexans, mesonotum. —Psorophora ciliata, mesonotum. —Orthopodomyia signifera, meso- —Psorophora ciliata, hind leg. -Aedes canadensis, hind leg. -Psorophora varipes, portion of hind August. 1947 Ross: Mosquitoes of Illinois 21 Adult Thorax, Lateral Aspect. Abbreviations: bristles or scales: s, spiracle: sb, spiracular bristles. Fig. 39. — Mansonia perturbans. Fig. 40. — Culisfta inornata. pn. pronotal bristles; ps, post-spiracular Fig. 41. — Psorophora confinnis. Fig. 42. — Aedes stimulans. Mesonotum with several series of erect bristles extending above scales on disc, fig. 42; fork of R^.;, at about same level as that of M,.^, fig. 23 14 14. .Mesonotum either with broad lateral bands or areas of white or cream scales, figs. 115, 120-123, or almost entirely covered with cream scales 15 Mesonotum mostly dark scaled, at most with a scattering of light scales, or with narrow weak lines of them 16 15. Hind tibiae enlarged and shaggy toward apex, with setae not longer than width of tibia at apex, fig. 30; spiracular bristles usually present, fig. 41. A few species of 10. Psorophora Hind tibiae slender to apex, not shaggy, often with a scattering of setae longer than width of tibia at apex, figs. 29, 125, 126; spiracular bristles absent. Many species of 9. Aedes 16. Po^t-spiracular area bare, and spiracular bristles lacking, as in fig. 39 8. Culex Ihorax either with post-spiracular area having bristles or scales, fig. 42, or spiracular bristles present, fig. 40, or both 17 17. Spiracular bristles present; post-spiracular area sometimes with scales but never with hairs, fig. 40 7. Culiseta Without spiracular bristles; post-spiracu- lar area with hairs or hairs and scales, fig. 42. Many species of 9. Aedes MALE GENITALIA Dististyle with a contorted mass of branches, fig. 46 4. Wyeomyia Dististyle either unbranched, fig. 43, or with only one or two simple lobes, figs. 133, 178 '. 2 A pair of subcylindrical arms (claspettes) arising from dorsum of capsule, and tipped with a sclerotized filament, figs. 136-158. Most species of . . . .9. Aedes Claspettes absent, platelike, fig. 70, or each tipped with a cluster of spines, fig. 177 3 Oististyle bilobed, its mesa) margin bear- ing a long hook and a large membranous lobe, fig. 178. The species lioit:ardii in 10. Psorophora Dististyle without an accessory membra- nous lobe 4 Basistyle with an apico-mesal shoulder bearing a cluster of specialized, blade- like or spatulate spines, which are fre- quently complex in structure, figs. 88—93 8. Culex Basistyle either without an apical shoul- der, or the shoulder hearing only nar- row spines 5 22 Illinois Natural History Survey Bulletin Fol. 24. Art. 1 5. Apex of basistyle continuing as a pointed lobe beyond insertion of dististyle, fig. 135. The species cinereiis in 9. Aedes Dististyle situated at apex of basistyle, fig. 43 6 6. Dististyle with a pointed lobe projecting beyond apical spur, fig. 133. The spe- cies vexans in 9. Aedes Dististyle with apical style terminal, fig. 45, or apex round, fig. 47, or truncate, fig. 180 7 7. Claspettes each with a stalklike base, and with a comblike cluster of spurs or setae at apex, figs. 177, 179-182; dististyle sinuate, fig. 177, or bulbous, figs. 179— 182. Most species of. . .10. Psorophora Claspettes absent or platelike, fig. 70, dis- tistyle of various shapes 8 Basistyle with a stout peglike rod on mesa! face near middle; dististyle with apical half very wide, its apical seta forming a stout spurlike tip, fig. 43 5. Mansonia Hasistyle frequently with one or more stout setae on mesal face, but never with a rodlike structure; dististyle either not enlarged at apex or with a peglike ur hairlike apical seta, figs. 45, 47 9 Basistyle short and ovate, with a pair of large, stout spines dominating the ven tral aspect of the basal portion, fig. 7U 1. Anopheles Basistyle either long and slender, fig. 45, Male Genitalia Fig. 43.—Mayisonia perturhans, ventral as- pect, and lateral aspect of dististyle. Fig. 44. — Uranotaenia sapphirina; A, ven- tral aspect, with lateral aspect of dististyle; B, mesal aspect of clasper, with mesosome and other mesal structures removed. Fig. 45. — Ortliopodomyia signifera, ventral aspect. Fig. 46. — IVyeomyia smit/iii; A, ventral as- : pect; B, lateral aspect. Fig. 47. — Megarhinus sei>tentrionalis, ventral ; aspect. ( Auijiiit, 1947 Ross: Mosquitoes of Illinois 23 or without a pair of isolated stout spines 12. on basal portion of ventral aspect, fig. 44 10 Ninth tergite forming a large bilobed scierotized plate whose lateral lobes are nearly as long as the basistyle, fig. 44. . 3. Uranotaenia Ninth tergite forming at most a plate as wide as in fig. 47 11 13. .\pical seta of dististyle single, slender, and pointed at tip, figs. 47, 134 12 .Apical seta of dististyle short and either divided, fig. 78, or truncate at tip, fig. 45 13 Base of basistyle with a mesal, arcuate pad bearing a crown of stout spines ; dististyle cylindrical, with apical spine just before apex, fig. 47. .2. Me^arhinus Base of basistyle without a mesal pad ; dististyle tapering toward apex, apical spine issuing from tip, fig. 134. The species aegypti in 9. Aedes .\pical spine of dististyle double, each ray short and stout; mesosome without lat- eral teeth at apex, fig. 78 . . . 7. Culiseta Apical spine of dististyle cone shaped, wide and truncate at apex, and with what appears to be a minute fringe sTb i\ Female Genitalia: A, lateral aspect; B, ventral aspect; C, dorsal aspect. Abbreviations: c, cercus; p, postgenital plate; i, insula plate. Fig. 48. — Anopheles quadrimaculatus, Fij. 49. — Uranotaenia sapphirina. Fig. 50. — H'yeomyia smithii. Fig. 51. — Mansonia perlurbans. Fig. 52. — Ort/iopodomyia siynijera. Fig. 53. — Culiseta inornata. Fig. 54. — Ciilex restuans. Fig. 55. — Ciilex apicalis. Fig. 56. — Ciilex erraticus. Fig. 57. — Meijarhinus septcntrionalis. 24 Illinois Natural History Survey Bulletin I'ol. 24, Art. 1 along the edge ; mesosome with a few short, lateral teeth at apex, fig. 45 ... . 6. Orthopodomyia FEMALE TERMINALIA 1. Cerci round and finger-like, wide apart and directed almost dorsad, fig. 48 . . . . 1. Anopheles Cerci either closer together, or leaflike and directed posterad, figs. 49-57 2 Fig. 58.—Abdomen of adult female, lateral aspect. A, Cul'uela inornata; B, Aedes argypti; C, Psorophora cUiata. Abbrevia- tions: c, cercus; p, postgenital plate. 2. Eighth segment retractile, markedly nar- rower than seventh and joined to it by a wide band of membrane, figs. 58B, C ; cerci either long and narrow, fig. 159, or extending far tjeyond postgenital plate, fig. 160 3 Eighth segment not retractile, practically the same diameter as the seventh, joined to it by a narrow strip of membrane, fig. SiA ; cerci short and extending little if at all beyond end of postgenital plate, figs. 49-57 4 3. Ninth tergite consisting of a fairly wide, indefinitely outlined rectangular dorsal sclerite, figs. 159-167 9. Aedes Ninth tergite consisting of a heavily scle- rotized, longitudinal rod enlarged at apex and extending basally beneath eighth tergite, fig. 184. .10. Psorophora 4. Postgenital plate extending considerably beyond cerci, fig. 50 4. Wyeomyia Postgenital plate extending only slightly if at all beyond cerci, fig. 49 5 5. Eighth tergite long and wide, forming a flat hood that extends considerably be- yond sternite ; ninth segment and cerci flattened and horizontal, fig. 57 2. Me^arhiniis Eighth tergite hemicylindrical, shorter than sternite and not at all hoodlike, figs. 49, 52 6 6. Cerci with base enlarged, middle con- stricted, and apex expanded, fig. 52 . . . . 6. Orthopodomyia Cerci with base not at all enlarged, but sometimes expanded at apex, fig. 51. .7 7. Insula plate well developed as a sclero- tized, arcuate, cushion-like crescent, fig. 49; ninth tergite with apical margin rounded and sclerotized, slightly over- hanging base of cerci 3. Uranotaenia Insula plate either entirely membrano\is or forming a band that bears a small mesal tuft of setae, fig. 53 8 8. Cerci from edge to edge almost vertical in position, the apex markedly widened ; eighth sternite nearly twice length of eighth tergite, fig. 51 5. Mansonia Cerci from edge to edge inclining to hori- zontal in position, the apex narrowed at least slightly, fig. 53 ; eighth sternite longer than eighth tergite, but not as much longer as in Mansonia 9 9. Postgenital plate parallel sided and trun- ^ cate, with a long apical seta near each corner and many small setae on the cen- tral area, fig. 161 ; ninth segment nar- row. A few species of 9. Aedes 1 Postgenital plate rounded or pointed, with a row or cluster of several scattered setae near apex, fig. 54; ninth segment wide 10 I 10. Postgenital plate very wide, as in fig. 56 8. Culex . Postgenital plate much narrower, figs. 53-55 II 11. A U-shaped internal sclerite present in i membranous folds of spermatheca, fig. 54 8. Culex ; No distinct internal sclerite evident in folds of spermatheca, fig. 55 12 12. Ninth tergite forming a sclerotized, fairly straight bridge, with a pair of clusters of setae situated close together, fig. 53 . . 7. Culiseta Ninth tergit: consisting of irregular folds at most srmisclerotized, with clusters of setae situated far apart near lateral! margins, fig. 55 8. Culex i 1. ANOPHELES Meigen Of the Illinois mosquitoes. Anopheles is the most distinctive genus and the most important one. The larvae, fig. 13, arc readily distinguished by the platelike aper- Antjuil, 1947 Ross: Mosquitoes of Illinois 25 ture of the breathinn; apparatus, which in all other Illinois mosquito larvae is tubu- lar; the adults have the scutellum evenly rounded, not trilobed, and the males have the apical segments of the palps greatly enlarged, fig. 37. According to present information, Anopheles quadrimaculatus is the chief carrier of malaria in Illinois. In proportion to their size, few mosquito genera present so many difficulties regard- ing larval identification as the North Amer- ican Anopheles. There is undoubtedly much variation within many of the species, both in the hair arrangement of the larvae and in the details of the male genitalia. Conse- quently, in Illinois the main basis for identi- fication of the species in this genus should be the adult females. In other sections of the country the larvae may present the only reliable characters for certain complexes of the species. Many keys have been presented for the identification of males by means of the genitalia. The studies of Roth (1944), however, have substantiated my own obser- vation that the characters of the male geni- talia can be used only on an average basis 60 Heads of Anopheles Larvae Fig. 59. — A. harheri. (After Ross & Rob- Fig. 62. — A. ijiutJrimiuiiIatus. (After Ross erts. ) & Roberts.) Fig. 60. — A. occidentatis (inner clypeal hairs Fig. 63. — A. walkeri. (After Ross k Rob- only), erts.) Hair numerals used on this plate are Fig. 61. — A. piintlipennis. (.After Ross & those currently employed in the taxonomic Roberts.) literature on mosquitoes. 26 Illinois Natural History and cannot be used as a means of absolute diagnosis in all cases. The recent work of Ross & Roberts (1943) and Roth (1944) illustrates exten- sively many diagnostic and other structural features of this genus. Additional descrip- tions and a summary of distribution is given by King & Bradley (1941), and biological material by Bradley & King (1941). An interesting study of variation in larval char- acters has been made by Roth (1945A). To date, five species of this genus have been taken in Illinois. A sixth, occidenialis, has been taken in Iowa across the Missis- sippi River from Illinois. As it undoubt- edly occurs in Illinois, it has been included in the key. Key to Species LARVAE 1. Head hairs 5, 6, and 7 short and simple, fig. 59; lateral body hairs with only short feathering 1. barberi Head hairs 5, 6, and 7 long and plumose, fig. 61 ; lateral hairs of thorax and first Survey Bulletin Vol. 24, Art. iM three abdominal segments with long feathering, fig. 64 2 Fourth and fifth abdominal tergites with hairs and 2 plumose, fig. 65 5. crucians Fourth and fifth abdominal tergites either with hairs inconspicuous or with hairs 2 only single or double, fig. 64 3 Head hairs 3 very dense, fan shaped from base, so that no basal stalk is evident, fig. 63 ; head hairs 2 sometimes feathered at tip; prothoracic hairs 1 sometimes branched 3. walkeri Head hairs 3 less dense, the fan shaped portion beginning some distance from base so that a basal stalk is formed, fig. 61; head hairs 2 never feathered at tip; prothoracic hairs 1 rarely branched. . . 4 Second abdominal segment with hairs 1 well developed, sclerotized and palmate, fig. 64 2. quadrimaculatus Second abdominal segment with hairs 1 small, at most fanlike, fig. 65, not at all like the palmate hairs on segment 3. .5 Fig. 64. — Anopheles quadrimaculatus, larva, portion of dorsum. Fig. 65. — Anopheles crucians, larva, portion of dorsum. Parts of Anopheles Adults Fig. 66. — A. punctipennis, wing and mouth- parts. Fig. 67. — A. crucians, wing and mouthparts. Fig. 68. — A. quadrimaculatus, wing and mouthparts. Fig. 69. — .1 iralkeri, mouthparts. (Figs. 64- 69 after Ross & Roberts.) Auijiist. I'Ul Ross: Mosquitoes of Illinois 27 Head hairs 2 wide apart, fig. 62 2. quadrimaculatus Head hairs 2 close together, fig. 61 6 Head hairs 2 always simple, fig. 61 4. punctipennis At least one of the two head hairs 2 usu- ally with a conspicuous branch, fig. 60. . occidentalis 1. Wings with spots or bars of white or yel- lowish-white scales along anterior mar- gin and anal vein, figs. 66, 67 2 Wings without any pale patches, all scales dark, fig. 68, except sometimes apical fringe hairs 3 Anal vein with 3 short dark bars sepa- rated by white bars; palps dark with white bands, fig. 67; Costa with a white spot only at apex of wing. , .5. crucians Anal vein with apical half and extreme base black, and with a single white area between; palps black, unbanded, fig. 66; Costa with an apical white spot and usually also a preapical spot or bar. . . 4. punctipennis 71 B QUADRIMACULATUS Figs. 70-71.—Male genitalia of Anopheles. A. phallosome; B, claspettes; C, ventral aspect of entire structure. Abbreviations: Bs, hasistyle ; CI. claspettes; Ds, dististvle ; IXT, ninth tergite; Pb-s, parabasal spine; /'//, phallosome; I'AXT, process of ninth tergite; Pi. proctiger. (After Ross & Roberts.) 28 Illinois Natural History Survey Bulletin Vol. 24, Art. 1 3. Tip of wing with a patch of silvery or bitably from all other North American golden fringe scales; dark wing spots anophelincs. very pronounced occidentalis \^ h^s been found in only a few of the Tip of wing with fringe not diflferent from ^^^^ ^^^^ j^^j^^ investigated and is either remainder; dark wing spots frequently ^^^j^ ^^^^ ^^;^;^.^j .^^ j^^ ^^^.^^ ^^ breeding _ , ; ky-i c' Vo ic place or much less abundant than several 4. Palps narrow and filiform, hg. 38 (le- . , , , > c other tree hole species such as Aedes tri- males) j Palps enlarged into an oval apical club, seriatus. As pointed out by King, Bradley, fig. 37 (males) ' ^ McNeel (1939), this species has been 5. Palps black, with white rings, fig. 69 . . . . proved susceptible to malaria parasites but 3. walker! is of doubtful importance in malaria trans- Palps entirely black, without rings, fig. 68 mission. It is widely distributed in the " southern and eastern states. 6. Wings without a trace of spotting; wing Illinois Records.—Six larvae, collected June length about 3.5 mm 1. barberi 29 to July 6, and many males and females, col- Wings with definite darker areas giving a ,^^,^j y^^^ 35 to October 10, are from Alton spotted appearance, fig. 68; wing length (^sphs), Cahokia (usphs). Camp Ellis (usPHs) about 5.0 mm 2. quadrimaculatus Carterville (usPHs), Crab Orchard Lake 7. Mesosome without leaflets at apex, fig. 70; (usphs), Des Plaines, East Alton (uspHS), wing length under 3.5 mm. . .1. barber. jj^^j gt. Louis, George Field (uSPHS), Hamp- Mesosome with a cluster of leaflets at ^^ire (usphs), Johnston City (usPHS), Marion apex, fig. 71; wing length over 3.5 mm. (usphs), Momence, Mount Vernon (usphs), / Onarga, Savanna (usphs), Scott Field (usphs), 8. Lobes of ninth tergite stout, apex wide, ^^j Springfield (usphs). sometimes enlarged, fig. 71 2. quadrimaculatus Lobes of ninth tergite narrower, usually 2. Anopheles quadrimaculatus Say tapered at apex 3. walkeri t- ^o t l o n 1Larva.—Fig. 62.—Length 8 mm. Head with hairs 2 long, simple and widely sepa- rated; hairs 3 plumose, branching some dis- tance from base; hairs 5, 6, and 7 long and plumose. Thorax and first three segments of abdomen with long feathering on lateral major hairs. Abdominal segments 4 and 5 with hairs 2 usually single, rarely double ; of the total of four "hair 2's" on segments 3 and 4, seldom is more than one double. Palmate hairs on segments 3 to 7, frequently also on segment 2. Pecten with a series of well-spaced long teeth, between each of which is a group of three or four short teeth. Body hairs shown in fig. 64. Female.—General color dark brown. Palps entirely dark brown to black, with no annulations. Wings, fig. 68, uniformly dark scaled, the scaling slightly darker at the fork of Rm3, Mi+2, the base of Rs and the base of R4to. These darker scalings make four dark spots, sometimes very pronounced, sometimes scarcely perceptible. Male.—Similar in color and general structure to female. Genitalia, fig. 71, with two large parabasal spines; mesosome slen- der, its apex with a group of three leaflets on each side; claspettes each with setae of dorsal lobe round at tip, those of ventral lobe sharp and pointed. The number of setae on each lobe varies considerably; if \. Anopheles barheri Coquillett Larva.—Fig. 59. Length 6 mm. Head with almost all hairs simple and unbranched, especially conspicuous being hairs 3, 5, 6, and 7. Thorax and abdomen with only short feathering on lateral major hairs. Segments 3-7 with a pair of palmate hairs, segment 2 with moderately developed pal- mate hairs. Pecten consisting of an irregu- lar series of long teeth, each tooth with ser- rations at base. Female.—^Wings with veins having almost uniformly dark scales, neither the field of the wing nor the fringe with dark spots or light patches. Male.—Similar in color and general structure to female. Genitalia, fig. 70, with two large parabasal spines; mesosome tapered, without apical leaflets; claspettes with three setae on the ventral lobe and three broad scales arising in a compact group from the dorsal lobe. This species contains the smallest individ- uals of Anopheles in North America, mos- quitoes that in general appearance are easily confused with small dark Culex individuals. The setation of the larvae and structures of the male genitalia separate this species indu- Auyiut. 1947 Ross: Mosquitoes of Illinois 29 only two or three are present on the dorsal lobe, they may fuse at the tip. The diagnosis of this species is clear cut only in the female. The separation of the larvae of this species from those of puncti- pennls is frequently difficult. Nearly all the specimens I have seen from Illinois will key out without difficulty, but an occasional larva is encountered that falls squarely be- tween the two alternatives of couplet 5. In our series of associated larval skins, there is considerable variation in the branching of hair 2 on abdominal segments 4 and 5 ; the more reliable character seems to be the dis- tance apart of head hairs 1. The males are extremely close to those of ivalkeri, although in all of our specimens the separa- tion on the lobes of the ninth tergite is fairly satisfactory. The halteres of quad- ri?naculatus are usually much darker than those of ivalkeri, but these characters vary somewhat, and, in preserved specimens, the difference tends to disappear with time. In Illinois, the breeding season of quailri- maculatus begins nearly a month after that of piinctipennis in the south and of walkeri in the north, indicating a restriction imposed by water temperature. The preference for warmer water is further suggested by the abundance of quadrimaculatus in more open and still bodies of water during the heat of the summer when puiictipennh is found only in more heavily shaded or mark- edly cooler waters. The habitat preference of qtiadrimaculaliis, which is quite wide, includes small pools, backwaters, and shal- low basins of large lakes and marshes. Abundant populations of larvae are almost always associated with emergent vegetation, ranging from plants such as Jiissiaea diffusti. which never extends more than a few inches above the water surface, to cattails, rushes, and shrubs reaching a height of several feet. We have a few records of quadrimaculatus living in running water, but these were in situations where the water was shallow and warm, and the How extremely sluggish. Biting records indicate that the females are crepuscular and nocturnal. On cloudy days we have noticed a tendency for the females to bite early in the afternoon, but normally they bite no earlier than shortly before dusk. Their bites are seldom painful and often go unnoticed. This species is considered the most impor- tant carrier of malaria in the United States east of the Rocky Mountains. Illinois Records.—Many larvae, collected June 2 to October 1, and many males and females, collected May 16 to November 15, are from .-Mgonquin, .Aiitioch, Belleville (USPHS), Benton, Bnnnie, Cahokia (usPHs), Cairo (usPHs), Camp Ellis (usPHS), Camp Grant (usPHs), Carbondale, Carterville (usPHS), Caseyville, Champaign, Chanute Field (usphs), Charleston, Crab Orchard Lake (usphs), Dan- ville (usPHs), Decatur (usphs), Detroit, Dubois. Dwight (usphs), East Alton (usphs), East Hannibal, East Moline (usphs). East Peoria (usphs), East St. Louis, Edgemont, Edwardsville, Elgin, Elsah, Evansville, French Village (usphs), Galesburg (usphs), George Field (usphs), Gibson City (usphs), Gibsonia, Glendale, Gorham, Grafton (usphs), Grand Tower, Granite City (usphs), Hampshire (usphs), Havana, Hecker, Herod, Herrin, Hull, Johnston City (usPHS), La Rue, Law- renceville (usphs), Makanda (usphs), Marion (usphs), Milford (usphs), Mississippi Pali- sades State Park, Momence, Mound City (usphs), Mount Vernon (usphs). Mulberry Grove, Oakwood, Olive Branch, OIney, Omaha, Palos Park, Pere Marquette State Park, Port Byron, Rockford (usphs), Rock Island (usphs), St. Jacob, St. Joseph, Savanna, Scott Field (usphs), Seneca (usphs), Spring- field (usphs). Starved Rock State Park, Thom- son, Urbana, Ursa, Vienna, Waltersburg, and Ware. 3. Anopheles walkeri Theobald L.ARVA.—Fig. 63. In size and general color similar to quadrimaculatus. General structure of head and body as described for quadrimaculatus, except for the following differences: head hairs 2 close together, in our Illinois specimens almost always single and very long, rarely with one or two fine branches near tip. Abdomen some- tiines with well-developed palmate hair on segment 2, segments 4 and 5 with hair 2 usually single and very long, rarely double or triple. The best diagnostic character found to date is head hair 3, which is densely branched from the base and therefore lacks a basal stalk. Female.— In color similar to quadrimacu- latus with the exception of the palps, hg. 69, which are black with a narrow white annu- lation at each joint. The wing spotting is identical with that of quadrimaculatus. Male.—-Genitalia very similar to those of quadrimaculatus, differing in the more slender lobe of the ninth tergite; usually the ventral lobe of the claspette has only one stout and one slender seta. 30 Illinois Natural History Survey Bulletii J'ol.24.Art.l It is noteworthy that the diagnostic char- acters for the larvae of this species, which have been stressed by King & Bradley (1941) and by Ross & Roberts (1943), are not applicable to Illinois specimens. Fol- lowing are characters listed by these authors and, in parentheses, my own observations on Illinois specimens: head hair 2 finely branched at tip (only an occasional Illinois specimen has these hairs branched and then with only one or two branches) ; protho- racic hair 1 branched (this hair is usually single in Illinois specimens) ; and hair dis- tinct and many branched (in only a rare Illinois specimen is hair discernible). The densely tufted head hair 3, however, is an excellent diagnostic character, our associ- ated larval skins indicate. This same char- acter is well illustrated by Ross & Roberts. This species is abundant in the marshes of extreme northeastern Illinois. Outside of this area we have Illinois records from only three widely separated localities, all from the Mississippi River valley region. These three localities are Savanna and nearby Thomson (the northwestern corner of the state). East Hannibal (almost at the center on the western margin), and Scott Field (a short distance south of the St. Louis area). All our collections have been made in cat- tail marshes, to which this species appears to be restricted. In the northeastern cor- ner of the state this species is found in prac- tically every marsh and bog in which cat- tails are found. The larvae have never been found there in abundance. Collecting which nets one larva per five dips is unusual; usually the proportion is closer to one larva per 20 dips. The marshes, however, are very extensive in this section, and the species is quite abundant. Unlike the females of quadrimaculatus , the walkeri females bite readily during the day as well as during the evening. In early summer they are espe- cially vicious and will attack a person in bright sunlight. In northeastern Illinois, adults and full grown larvae have been collected early in June and also late in October. The species has a great tolerance for cool water and is similar to A. piinctipeiniis and Culiseta inor- nata in this respect. It is interesting to note that walkeri is considered rare south of northern Illinois. In northern Illinois and northward, it is one of the dominant species of the anopheline populations, as shown by our Illinois collec- tions and by studies in Minnesota and Wis- consin by Daggy, Muegge, & Riley (1941). Illinois Records.—Larvae, taken May 19 to September 15, and many males and females, collected May 19 to November 1, are from Antioch, Beach, Camp Grant (USPHS), Cary, East Hannibal, Fox Lake, Franklinville, Great Lakes Naval Training Station, Lake Bluff, Lake Zurich, Orland Park, Savanna (usphs), Scott Field (usphs), Thomson, Volo, Wau- conda, Waukegan, Woodstock, and Zion. 4. Anopheles punctipennis (Say) Larva.—Fig. 61. Length 8 mm. Color i and general conformation of hairs on head ' and body as for quailrimaculatus. Diag- nostic characters as follows: head hairs 2 long and single, the pair close together at base; head hairs 3 each with multiple branching that begins some distance from the base, so that the base of the hair forms a distinct stalk; palmate hair of second abdominal segment reduced; abdominal seg- ments 4 and 5 with hairs 2 usually double, occasionally single or triple, the single, dou- ble, or triple hairs occurring in almost any combination on different specimens. Female.—Body dark brown, with the mesonotum clothed with grayish scales and the wings definitely patterned with dark and cream color. Palps entirely dark with- out white annulations. Typical wing pat- tern, fig. 66, having a white costal patch near apex and a preapical white patch one-third the distance between apical spot and base of wing, this preapical spot including adja- cent portions of C, Ri, and R2+3; in addition there are variable areas of white scales near the base of Rs and M, Mi+2, Mi, and M2; a diagnostic and stable area of white scales occupies most of the basal half of the anal vein. Male.—General structure and color, especially wing pattern, as for female. Gen- italia in general as for quadrimaculatus with the following average differences in the claspette : dorsal lobe usually with only one seta, which may be round or pointed at apex; ventral lobe usually with only one stout and one narrow seta in addition to one or two short setae. Occasional larvae are found that seem to ; bridge the gap between punctipennis and quadrimaculatus. The number of such larvae, however, appears so small as to bejl of no statistical importance in proportional Ally list, 1947 Ross: MosguiTOES of Illinois 31 counts because 99 per cent of all the larvae taken can be identified with certainty. Extreme variation of wing pattern has been found in Illinois material of this species. Two wing spots appear to be con- stant, the apical costal spot and the white bar on the base of the anal vein. All the other spots vary greatly, and occasionally additional white bars appear on practically all the radial and medial veins. The pre- apical spot is subject to the most conspicuous variation. Lsually it is about one-half as long as the dark bar separating it from the apical spot. In the light extremes, the pre- apical spot may be fully as long as this dark bar; in dark extremes the preapical spot may be only a quarter or a sixth as long as the bar; and in rare instances no preapical spot may be present. Our collections indicate that there is no particular significance to these variations. We have taken a wide range of these types in a single collection from one locality, and seldom does a large collection from one locality present even a reasonable homogeneity in regard to wing spots. In Illinois, ptimlipeiinis is undoubtedly the most widespread and common species of Anopheles. It breeds in a wider variety of aquatic situations than the other species in the genus. We have taken it in running streams, backwaters of lakes, cattail marshes, densely wooded cypress swamps, and open and practically barren pools. In southern Illinois, it is the earliest anopheline to make its appearance, the first adults usually emerging by about the middle of April. In the northern part of the state, mature larvae and pupae have been collected in the mid- dle of October. In early spring it shows a preference for open sunlit water. In the heat of summer, at least in southern Illinois, it leaves the open situations almost entirely and breeds in fairly densely shaded situa- tions, such as pools and creek beds, running streams, cypress swamps, or woodland pools. Both seasonal distribution and habitat indi- cate a preference for cooler water than that frequented by f/iiailrimaculatus. In the northern part of the state this segregation is not so pronounced; here punctipennis and quaitrimnculatus are frequently taken to- gether in the same body of water. Although punctipennis is extremely widely distributed, it has never been found in the tremendous local abundance that character- izes populations of quiidriinaculatus. Evi- dence at present indicates that punctipennis is not an important carrier of malaria under natural conditions, although the species be- comes infected readily under experimental conditions. Illinois Records.—Many larvae, collected May 1+ to October 14, and many males and females, collected April 17 to November 29, are from Albion, Algonquin, Belleville (USPHS), Brubaker, Cache, Cahokia (usphs), Cairo, Calvin, Camp Ellis (usphs). Camp Grant (usphs), Carbondale, Carterville (USPHS), Champaign, Chanute Field (usphs), Charleston, Council Hill, Crab Orchard Lake (usphs), Decatur (usphs), Dixon Springs, Dwight (usphs). East Alton (usphs). East Moline (usphs). East Peoria (usphs). East St. Louis, Edwardsville, Effingham, Elsah, Epworth, Florence, Forest Glen, Fox Lake, Fox Ridge State Park, French Village (usphs), Fulton (usphs), Galesburg (usphs), George Field (usphs). Giant City State Park, Gibson City (usphs), Gorham, Gossett, Grafton (usphs), (Jrand Tower, Granite Cily (usphs), Graiitsburg, Greenville, Grimsby, Hamilton, Havana, Herod, Herrin, Joetta, Johnston City (usphs), Jonesboro, Kankakee, Karnak, Keiths- burg, Laclede, La Grange, Lake Villa, La Rue, Lawrenceville (usphs), Lima, Maroa, Marion (usphs), McClure, Michael, Mill Shoals, Mis- sissippi Palisades State Park, Momence, Mount Carmel, Mount Vernon (usphs), Mulberry C5rove, Muncie, Neoga, New Athens, New Haven, Nutwood, Oakwood, Oak Park, OIney, Omaha, Palos Park, Pere Marquette State Park, Pingree Grove, Pittsburg, Pittsfield, Quiiicy, Richmond, Ridge Lake, Rising Sun, Rockford (usphs), Rock Island (usphs). Rock- ton, St. Jacob, St. Joseph, Salem, Savanna (usphs), Scott Field (usphs), Seneca (usphs), Springfield, Starved Rock State Park, Sugar Cjrove, Thomson, Urbana, Ursa, Utica, Viola, VValtersburg, Ware, Waterloo, Wauconda, White Heath, White Pines Forest State Park, Willow Springs, Wolf Lake, and Zion. 5. Anopheles crucians Wiedemann L.ARV.A.—Fig. b5. Color, size, and general conformation of hairs on head and body as for quailriniaculatus. Diagnostic characters as follows: head hairs 2 long and single, the pair close together at base; head hairs 3 each with multiple branching that begins some distance from base, so that the base of the hair forms a distinct stalk; palmate hair of second abdominal segment reduced ; abdom- inal segments 4 and 5 with hairs and 2 multiple and conspicuous. I'E.M.ALH.—Body dark brown, the mesono- 32 Illinois Natural History Survey Bulletin Fol. 24, Art. 1 turn clothed with linear areas of grayish scales, and the wings patterned with dark and cream color. Palps dark, with the short apical segment white and with a conspicu- ous white band at the base of the third seg- ment. Typical wing pattern, fig. 67, having the costal margin entirely dark scaled except for a white patch at the apex of the wing; in addition there are areas of white scales on all the veins posterior to Ri ; a diagnostic feature is the alternation of white and dark- scaled areas on the anal vein. Male.—General structure and color, especially wing pattern, as for female. Geni- talia very similar to those of punctipennh males. In Illinois this species has been taken in numbers only in the St. Louis area and southward. Two apparent stragglers have been taken north of this area, one at Havana and one at Peoria. The species is wide- spread south of Illinois, and our records represent probably the northern edge of its range. Our only larval records are from cattail marshes in the Mississippi River valley. In an extensive cattail marsh at La Rue, Illi- nois, this species was especially abundant. The larvae were taken in company with those of quadrimaciilatus, which outnum- bered the crucians larvae almost two to one. Light trap collections indicate that crucians is never a dominant feature of the mosquito fauna in Illinois. Illinois Records.—Many larvae, collected May 22 to October 1, and many males and females, collec;ed June 16 to October 4, are from Alton (USPHS), Cache, Cahokia (USPHS), Carterville (usPHS), Crab Orchard Lake, East Alton (usPHs), East St. Louis, Granite City (usPHS), Havana, Herrin, Johnston City (USPHS), La Rue, Marion (usphs). Mount Vernon (uspHS), Peoria (usphs), and Scott Field (usPHs). 2. MEGARHINUS Robineau-Desvoidy Individuals of this genus are among the most peculiar in the state. The adults are large and brilliantly colored. The probos- cis is markedly curved, as in figs. 33 and 34, not adapted for biting but for feeding on nectar. The larvae as well as the adults are very large and may be identified immedi- ately by the small sclerotizcd plates upon which many body setae are situated. The larvae are restricted to tree holes, in which they are predaceous upon other mosquito larvae. According to previous workers, the eggs are laid singly on the surface of the water. Only a single species, scptcnlriunalis, has been taken in Illinois. The only other Nearctic species, rutilus Coquillett, is very closely allied and has never been collected north of the extreme southeastern United States. \. Megarhinus septentrionalis Dyar & Knab Larva.—Fig. 19. Head quadrate, with well-developed mouth brushes ; antennae very short, with only one or two minute setae; dorsum of head with only a few minor setae. Body hairs long and stout, each seg- ment of thorax with one sclerotized plate bearing the dorsal lateral tuft and another bearing the ventral lateral tuft. Segments 1-7 of the abdomen with the long seta situ- ated on tubercle-like sclerotized plates, the first segment with four on each side, the remaining segments with three, each bearing one to several long setae. Eighth abdominal segment with a large lateral sclerite bearing several long apical setae and representing the lateral comb. Air tube short and stout, with a pair of ventral tufts near base. Anal segment large, completely enclosed in a heavily sclerotized ring, and having short budlike gills and hair tufts as in fig. 19. Fem.ale.—Length of wing 7 mm. Body and appendages with metallic iridescent scales. Palps and beak a mixture of bluish- purple and gold scales, dorsum of head greenish. Mesonotum with lateral and mesal stripes of greenish gold, the interven- ing bands black, purple, and green. Dor- sum of abdomen almost entirely greenish purple, apical segments with a few lateral patches of silvery scales; venter almost en- tirely creamy gold, with a mesal greenish- purple stripe. Legs, for the most part, pur- plish; the middle and hind tarsi with the second, third, and fourth segments white; the hind tarsi with the fourth and fifth seg- ments white; the femora with the base and posterior face of each mostly cream. Wings entirely purple scaled. The female geni- talia are dorso-ventrally compressed, fig. 57, and in this respect the species is quite unlike any other Illinois mosquito group. M.ale.—In size and general color similar to female. The tarsi are black, except for ^ the fourth segment of the hind tarsi, which > Aiiyiisl. W47 Ross: Mosquitoes of Illinois 33 is clothed with dirty white scales. The palps are very long and black, fig. 33. Male genitalia, fig. 47, fairly simple in general structure, resembling in many respects those of Cttlinta: dif-fering most markedly in the shape of the dististyle and ninth tergite. We have only a few scattered records of this species, all from the southern third of the state. Our records from Carbondale are based on captures of free-flying adults; specimens from Scott Field and Edwards- ville were collected as immature stages in tree holes in oak-hickory woods. The spe- cies has been reported as widespread throughout the southeastern states. Illinois Records. — Carbondale: Aug. 7, 1927, 15 ; 1941, Zi ; Edwardsville: Sept. 24, 1943, from tree hole, 19 ; Scott Field: Aug. 13, 1942, tree hole, 2 larvae; Aug. 24, 1942, fallen- tree hole, 1 i ; Sept. 16, 1942, tree hole, I larva. 3. URANOTAENIA Arribalzaga Individuals in this genus are small. Both adults and larvae present a number of dis- tinctive characters that set them off readily from other mosquitoes in Illinois. Of the three species of Uranotaenia known to occur in North America, only one has been taken in Illinois. and a narrow mcsal line down the prono- tum, from near the anterior margin to the tip of the scutellum, bright iridescent blue. Abdomen dark brown with iriegular apical patches of dirty white scales at the apex of some segments. Legs dark brown, each with a small conspicuous knee patch and a small patch on upper side of tip of tibia, each patch consisting of a cluster of white scales. Wings brown scaled, except for a line of blue scales covering the stem of Cubitus. All the brown scales of the wings and legs are iridescent, appearing greenish blue in certain lights. Male.—Similar in size and general struc- ture to female; in this sex also the palps are small and budlike, fig. 32. Genitalia, fig. 44, with basistyle short and robust and with a cluster of five or six longer spines on the mesal face; dististyle short, the apex nar- rowed and hooked, without conspicuous apical seta. Ninth tergite developed into a very large bilobed plate that extends over the tenth segment and mesosome. The larvae of this species, which is wide- spread in Illinois, live in permanent or semi- permanent ponds, preferring weed-choked situations. In northern Illinois they occur in several cattail marshes and in southern Illinois are usually associated with dense marginal growths of Jussiaea, especially 1. Unmotiiciiia sapphirhia (Osten Sacken) Lap.va.—Fig. 72. Length 5 mm. Head elongate, the upper and lower head hairs represented by long stout spines. Antennae short with a few sharp spines at apex. Thorax and first two segments of abdomen with long stout lateral hairs, abdominal segments 3-7 with only fine tufts of hairs. Lateral comb of eighth segment represented by a large sclerotized plate bearing a row of 8 to 10 teeth on its apical margin. Air tube elongate and slender, the pecten dis- tinct and containing about 15 spines, the ventral tuft large and situated at the end of the pecten. Anal segment longer than deep, completely encircled by the sclerotized ring, the anal gills finger-like, slender, but only about as long as the anal segment. I'HMALE.—Length of wing 2.5 mm. Palps minute and budlike. Head and thorax, in- cluding beak, dark-brown scaled; dorsum of head, antero-latcral lobe of pronotum, patches of scales on the pleurae, a narrow line on the extreme edge of the mesonotum. Fig. 72. — Uranotaenia sapphirina, larva. A, apex of abdomen, lateral aspect; B, dorsum of head. 34 Illinois Natural History Survey Bulletin I'ol. 24. Art. 1 where this plant occurs in combination with cattails or other marsh plants. They are very much like anopheline larvae in peculi- arities of movement when diving or coming to the surface. The species appears fairly late in the season, apparently in response to the warmer waters of the summer season. The adults apparently do not bite. Pre- sumably they feed on nectar. The females lay eggs in irregular rafts on the surface of the water. This species has a wide range that em- braces most of the United States east of the Great Plains and has at least scattered rec- ords from Minnesota to the extreme south- ern states. It has been reported from south- ern Illinois by both Chandler (1920) and Matheson (19.?0) and from various local- ities in the Chicago area by Gerhard (1910). Illinois Records.—Larvae, collected June 3 to August 27 and many males and females, collected May 23 to October 21, are from Cahokia (usPHs), Cairo (usPHs), Camp Grant (usphs), Carterville (usfhs), Chanute Field (usPHs), Charleston, Crab Orchard Lake (usPHS), East Hannibal, East St. Louis, Edwardsville, Effingham, Elgin, Elsah, Fox Lake, Fox Ridge State Park, Gibsonia, Gossett, CJrafton (usphs), Granite City (usphs). Great Lakes Naval Training Station, Havana, Hecker, Herod, Herrin, Homer, Johnston City (usphs), Lake Glendale, La Rue, Marion (usPHS), Mount Carmel, Mount Vernon (usphs), Muncie, Oakwood, Omaha, Ottawa, Peoria (usphs), Putnam, Raymond, Sal m. Savanna, (usphs), Scott Field (usphs), Seneca (usphs), Springfield (usphs), Starved Rod; State Park, Sugar Grove, Thomson, Urbana, Volo, Wauconda, and White Pines Forest State Park. 4. WYEOMYIA Theobald This genus is represented in Illinois by only the pitcher plant mosquito, smithii. The males are readily identified by the curious shape of the dististyle, fig. 46. The larvae, fig. 20, have very distinctive charac- ters in the structures of the terminal seg- ments. 1. Wyeomyia smithii (Coquillett) Larva.—Fig. 20. Length 6 mm. Head longer than wide, somewhat ovate, antennae short, without conspicuous lateral tufts. Dorsum of head with only a few indistinct hairs. Body hairs very long. Eighth seg- ment with a lateral comb consisting of ribout eight scales arranged in a straight row. Air tube small, slender, with about 15 pairs of long single hairs scattered along its length. Anal segment almost ringed by the sclerotized plate. The apex of this plate bears dorsally two pairs of long dou- ble hairs and a single pair of lateral double hairs; at the postero-ventral corner of the plate is a pair of double or triple hairs. No ventral brush is present. The anal gills, two in number, are large and sausage shaped ; a second pair of gills may be represented by a pair of small swellings above the base of the conspicuous gills. Female.—Length of wing 3 mm. Beak, dorsum of head, mesonotum, and dorsum of abdomen almost uniformly covered with a mat of iridescent bluish-black scales. Pleurae and venter uniformly covered with creamy or silver scales. Scales of mesono- tum forming a dense appressed mat with- out setae projecting above it, but with setae projecting from beneath it at the sides and along the posterior margin. Postnotum with a small cluster of minute setae. Legs, for the most part, blue black, whitish blue be- neath, iridescent; the middle pair may have the apical two or three segments predomi- nately white scaled, at least on the outer face. Wings uniformly deep bluish-brown scaled. Male.—Similar in size, color, and struc- ture to female. The palps are short and abortive as in female. The male genitalia, fig. 46, have a long slender basistyle and are distinguished from those of all other Illi- nois mosquitoes by the curious processes of the dististyle. In Illinois this little mosquito is found only in the tamarack bogs of the northeast- ern corner of the state. The larvae live in the water contained in the pitchers of the pitcher plant, Sarracenia purpurea Linnaeus. The species overwinters as larvae in the pitcher plants, and the adults emerge the following summer. The females, which lay eggs in the pitchers, apparently do not bite. The adults are quite active during the day, flying around the pitcher plants. They arc very difficult to follow in flight; they have an irregular and slow flight pattern that combines with the gangling legs and irides- cent color to make it difficult for an observer to be sure just how far away they are. The development of the larvae is apparently very slow. In this respect the pitcher plant mosquito resembles the tree hole species. The range of the species includes most of AiKjusi. 1947 Ross: Mosquitoes of Illinois 35 the northeastern states, wherever the pitcher plant occurs. Two other species in the genus occur in southern Florida. A key to the females is given by Roth (1946). Illinois Records. — Cedar Lake: in bog, Aug. 3-6, 1906, Shobe, 3 9 ; Aug. 6, 1906, 1$ ; Aug. 7, 1906, 75, 222. McHenry: Nov. 10, 1927, in pitcher plant, H. H. Ross, 3 larvae. Voi.o: in pitcher plant, July 1, 19+2, Ross k Mohr, 3 larvae: July 3, 1942, Ross & Mohr, 15 larvae; July 8, 1942, Ross & Mohr, 2 9,2 pupal skins; July 19, 1942, Ross i Mohr, 12 ,J, 19; Oct. 27, 1943, Ross & Sanderson, 1 $ . 5. MANSONIA Blanchard Modifications in the larva make this genus of unique interest. The larval air tube forms a sharp piercing structure that is inserted into the roots or underwater stems of vascular plants; it pierces the air chambers of these, and the larva draws on the air in these chambers for its respiration. Thus, the larva does not need to come to the surface for air. Otherwise the larva and the adult are very similar to those of allied mosquitoes. The eggs are laid as rafts on the surface of the water. A single species, perturbans, occurs in Illinois. The only other United States species are the tropical titillans (Walker) and indubltans Dyar & Shannon, which are found in south- ern Florida (Pratt 1945). The species perturbans is placed in the subgenus Coijuil- lettitlia Dyar. 1. Mansonia perturbans (Walker) L.ARVA.—Fig. 73. Head wider than long, antennae slender and long, with a fan- shaped tuft near middle; dorsum of head with many multiple tufts. Thorax and abdo- men with many long setae. Eighth segment with an irregular row of .scales forming the comb. Air tube, fig. 18, with a wide base, the apical sclerites long and sharp, forming a stout piercing organ. Anal segment fairly narrow, completely encircled by a sclero- tized ring; anal gills pointed, shorter than segment. Fe.m.ale.—Length (if wing 4.5 mm. Beak with a mixture of brown and pale scales, the latter forming an indistinct central ring. Dorsum of head and mesonotum with brown scales and hair, the mesonotal setae abun- dant, long and recurved. Abdomen with a mixture of pale and brownish-blue scales, the former predominating at the base of the segment, the latter predominating at the apex. Femora and tibiae with an irregular mixture of brown and pale scales, the poste- rior face of femora chiefly cream scaled; tarsal segments 2-5 each having the basal half white scaled, the apex black scaled ; hasitarsi with a narrow basal band of white scales and an irregular central band of white scales. Wings with an indiscriminate mix- ture of white and brown scales, the scales all broad. M.ALE.—In size, color, and general struc- ture similar to female. Palps longer than beak, the apex of the second segment and the entire third and fourth segments with a ventral brush. Genitalia, fig. 43, with ninth tergite strap shaped and having a pair of conspicuous ventral lobes. Basistyle fairly stout, its mesal face with few setae and with a single long stout beaklike spine. Disti- style twisted and angulate at base, narrow, expanded, and bladelike at apex, its apical spine forming a stout sharp tip. Lobes of tenth sternite moderately long and evenly toothed. Mesosome short and stout, with a row of stout but minute dorsal teeth. Fiji. 73. — Miinsoniu perlurhans, larva. (After Matheson.) 36 Illinois Natural History Survey Bulletin Vol. 24. Art. 1 Taken in only a few areas of the state, this species is most commonly encountered in the marshes of the extreme northeastern corner and south to the Chicago area. A few other records have been taken extend- ing to the southern third of the state. Adult records occur from June through August. Males have been taken only in the early part of this period and suggest that there is only a single generation per year in Illi- nois. The species is associated chiefly with cattails and aquatic sedges. In the southern states, pickerelweed, arrowhead, and other plants are frequently preferred for larval attachment. The females are voracious biters, espe- cially in the cloudy afternoons and the cre- puscular periods. Gerhard (1910) recorded this species as common and annoying in tracts of woodland in the Chicago region and encountered rarely on the south side of the city. Specimens from Roxana, Danville, and also Algonquin were recorded by Matheson (IQ.'iO). J. Lyell Clarke has told me of occasional swarms of this species which were very annoying to the workers in several industrial plants on the south side of Chicago. The species is widely distributed through- out the eastern United States, from Minne- sota to Florida. Illinois Records.—Adults, collected May 21 to September 19, are from Algonquin, Beach, Belleville (usphs), Cahokia (usphs). Camp Grant (usphs), Carterville (usphs), Danville, East St. Louis, Elsah, Grand Tower, Granite City (usphs). Great Lakes Naval Training Station, Herrin, Johnston City (usphs), Marion (usphs). Oak Park, Peoria (usphs), Pere Mar- quette State Park, Roxana, Savanna, Starved Rock State Park, Volo, and Zion. 6. ORTHOPODOMYIA Theobald The Illinois species of this genus are char- acterized by the curious mesonotal pattern of the adults, fig. 27, and by the air tube, basal sclerite, and anal segment of the larva, fig. 17. Two species are known from Illi- nois, both of which occur only in tree holes. The status of these two species is very puz- zling. To date no distinguishing characters have been discovered either in coloration of the external areas or in the structure of the male genitalia. The larvae, however, differ quite markedly both in color and in the average sclerotization of the seventh and eighth abdominal segments. Larvae of both species are practically identical in chaeto- taxy and formation of the lateral comb. It has been suggested that the color of the base of the abdomen would separate these two forms in the adult stage. Isolated rearings have demonstrated that this differ- ence does not hold, at least for Illinois speci- mens. It is therefore impossible at present to give a key for the specific diagnosis of males or females. Key to Larvab Head medium to dark brown, body pink; segments 6, 7, and 8 usually with dorsal sclerotized plates, the plate of segment 8 frequently extending ventrad to the ventral margin of the comb, fig. 17; these sclerotized plates may be entirely absent 1. signifera Head capsule very pale yellow to white, body white to straw color; segments 6, 7, and 8 without sclerotized plates. . . . 2. alba 1. Orthopodomyia signifera (Coquillett) Larva.—Fig. 17. Length 7 mm. Head dark brown, somewhat oval, slightly longer than wide; upper and lower head hairs multiple and fan shaped, the lower hairs close to the uppers and more laterad than anteriad; between them is a pair of shorter fanlike tufts. Thorax and abdomen with many long hairs. Seventh abdominal seg- ment frequently with a large dorsal sclero- tized shield, which may be reduced to a pair of small dorsal sclerites or even be entirely absent. Eighth segment usually with a large dorsal sclerotized shield ; this may be so large that it extends to the ventral end of the lateral comb but it may be much smaller or in rare individuals practically absent. Lateral comb consisting of two distinct series of scales, an anterior row of 15 to 20 small scales and a posterior row of about 5 very large long scales. Air tube about three times as long as wide, having no pecten but having a large ventral tuft just before mid- dle. Anal segment with a basal barlike sclerite, the main portion of the segment completely surrounded by the sclerotized ring and with pointed gills, the upper pair much longer than the segment, the lower pair about as long as the segment. Female.—Length of wing 4 mm. Entire body principally dark brown to black scaled, dull and velvety. Beak and palps with irreg- ular rows of white scales, dorsum of head August. 19-H Ross: Mosquitoes of Illinois 37 with scattered white scales and a prominent row around posterior margin of eyes. Meso- notum with narrow hut sharp lines of white scales, fig. 27. First abdominal tergite and base of second usually white scaled. Femora with a scattering of white scales, tibiae with irregular lines of white scales. Tarsi black, the anterior pair with a minute white patch at end of basitarsus, the middle pair with patches of white at base of apex. Basitar- sus and the hind pair with basal apical patches on the first four tarsal segments and on the dorsum of the last segment. The white bands on only the first two tar- sal segments of the hind legs are wide enough to form conspicuous bands. Wings with a conspicuous mottling of white scales that form definite patches on the base of the anal vein and around the point where R«3 and Ri*; divide from each other. Male.—Size, color, and general struc- ture essentially as for female. Palps elon- gate, as long as beak, black scaled, without tufts, but apical segment with 15 or 20 fairly long stiff setae projecting irregularly on all sides. Male genitalia as in fig. 45. Ninth tergite mostly membranous, without definite ventral lobes. Tenth sternite of medium length, ending in a series of three or four closely appressed teeth. Mesosome about as long as tenth sternite, with short lateral teeth near apex. Basistyle elongate, with a ventral mesal cluster of stout setae ; at its base is a mesal arcuate lobe that bears an even cluster of stout setae. Dististyle slen- der and elongate, tipped with a short stout seta that is truncate at apex, the end appar- ently with a cone-shaped hollow. Widely distributed over Illinois, this spe- cies breeds exclusively in tree holes. The eggs are laid singly at the water's edge and hatch in a few days. As seems true with all the tree hole mosquitoes occurring in this latitude, the larvae apparently grow rather slowly. Emergence of adults begins toward the end of June and continues through the summer. Apparently females of the species bite humans only on rare occasions and are 1 not a pest. Superficially the adult resem- I bles the yellow-fever mosquito, Aeiles aegypti. The adults can usually be found most readily sitting in and around tree cavi- ties. The species is widely distributed through- out many of the eastern states, although it does not occur much farther north than Illinois. To date, all but one of the larval colonies of this genus that we have encountered in Illinois have been those of signifera. For this reason we have tentatively considered all field-C(dlected adults of Orthofioilomyia to be of this species. This species was reported from the Chi- cago area by Gerhard (1910) as Bancrojtia signifera and from Urbana by Matheson (1930). Illinois Records.—Larvae, collected June 29 to July 3, and adults, collected June 5 to Sep- tember 30, are from Cahokia (usphs), Des Plaines, East St. Louis, Galesburg, Glencoe, Havana, Mahomet, Onarga, Ridge Lake, Scott Field (usPHs), Thebes, and Urbana. 2. Orthopodomyia alba Baker Similar to signifera in adult characters and in general characteristics of the larva; differing as outlined in the key. Only a single colony of this species has been encoun- tered in Illinois. It was found in a tree hole —in a soft maple tree at Onarga, where it occurred with signifera. This dual colony has persisted for several years, the alba larvae slightly more abundant than the sig- nifera larvae. Individual rearings from this colony established the similarity in color of the adults of the two forms. 7. CUUSETA Felt Only two species of this genus have been taken in the state. A third species, melanura (Coquillett), is widespread to the east and south. The few remaining species of the genus are northern or western in distribu- tion. The eggs are laid in rafts on the sur- face of the water. The adults resemble large specimens of Culex, but the larvae are read- ily distinguished from other mosquito larvae bv the large basal tuft on the air tube. Key to Species LARVAE Tube short and stout, fig. 74 1. inornata lube longer and slender, fig. 75. .2. morsitans FEMALES Tarsi without pale rings on the segments. . . . 1. inornata Tarsi with faint whitish ring.^ at both ends of the segments 2. morsitans MALES Mesosome consisting of a pair of long, slender black rods tipped with a small membranous piece, fig. 78 1- inornata 38 Illinois Natural History Survey Bulletin Vol. 24, Art. 1 Mesosome wide, bulbous in central portion and only lightly sclerotized, fig. 77 2. morsitans 1. Culiseta inornata (Williston) Lar\'A.—Fig. 74. Length 10 mm. Head capsule wider than long, upper and lower head hairs fan shaped, the lower ones usu- ally quadruple, the upper ones with about eight rays; in front of the upper hairs is an accessory pair of tufts, each with about four hairs. Hairs of thorax and abdomen of only medium length. Eighth segment with a tri- angular comb consisting of about 50 scales. Air tube fairly long, a little over three times as long as wide; pecten long, the basal 10 to 12 scales sclerotized and dark, the re- mainder longer, hairlike, and almost color- less; ventral tuft composed of about eight long stout hairs situated near the base of the air tube on the ventral aspect mesad of the pecten. Anal segment completely en- circled by sclerotized ring; anal gills long and tapering, longer than segment. Female.—Wing length 6 mm. Beak, head, mesonotum, and most of legs a mix- ture of brown and gray scales; pleurae, ven- ter of abdomen, and ventral face of most of legs with gray or cream-colored scales predominating. Dorsum of abdomen with basal bands of cream and tawny scales, apical Larvae of Culiseta Fig. 74. — C. inornata: A, dorsum of head; B, apex of abdomen. Fig. 75. — C. morsitans: A, dorsum of head ; B, apex of abdomen. : Auyitst. l'U7 Ross: Mosquitoes of Illinois 39 portion brown scaled. Wings mostly brown scaled but with a mixture of tawny scales along most of the anterior veins. In some specimens Costa and Radius almost entirely tawny scaled; in these the legs may be pre- dominantly tawny scaled throughout. .Male.—Form slender compared to thai (it female. Pattern in general similar to FiiSs. 76-78.—.Male genitalia of Culiseta. .7, genital capsule, ventral aspect; B, meso- some, dorsal aspect; C, lobe of tenth sternite, lateral aspect. that of female but with the cream and tawny scales replaced almost entirely by lemon scales, with little or no banding on the dor- sum of the abdomen but with the eighth tergite almost entirely yellow scaled. Palps longer than beak, slender, and without con- spicuous brushes, both palps and beak largely yellow scaled, except at tip. Genitalia, fig. 78, with basistyle fairly long, robust, and tapering, with a small meso-basal area bear- ing a dense patch of setae. Dististyle slen- der, tipped with a pair of short stout tooth- like setae. Lobes of tenth sternite ending in a few sharp teeth, much fewer than in impatiens (Walker), fig. 76. Mesosome composed of two long sclerotized plates with a slender membranous tip. One of the common marsh mosquitoes in Illinois, this species is most abundant in the northeastern quarter of the state, where it is found in numbers in almost every marsh. Farther south it occurs in marshes, sink holes, stump holes, and artificial ponds. In Illinois the species apparently has an early spring and late summer generation with a fairly definite period of inactivity during the hottest period of the summer. The two- brooded condition is especially pronounced in southern Illinois, where the first wave of adults comes out in April and early May and the next in September and October. The eggs are laid as rafts on the surface of the water. The adults apparently overwin- ter and are frequently encountered entering houses, presumably to hibernate, during warm days of November and December. In early spring the overwintered females bite ferociously, but during the summer this species does not seem to constitute much of a pest even in those regions where it is abundant. Very common throughout almost the en- tire United States, the species is essentially a winter form in the extreme southeast, according to King, Bradley, & McNeel ( 1939) ; in higher elevations of the Rocky Mountains it is primarily a midsummer form. Illinois presents an interesting inter- mediate between these two extremes. The species was recorded from the vicin- ity of Chicago under the name Culiseta con- sohriiiiis ( Robineau-Uesvoidy) by Gerhard (1910). .Mathcson (1930), who recorded it as common and widespread in Illinois, listed several localities. In the same paper he listed a male from Carbondale, Illinois, as Theohaldin impatiens (Walker) ; the cleared genitalia of this specimen show that it is a typical specimen of Culiseta inornata. Illinois Records.—Larvae, collected April 6 to October 22, and adults, collected March 16 to November 16, are from Algonquin, Alton, Amboy, Antioch, Cache, Cahokia (uSPHs), Cairo (usi'HS), Camp Grant (usphs). Carbon- dale, Carterville (usphs). Cottage Grove, Crab Orchard Lake (usphs), Dupo, Durand, East .\Ioliiie (usphs), East Peoria (usphs), East St. Louis, Effingham, Eldorado, Elk Grove, Elsah, Farmer City, George Field (usphs), (.lilman, Glencoe, Cirand Tower, Granite City (USPHS), (irantsburg. Great Lakes Naval Training Station, Harrisburg, Havana, Hazel- crest, Herod, Herrin, Highland, Hinsdale, Kan- 40 Illinois Natural History Survey Bulletin Jol. 24. An. 1 kakee, Karnak, Keithsburg, Makanda, Marion (USPHS), McLean, Mazon, Mill Shoals, Mis- sissippi Palisades State Park, Momence, Mount Vernon, Mount Zion, Muncie, Neoga, New Boston, Orland Park, Palatine, Palos Park, Pere Marquette State Park, Ravinia, Rockton, Roxana, St. Jacob, Savanna (usphs), Scott Field (usphs), Seneca (usphs), Spring- field (usphs). Starved Rock State Park, Urbana, Wadsworth, Waltersburg, Ware, Waukegan, White Heath, Willow Springs, Wolf Lake, Woodstock, and Zion. 2. Culiseta morsitans (Theobald) Larva.—Fig. 75. Length 9 mm. Head very wide, almost rectangular. Upper head hairs usually four or five branched, lower head hairs double and extremely long; be- tween them is a pair of extremely minute hairs. Antennae long and curved with a large tuft near apex. Thorax and abdo- men with many very long hairs. Eighth segment with large triangular lateral comb consisting of about a hundred minute scales. Air tube extremely long and slender, nearly seven times as long as wide; pecten consist- ing of only a few flat teeth on basal fourth; ventral tuft on ventral margin at extreme base. Anal segment entirely enclosed by sclerotized ring, with hairs of ventral brush arising through ring; anal gills slender and pointed, about as long as segment. Female.—Length of wing 5 mm. Color dark bluish brown, the dorsum of head mostly gray scaled, mesonotum with a few small spots and lines of gray scales. Dorsum of abdomen with a basal gray band on each segment, the apical portion of the segments brown scaled. Legs almost entirely bluish- brown scaled with faint but distinct narrow rings at the base of most of the tarsal seg- ments. Wings entirely blue-brown scaled. Male.—Similar in size and color to feinale. Palps elongate, differing markedly from those of inornata in having long ven- ' tral brushes at the apex of the second and on all of the third and fourth segments. Genitalia similar in general outline to those of inornata, differing markedly in the shape of the mesosome, which is bulbous, sinuate, and not heavily sclerotized, fig. 77. This is a northern species, which we have taken in Illinois only in a tamarack bog near Antioch. A single larva was taken on the edge of the bog, June 4, 1943, Ross & Sanderson; subsequent collecting during the same year failed to disclose additional specimens. The next year the bog was vis- ited on April 19, and scattered specimens of the larva were found in the cool, shaded pools around the base of the old tamarack hummocks. Efforts to rear some of these specimens were not successful. The speci- mens were transported to Urbana, where at the time fairly high temperatures pre- vailed, and all the larvae died. It is interest- ing to note that larvae of several species of Aedes, brought back at the same time and given the same treatment, emerged without difficulty. On a subsequent visit to the bog on May 19, 1944, larvae were found in the same place and apparently completely full grown. On this occasion, jars in which larvae were placed were wrapped in moist cloths for the trip to Urbana and after- wards were kept in a water bath at a tem- perature of about 60 degrees F. These larvae matured and transformed slowly but successfully. Although no other records for Illinois have been taken, we have in the collection a female from Lake Delavan, Wisconsin, and two females from Minocqua, Wisconsin, which are of this same species; these were incorrectly recorded as impatiens (Walker) by Matheson (1930). 8. CULEX Linnaeus The eight species of this genus that occur in Illinois have a continual series of gener- ations throughout the warmer months of the year. The females lay their eggs in rafts on the surface of the water. The species frequent still or semistagnant water of all types and may be found even in lakes of some size, the larvae breeding in masses of float- ing or emergent vegetation. Usually the larvae are taken in association with anoph- eline larvae. The genus as a whole is tropical or sub- tropical in distribution. Many North Amer- ican species occur in the southeastern states, southwest Texas, and southern California. In the Neotropical region, the genus is rep- resented by a very large number of species. During the period 1941-1945 concerted investigations of the mosquito fauna of the southern areas of the United States led to the discovery of several species of Culex hitherto recorded only from the Neotropical region. A digest of these and allied Nearc- tic species is given in two papers, one by W. W. Wirth (1945) and the other by I .hu/iist. 1947 Ross: Mosquitoes of Illinois 41 Figs. 79-81.—Larvae of Citlex. A, apex of abdomen, lateral aspect; B, ilorsiiin of heail. In figs. 81 and 85, the ventral tufts are shown for both sides of the air tube. In other illustrations, tufts of only one side are shown. 42 Illinois Natural History Survey Bulletin I'ol. 24, Att. 1 Figs. 82-84.—Larvae of CuUx- .•/, apex of abdomen, lateral aspect; B, dorsum of head. Auijitst. 1947 Ross: Mosquitoes of Illinois 43 Pratt, Wirth & Denning (1945). These papers supplement the work of Roth (1943) on the Nearctic species of Culex. The genus is divided into many suhgenera, three of which are represented in Illinois. Key to Species I AR\AE 1. .\niennal tufi near middle, fig. 79 2, restuans .•\ntennal tuft considerably beyond middle, fig. 80 2 Comb scales forming a patch ; body only sparsely spiculose; upper head hairs double or triple 8. peccator -Air tube very long and slender, fig. 84, from six to eight times as long as width at end of pecten; tufts scattered and weak 5. salinarius Air tube either not more than five times as long as wide, fig. 82 ; or with strong, clustered tufts, fig. 81 6 .•\ir tube usually six times as long as width at end of pecten, siiuiate but of almost imlfurm thickness thr', Orland Park, Palos Park, Pere Marquette State Park, Pitts- Inirg, PittsHeld, Princeton, Ravinia, Reynolds- ville. Ridge Lake, Rising Sun, Riverside, Rock- ford, Rock Island (usPHs), Roxana, Russell- ville, Salem, Savanna (usphs), Scott Field (USPHS), Seneca (usphs), Shawneetown, Sko- kie, Springfield (usphs), Starved Rock State Park, Summerdale, Urbana, Vienna, Wads- worth, Waltersburg, Ware, Waterloo, White Heath, Willow Springs, Winnetka, Wolf Lake, and Zion. 3. Culex pipiens Linnaeus Larv.a.—Fig. 82. Head moderately wide, with fairly long apical bristles and a thick tuft situated near apex. Upper and lower head hairs multiple, as long as, or slightly longer than, the preantennal tuft. Eighth segment with triangular comb composed of .?0 or 40 small scales. Air tube nearly four and one-half times as long as its width at end of pecten; pecten composed of about 10 weak scales ; between the end of the pecten and apex of tube are four tufts on each side, one of them considerably more dorsad than the others; these tufts are long and usu- ally composed of three hairs. 48 Illinois Natural History Survey Bulletin J'ol. 24, Art. 1 Female.—Length of wing 3.5 mm. Head dark bluish brown with scattered gray scales on dorsum. Mesonotum entirely brown. Dorsum of abdomen bluish brown, each seg- ment with a basal band of white scales; these bands moderately narrow, usually ex- tending the full width of the segment and having the posterior margin irregular or nearly straight across; the bands on seg- ments 3-6 should be used as examples. Legs with tibiae and tarsi black or dark, femora cream with dorsal or outer portions dark. Male.—Size, color, and general structure as for female. Palps elongate, with an extensive apical brush. Male genitalia, fig. 89: basistyle slender, its subapical lobe prom- inent, with a short leaflet and several bristles and spines; dististyle slender and curved. Tenth sternite with an apical brush of fairly short pointed spines, its basal arm slender and short, sometimes poorly devel- oped and inconspicuous. Middle mesosomal plate with two lobes, an irregular sclerotized basal lobe, a, and a sickle-shaped apical lobe that has a sclerotized apical edge and a membranous area below this. Inner meso- somal plate composed of a single straight blunt blade on each side, the two forming a V-shaped structure. Known as the northern house mosquito, this species is common over all of Illinois. The larvae frequent practically all types of domestic and semidomestic pools, such as rain barrels, tar buckets, fish ponds, clogged drains, and containers of various descrip- tions. The adults are persistent but wary biters, especially annoying at night in gar- dens or houses. The species occurs through- out the season, from late spring until early autumn. In garden pools it frequently occurs in company with restuans and guin- quefasciatus. It is one of the easier species to control by the use of clean-up measures directed against the semidomestic type of water containers in which this species breeds. The northern house mosquito is widely distributed over most of the temperate regions of the world having at least moder- ate rainfall. In the eastern states it extends south of Illinois into the northern portion of the southern states. Illinois Records.—Larvae, collected from May 3 to September 15, and many males and females, collected from May 6 to November 15, are from Algonquin, Belleville (usphs), Cahokia (USPHS), Cairo (usphs). Camp Ellis (USPHS), Carbondale (usphs), Carmi, Carter- ville (usphs). Central City, Chanute Field (usphs), Charleston, Chicago, Clinton, Cottage Grove, Crab Orchard Lake (usphs), Danville (usphs), Decatur (usphs), Dwight, East St. Louis, Edwardsville, Elsah, Forest Glen, Gales- burg (usphs), George Field (usphs), Gibson City (usphs), Grafton (usphs). Granite City (usphs), Great Lakes Naval Training Station, Havana, Herrin, Hoopeston (usphs), Johnston City (usphs), Lawrenceville (usphs), Marion, Metropolis, Mound City, Mounds, Mount Car- mel. Mount Vernon (usphs), Palos Park, Peoria (usphs), Ravinia, Raymond, Rockford (usphs), Rock Island (usphs), St. Jacob, St. Joseph, Savanna (usphs), Scott Field (usphs), Seneca (usphs), Springfield (usphs), Urbana, Vienna, Ware, Willow Springs, and Zion. 4. Culex Quinguefasciatus Say Larva.—Fig. 83. Very similar in size, shape, and general structure to larva of pipiens. There is often considerable diffi- culty in separating specimens of the two species. Material of quhiquefasciatus col- lected in Illinois is distinguished by the fol- lowing combination of characters: air tube only about three and one-half times as long as its width at end of pecten; tufts on air tube usually with four or more branches and usually markedly shorter than greatest width of air tube. The gills of both species vary in length. Adults.—Similar in almost all respects to pipiens adults. The female usually has definite-shaped basal bands on the abdomi- nal tergites; in quinquefasciatus the bands are deeper than in pipiens and taper off com- pletely at the edge of the dorsal aspect. Female specimens are encountered, however, in which it is difficult to distinguish between the two species either on this character or any other. The male genitalia are very sim- ilar to those of pipiens in general conforma- tion. Those of quinquefasciatus are dis- tinguished as follows, fig. 90: the distal lobe, h. of the middle mesosomal plates is larger and extends farther laterad than in pipiens; and the arms of the inner mesosomal plates make a U-shaped structure with converging arms (diverging arms in pipiens). Culex quinquefasciatus, the southern house mosquito, occurs regularly in the southern third of the state but has been taken only sporadically northward. Light trap collec- tions indicate that this species does not appear in numbers until July or August and usually disappears soon after the first J August. 1947 Ross: Mosquitoes of Illinois 49 cool weather in September. The larvae frequent the same types of domestic and semidomestic containers as those of pipiens and the two species are usually represented in mixed cultures in Illinois. ('. quinqut- lasciatus is distributed throughout most of the tropical and subtropical regions of the world. The Illinois records appear to be on the extreme northern edge of its North American range, which extends southward to the Gulf of Mexico. In much of the literature, this species has been recorded under the name faiigans Wiedemann. Edwards (19.52) prefers to refer quinqutfasiiatus Say to the list of dubi- ously known names. Since quinquifastiatui has been used consistently as at present, there seems no valid reason for discarding this name in favor of fiitlgtiiis : quinquejas- ciatus was described in 182.5, fatigatis in 1828. Illinois Records.—Larx'ae, collected from September 15 to October 1, and adults, col- lected from June 17 to November 23, are from Belleville (USPHS), Cahokia (usphs), Cairo (USPHSI, Carterville (usphs), East St. Louis, Edwardsville, Grafton (usphs), Granite City (USPHS), Herrin (usphs), Johnston City (usphs), Marion (usphs), Mount Vernon (USPHS), Scott Field (usphs), and Urbana. 5. Culex salinaritis Coquillett L.ARV.A.—Fig. 84. Head moderately wide, antennae of moderate length, with long apical bristles and a stout tuft near ape.x. Upper and lower head hairs long, with at least four branches. Eighth segment with a triangular comb of about 50 small scales. Air tube very long and slender, about eight times as long as greatest width, pecten com- posed of about 10 weak scales and with sev- eral pairs of tufts irregularly placed between end of pecten and ape.x of tube. Fem.ale.—Length of wing 4 mm. Head and mesonotum bright brown, dorsum of abdomen bluish brown with narrow basal bands yellowish scaled on each segment, the bands frequently indistinct on the basal two or three segments and frequently broken up with brownish scales, giving them a muddy appearance. Legs with tibiae and tarsi entirely dark, femora mostly yellowish with upper and outer surfaces frequently dark. V\ ings entirely dark-brown scaled. .Male.—Similar in size, color, and general structure to female. Palps long, having extensive apical brushes. Genitalia, fig. 92: basistyle long and slender, its subapical lobe with a leaflet and several bristles and spines. Tenth sternite with a dense irregular apical brush ;md with a long stout basal arm. Middle mesosomal plates with a dorsal cluster of 8 or 10 stout teeth and a sharp upturned stout ventral arm. Inner meso- somal plates divergent, their apexes expanded and sinuate. Although the species occurs generally throughout Illinois, individuals are present usually only in small numbers. Breeding commences fairly early in the season and continues at a fairly uniform rate through- out the summer and into the autumn. The larvae have been taken in a variety of habi- tats including swampy edges of lakes, oxbow- pools, marshes of various types, ponds and cattle tracks, cattail bogs, stump holes, and polluted ditches. The females are said to bite readily, but in Illinois they are not sufK- ciently abundant to be a nuisance. The species breeds in the eastern United States westward into the Rocky Mountains, and south to Florida and Texas. Illinois Records.—Larvae, collected April 16 to October 15, and adults, collected May 5 to November 23, are from Alton, Belleville (USHHS), Cahokia (usphs), Cairo (usphs;, Camp Ellis (usphs). Camp Grant (usphs), Carbondale (usPHS), Carmi, Carterville (USPHS), Chanute Field (usphs), Cottage CJrove, Dupo, East St. Louis, Edwardsville, Equality, Fox Ridge State Park, George Field (USPHS), Gorham, CJrand Tower, Grafton (lsphs). Granite City (usphs), Cireat Lakes Naval Training Station, Havana, Herrin, Jacksonville, Johnston City (tSP.Is), Karnak, lake Cilendale, La Ru-, La\vr..njcvil.e (usphs), Marion, Maroa, Mount Vernon (usphs), Mun- cie, Olney, Orland Park, Palo^ Park, Ridge Lake, Rock Island (usphs), Roxana, St. Charles (USPHS), Savanna, Scott Field (usphs), Seneca (usphs), Springfield (usphs), Urbana, Ware, Willow Springs, and Zion. 6. Culex tarsalis Coquillett L.ARV.A.— Fig. 81. Head moderately broad, proportioned much as in pipiens, tig. 82B. Antennae elongate, with long apical bristles and with a tuft near ape.x. Both upper and lower head hairs multiple and about as long as preantennal hair. Eighth segment with a triangular patch of about 50 small scales. Air tube slender, usually over six times as long as its width at end of pecten ; pecten 50 Illinois Natural History Survey Bulletin lol. 24, An. 1 composed of about 10 weak scales; beyond this are about five pairs of tufts arranged very irregularly but all near ventral mar- gin; the basal three pairs are long and each one has three to six hairs, the apical two short and usually having two to four hairs. Female.—Length of wing 4.5 mm. Beak and palps dark brown, beak with a white band just beyond middle, palps with extreme apexes tipped with white scales. Dorsum of head with a mixture of brown and gray scales. Mesonotum brown with narrow grayish-white lines as illustrated in fig. S6A. Dorsum of abdomen brown with basal patches of white scales. Legs with posterior aspects of femora and tibiae cream, anterior aspects dark brown, each with a central stripe of white scales extending down the middle of this brown area from base to apex, the white line on the anterior legs broken into a series of white bars; tarsi dark bluish brown, all segments of hind tarsi with a white ring at both base and apex of segment, tarsi of front and middle legs with white bands indistinct on, or absent from, the apical two or three segments. Wings dark scaled except for a scattering of white scales on the costal region of each. Male.—In size, color, and general struc- ture similar to female. Palps longer than beak, apical two segments with a long brush. Genitalia, fig. 93: basistyle elongate, with a pronounced subapical lobe bearing a small leaflet, a pair of stout spurs and a pair of more slender spines. Dististyle curved and narrow. Tenth sternite with a large apical lobe, the lateral series of teeth truncate and flattened. Middle mesosomal plates with three distinct processes: (1) a large blunt basal tooth, (2) a series of five or six long large sharp teeth, and (3) a curved ventral blade that is closely appressed to the inner mesosomal plate. This last forms a long curved slender blade. In the plains states this species occurs in very large numbers; in Illinois it has been taken in widely scattered localities over the entire state and only rarely in large num- bers. The adults occur chiefly in middle and late summer, with a few persisting into early autumn. The larvae have been found in a wide variety of situations, including hoof prints, pools, stream beds, marshes, and backwaters. A colony at Cahokia, Illi- nois, occurred in a drainage backwater hav- ing a very high pollution by sulfuric acid waste. The species is said to hibernate as ferti- lized adult females; the males apparently die at the advent of winter. Breeding be- gins in early spring and continues until autumn. The range of the species includes most of the semiarid regions of the west coast and the great plains. Illinois seems to be near the eastern edge of the range. Adults of this species have been found naturally infected with the virus of western encephalomyelitis. The females, which attack men readily, arc on the wing chiefly at dusk or after dark. They invade houses often and are fierce and painful biters. Illinois Records.—Larvae, collected June 11 to October 15, and males and females, collected June 21 to October 28, are from Algonquin, Belleville (USPHS), Cahokia (USPHS), Camp Ellis (usPHs), Carterville (usphs), Chanuie Field (usPHs), Des Plaines, East Peoria (usPHs), East St. Louis, Edwardsville, Fox Lake, Granite City (usphs), George Field (usphs). Great Lakes Naval Training Station, Greenville, Havana, Hoopeston (usphs), John- ston City (usphs), Marion (usphs), Milford (usphs), Savanna (usphs), Scott Field (usphs), Seneca (usphs), Springfield, Urbana, Water- loo, and Zion. ; Subgenus Melanoconion Theobald This subgenus is characterized by the wide scales on veins R2 and Ra, which are in marked contrast with the long slender scales on Rs, fig. 87B. In the Illinois species, the males have the basistyle almost globular, and the middle and inner mesosomal plates not differentiated from each other. 7. Culex erraticus (Dyar & Knab) Larva.—Fig. 85. Head moderately wide. Antennae long, with long apical bristles and with a long tuft situated near apex, prean- tennal tuft long and dense, lower head hairs long, single, and bristle-like. Upper head hairs very short and multiple, with at least four and usually six hairs to each bristle. Abdomen with most of the segments spicu- lose, having a covering of extremely fine spinules giving it a dense, pilose appearance. Eighth segment with comb consisting of an irregular single or double row of 12 to 15 scales. Air tube only moderately long but narrow, about six times as long as its width at end of pecten; pecten composed of about 12 weak scales; beyond this are four or fiveJ August. 1947 Ross: Mosquitoes of Illinois 51 pairs of loni; multiple tufts situated very close to ventral margin. Female.—Length of wing 3.5 mm. Head, mesonotum. and dorsum of abdomen almost entirely purplish-brown scaled; abdo- men usually with narrow basal bands of cream scales, usually with brown scales intermingled so that the bands are indistinct and muddy. Dorsum of head having a wide triangular mesal area with narrow scales. the area between this and the eye covered with broad overlapping scales; these are in addition to the erect scales that stand up like a comb above this area. Legs dark except for usually creamy portions of femora. Wings entirely dark scaled. ^LALE.—Size, color, and general struc- ture as for female. Palps long, with e.xten- sive apical brushes. Male genitalia, fig. 95: basistyle short and almost globular ; apical lobe produced into three long stout stalks, the two lower ones each bearing a stout flat- tened process, the upper one bearing a leaf- let and three spines; dististyle sinuate, with the end ridged and produced into a pair of minute teeth. Tenth tergite bearing a row of flattened teeth and a stout basal lobe of moderate length. Middle mesosomal plates bladelike and each divided at apex into a short sharp mesal point and a wider blunt lateral triangle. Inner mesosomal plates apparently not differentiated. .Abundant and widespread in southern and central Illinois, this species is a comparative r:irity in the northern part of the state. The larvae frequent marshy areas at the edges of lakes, pools, and ponds in which there is abundant emergent vegetation. They are especially numerous in ponds with growth of cattails and water primrose. In addition to ponds, they frequent vegetation-choked shallows along the edges of sluggish streams and ditches. They are usually taken in com- pany with Anuphi-les. and frequently with Uranntaeiiia, also. In Illinois, adult emer- gence begins in the southern part of the state, usually early in June, and continues until early autumn. The adults attack with per- sistence and inflict painful bites. The species is widespread throughout the southern states. Illinois is near the north- ern edge of its range. It was recorded from Illinois by Alatheson (1930) under the name inliibilfitor Dyar & Knab. At that time erriiticiis was generally considered a direct synonym of inhi/iilntor. King & Bradley (1937) have shown, however, that inhibitii- trjr and firaticus are distinct species. The name inhihilatur should be applied to a Santo Domingan species, whereas erraticus is the name to be used for this small dark Illinois mosquito. Illinois Records.—Larvae, collected from June 29 to October 3, and males and females, collected from June 2 to November 4, are from .Mma, Belleville (USPHS), Benton, Caho- kia (USPHS), Cairo, Carbondale, Carterville (USFHS), Charleston, Cottage Grove, Coulter- ville, Crab Orchard Lake (usPHS), Decatur (usPHs), East Hannibal, East Peoria (usPHs), East St. Louis, Edgemont, Edwardsville, Effingham, Elsah, Fo.x Ridge State Park, George Field (USPHS), Gibsonia, Gossett, Grafton ( USPHS ), Grand Tower, CJranite City (usPHS), Cjrayville, CSreenville, Hannibal, Havana, Herod, Herrin, Hull, Johnston City (usPHS), Karbers Ridge, Lake CJIendale, Marion, Maroa, Momence, Mount V'ernon, Neoga, Oakwood, Olive Branch, Omaha, Peoria (usphs), Peie Marquette State Park, Pike, Ridge Lake, Rock Islanii (usphs), St. Joseph, Salem, Seneca (USPHS), Springfield (usphs). Ware, West V'ieima, and \\'illo\v Springs. 8. Culex peccator Dyar & Knab Larva.—Very similar to larva of t-rrali- riis. differing as follows: upper head hairs short as in erraticus but only double or triple; body only sparsely spiracular; comb with the scales forming a definite patch rather than an irregular line. Adults.—Similar in size, color, and gen- eral structure to those of erraticus. Both sexes differ in having almost the entire occi- put covered with appressed and overlapping scales, at the most with a narrow mesal line of narrow scales. Males differ in characters of the genitalia, fig. 94: the basistyle is nearly globular, as in erraticus, the subapical lobe is very definite, the leaflet large, irregular, and expanded, the stalks thicker and defi- nitely proportioned; dististyle very thick, sharply bent at nearly a right angle with a series of concavities and brushlike lines of minute setae. Like the preceding, this species occurs throughout the southeastern states, where it is usually a rarity. In Illinois, we have taken only a few records of the species and most of these are in the southern fifth of the state. The larvae presumably frequent uoodlanil pools with emergent vegetation. King, Bradley, & McNeel (1939) note that the larvae, when found, are almost always associated w ith those of apicalis. 52 Illinois Natural History Survey Bulletin I ol. 24, Art. I Illinois Records.—Carbondale: June 22-23, 19+2, M, 29 ; October 19, 1943, M. Carter- ville: Aug. 13, 19+2, 1(5. Gossett: June 3, 19+2, Ross k Mohr, 3 larvae. Grantsburg: June 10, 19+1, Ross & Mohr, 1 larva. La Rue: Oct. 1, 19+2, 1(5. Olney: June 10, 19+1, Ross & Mohr, 1 larva. Scott Field: Sept. 10, 19+2, light trap, 1 i . 9. AEDES Meigen To this genus belong nearly half of the Illinois mosquito fauna, with records for 21 species, which include nearly all of the truly nuisance species and both early spring and temporary summer pool species. One or two of the species transmit mammalian dis- eases. In all species of the genus, as far as known, the eggs are laid on moist soil or humus, or just above the water line in tree holes or artificial containers. They hatch only after they have been flooded. Some species, in which a desiccation and cold period is necessary for hatching, have only a single generation per year, the adults emerging in early spring. Other species are intermittent breeders and usually have two or three generations per year, depending on the rains. Certain taxonomic difficulties were encoun- tered in studying the genus. The most important resulted in the discovery that in many of the species the head hairs of- the larvae were e.xtremely variable, with the result that often in the then existing keys each side of the head of a single individual would key out to a different species. Fre- quently, on this same basis, specimens of a pure culture would key out to several spe- cies. With the Illinois species it was possi- ble to circumvent this difficulty by introduc- ing new key characters especially concerning the relative positions of various stable hairs. Supplemental material regarding extra- limital species may be found in all of the comprehensive treatments of the family listed under the heading "Literature" on page 15. Kev to Species LARVAE 1. Anal segment completely ringed by sclero- tized plate, fig. 96 2 Anal segment with sclerotized plate not meeting on venter, frequently forming only a dorjal saddle, fig. 99 9 2. Pecten extending beyond ventral tuft, lig. 96 21. fulvus pallens Ventral tuft situated beyond end of pecten, fig. 98 3 3. CJills budlike, much shorter than anal seg- ment, fig. 98 4. sollicitans CJills at least as long as anal segment, fig. 99, frequently very long and pointed at tip, fig. 101 + +. Ciills extremely long, two or three times length of air tube, and with prominent tracheae, fig. Ill ; pecten with only a few scales 20. dupreei Gills shorter than air tube, without tra- cheae, fig. 106; pecten with about 15 scales 5 5. Air tube short, not more than two and one-half times as long as wide, and pec- ten with several widely detached teeth 5. nigromaculis Either air tube over three times as long as wide, or pecten without detached teeth 6 6. Comb consisting of about 12 scales or less forming a single row, fig. 106 7 Comb either consisting of 15 or more scales or forming a double row or tri- angular patch, fig. 108 8 7. Comb with 6 evenly spaced teeth; apico- dorsal tuft of anal segment represented by a pair of long, strong setae, as in fig. 106 22. implacabilis Comb with about 12 teeth forming an irregular line; apico-dorsal tuft of anal segment many haired, fanlike, fig. 107 23. punctor 8. Air tube with ventral brush two-thirds distance from base to apex, fig. 108 .... 14. trivittatus Air tube with ventral brush midway be- tween base and apex 6. mitchellae 9. Head with preantennal hair delicate and single, fig. 112; anal segment with pre- apical dorsal tuft only three-branched, but as long as apical tuft. . . . 2. aegypti Head with preantennal hair divided into a 4— to 15-branched tuft, fig. 113; anal segment with preapical dorsal tuft 8- to 15-branched, much shorter than api- cal tuft 10 10. Pecten with one or more apical teeth spaced fairly wide apart, appearing detached from row, figs. 101-103 ... 11 Pecten with all teeth close together and forming an even row, figs. 104, 105. .16 11. Head with lower head hair considerably laterad of, and only slightly anteriad.j; of, upper head hair, fig. 100 12'-.* Head with lower head hair only slightly laterad of, but considerably anteriad of, upper head hair, fig. 102 13 12. Antennae fairly thick at base and long, tuft beyond middle, fig. 100; upper and lower head hairs double, occasionally August, 1947 Ross: Mosquitoes of Illinois 53 Figs. 96-101. — Ai-Jis larvae; .7, apex of ahciotnen, lateral aspect; H, ilorsum of head. Inset are details of pcclen and comb scales. On these and succeeding larval head drawings of Aedes, the mouth brushes are omitted. 54 Illinois Natural History Survey Bulletin Vol. 24, Art. 1 Figs. i\i2-WS.—.-ledes larvae; A, apex of abdomen, lateral aspect; B, dorsum of head. Inset are enlarged drawings of pecten and comb scales. Aiif)ust. 1947 Ross: MosQuiTOKS of Illinois 55 Figs. 106-110. — Aedes larvae, apex of abdomen. All are the lateral aspect except fig. HOB, which is the ventral aspect of A. spencerii showing one or two anal hair tufts anterior to the barred area at base of gills. 56 Illinois Natural History Survey Bulletin ]'ol. 24, Art. 1 Figs. 111-113. — Aedes larvae; A, apex of abdomen, lateral aspect; B, dorsum of head. Inset are enlarged drawings of pecten and comb scales. (Fig. Ill redrawn from Dyar.) Juffust, 1947 Ross: Mosquitoes of Illinois 57 one of the four triple; clypeal bristles moderately far apart 15. aurifer Antennae not enlarged at base, tuft below middle, fig. 101 ; upper and lower head hairs triple to multiple, at least two of the four with four to six branches; clypeal bristles much closer together. . 7. cinereus 13. .Air tube five times as long as width at middle of pecten, its ventral tuft very long, fig. 103 .... 8. excrucians .'\ir tube not more than four times as long as width at middle of pecten, its ven- tral tuft frequently short, fig. 102 ... 14 14. Upper and lower head hairs single; anal segment with only one or two tufts ante- rior to apico-ventral barred area, fig. 110 19. spencerii Upper and lower head hairs double to quadruple; anal segment with several tufts anterior to barred area, fig. 102 15 15. L.iieral comb consisting of more than 20 scales in a triangular patch 9. flavescens Lateral comb consisting of 10 to 15 scales in an irregular single or double row, fig. 102 3. vexans 16. Gills budlike, much shorter than anal seg- ment, as in fig. 9iA 16. dorsalis (Jills long, either tapering at apex, fig. 104, or sausage shaped, fig. 99 17 17. Lateral comb of segment 8 forming a single row or an irregular double row of about 10 to 15 large well-spaced teeth, fig. 99 1. triseriatus Lateral comb forming a somewhat tri- angular patch containing 20 or more teeth, figs. 104, 109 18 18. Both upper anil lower head hairs with four or more branches, short, similar in length and appearance to preantennal hair; clypeal hairs only about half as far apart as upper head hairs, fig. 105 17. canadensis Either upper or lower head hairs with only three branches or less, much longer than preantennal hair, or clypeal hairs about as far apart as upper head hairs, fig. 97 19 19. Lower head hairs situated considerably to the side of, and only slightly anterior to, upper head hairs, the upper hairs usu- ally with five branches or more ; anten- nae very long, three-quarters length of head, with antennal tuft verv long, fig- 97 12. thibauiti Lower head hairs almost directly anterior to, and only slightly laterad of, upper head hairs, the latter only rarely with as many as four or five branches; anten- nae shorter, with a shorter tuft, fig. 113 20 20. .\\t tube five times as long as width at middle of pecten, tapering markedly, so that apex is about half width of base, fig. 109.-/, its apical spine long and dark 11. fitchii .Mr tube at most four times as long as width at middle of peclen, tapering less, so that apex is about three-quarters width at base, its apical spine short and inconspicuous, fig. 107 21 21. Sclerotic plate of anal segment only slightly longer than deep, extending more than three-quarters distance down sides of segment, fig. 107; air tube with ventral tuft only about half as long as tuft posterior to comb 18. sticticus Sclerotic plate of anal segment much longer than deep, extending only one- half or two-thirds distance down sides of segment, fig. 104; air tube with ven- tral tuft about as long as tuft posterior to comb 22 22. Lower head hairs usually single; protho- racic hairs 4 and 7 single; ventral tuft of air tube usually with three or four hairs 10. stimulans Lower head hairs usually double or triple; prothoracic hairs 4 and 7 usually double ; ventral tuft of air tube usually with five to eight hairs 13. grossbecki FEMALES 1. Tarsi with white rings, figs. 127-132. . .2 Tarsi without white rings, figs. 125, 126 13 2. Tarsi with narrow rings at both ends of some segments, fig. 132 3 Tarsi each with a ring at only one end of a segment, fig. 130 4 3. Wing scales uniformly dark 17. canadensis Wing scales mostly white with a small mixture of black scales. . . . 16. dorsalis 4. Proboscis dark with a definite white band, fig. 35 5 Proboscis nearly uniformly colored 7 5. All wing scales dark; hind basitarsus black with a single basal white band, fig. 131 6. mitchellae Some wing scales black, some white, giv- ing a spotted appearance; hind basi- tarsus frequently with a middle yellow- ish band in aiidition to basal white band, fig. 130 6 fi. Abdomen with extensive dorsal areas of cream or tawny scales and small lateral areas of white scales, the two colors definitely contrasting 4. sollicitans Abdomen with both dorsal and lateral pale scales white 5. nigromaculis 58 Illinois Natural History Survey Bulletin Vol. 24, Art. 1 7. Mesonotum black with lyre-shaped silver 8. White tarsal rings narrow, fig. 127 markings, fig. 114 2. aegypti 3. vexans Mesonotum otherwise, figs. 115-123, never White tarsal rings wider, figs. 124, 130 with extensive silver lines 8 9 ms fcsi-ii mm -117 t^n PH 116 ^^ ''wi^"Q ^^ 14 if£, _^__^^ P2g- 121 122 - ,27 JI20 ^N^ h ^- ^^**^^ ^^^--^lag •WW I'if/I t^\l'^* 123 «k^;..6e^r^i^^:i.««^:!-__ _ 132 Color Patterns of Female Aede^ Fig. 114.—^^. aegypti, dorsum of thorax and Fig. 121.—.-/. tnsenatns, dorsum of thorax abdomen. of light phase. Fig. 115. — A. triiittatus. dorsum of thorax Fig. 122. — A. thibaulti, dorsum of thorax, and abdomen. (After King, Bradley, & McNeel.) Fig. 116. — A. stlclUns, dorsum of thorax Fig. 123. — A. aurifer, dorsum of thorax, and abdomen. Fig. 124. — A. grossbecki, hind leg. Fig. 117. — A. sprncer'ii, dorsum of abdomen. Fig. 125. — A. sticticus, hind leg. Fig. 118. — A. grossherki, dorsum of tho- Fig. 126. — A. Iriseriatus, hind leg. rax and abdomen. Fig. 127. — A. vexans, hind leg. Fig. 119. — A. dorsalis, dorsum of thorax and Fig. 128. — A. aegypti, middle leg. abdomen. Fig. 129. — A. aegypti, hind leg. Fig. 120. — A. iriseriatus, dorsum of thorax Fig. 130. — A. soUicitans, hind leg. and abdomen. This figure illustrates dark Fig. 131. — A. mitc/iellae, hind tarsus, phase of thoracic pattern. Fig. 132. — A. dorsalis, hind tibia and tarsus. August, 1947 Ross: MosotiTOES of Illinois 59 9. All veins of wings with rows of very wide scales, fig. 169; mesonotum as in fig. US, with a large central black spot enlarged posteriorly 13. grossbecki Some veins with rows of only long narrow scales, fig. 168; mesonotum marked oth- erwise 10 10. .-Abdomen entirely covered with yellowish scales, without banding; mesonotum entirely yellowish 9. flavescens Either abdomen with decided banding or mesonotum with a pattern of gray or reddish brown 11 11. Lower part of mesepimeron with three to five fine long bristles; mesonotum fre- quently patterned with light gray brown, but occasionally reddish brown 10. stimulans Lower part of mesepimeron with none to two fine long bristles ; mesonotum always predominantly reddish brown 12 12. Mesonotum with a fairly narrow reddish- brown stripe, flanked with white or cream; one or two lower mesepimeral bristles usually present 11. fitchii Mesonotum with reddish-brown central area larger and not well defined ; no lower mesepimeral bristles present. . . . 8. excrucians 13. Mesonotum with a definite mesal silvery triangle, flanked with dark areas 20. dupreei Mesonotum without a mesal silvery tri- angle, usually with a mesal dark area flanked with light areas, figs. 115, 121 14 14. Mesonotum with very dark or black mesal area flanked by gray or silvery areas, figs. 115, 121 15 Mesonotum brown or yellow, often uni- form in color, sometimes with mesal area reddish brown and lateral areas light golden brown 20 15 Central stripe of mesonotum narrow, tapering posteriad, well defined, fig. 115 14. trivittatus Central stripe either wider posteriad, fig. 121, or parallel sided, fig. 116 16 16. Central stripe of mesonotum parallel sided, sometimes with a pair of detached short dark stripes along posterior half, fig. 116; abdominal tergites with complete basal or mesal white bands 17 Central stripe of mesonotum much nar- rower anteriad, usually widened pos- teriad to almost the full width of the mesonotum, figs. 121, 123, abdominal tergites mostly blue black, with lateral white spots on some segments, but with- out bands, fig. 120 18 17. Abdomen with light stripes narrow, regu- lar and basal, widest on basal segment, fig. 116, without mesal or apical stripes 18. sticticus .Abdomen with light stripes basal, apical and mesal, narrowest on basal segments and almost covering the apical segments, fig. 117 19. spencerii 18. Scales of postero-lateral lobes of prono- tum white and wide, markedly over- lapped to form a solid shingled area, fig. 170, very similar to scales of meso- pleurae 1. triseriatus Scales of postero-lateral lobes of prono- tum long and narrow, only half as wide as mesopleural scales, tawny or yellow- ish in color and not solidly shingled, fig. 171, markedly contrasting with scales of mesopleurae 19 19. Mesal dark mark of mesonotum with ante- rior portion narrow, suddenly widened beyond middle to include nearly full width of mesonotum, fig. 122 ; antero- lateral areas bright grayish white. . . . 12. thibaulti Mesal dark mark of mesonotum with ante- rior part wider, widening gradually to posterior margin, fig. 123 ; lateral areas grayish, shading to a golden tint where they merge with mesal dark area. . . . 15. aurifer 20. Integument and scaling entirely bright golden yellow, except a few black-scaled areas 21. fulvus pallens Integument dark brown to black, with few or no yellow scales 21 21. Maxillary palps with apical segments only slightly longer than basal segments; wing at most 4.3 mm. long; abdomen with very narrow cream basal bands on dorsum but with all of ventral part of tergites cream 7. cinereus Maxillary palps with apical segments twice as long as basal segments; wing over 4.8 mm. long; abdomen either with wide basal bands, or ventral part of tergites with considerable areas of dark scales 22. implacabilis: 23. punctor MALES 1. Dististyle inserted before apex of basi- style, the portion beyond the dististyle forming an apical cone, fig. 135 7. cinereus Dististyle articulating as extreme apex of basistyle, fig. 133 2 2. Dististyle wide near apex, terminating in a sharp projection that is nearly as long as terminal spine ; claspettes forming a small, bushy lobe, fig. 133. . . .3. vexans Dististyle narrow at apex, tipped by ter- minal spine, fig. 134 3 3. Claspettes absent, fig. 134 2. aegypti Claspettes present, figs. 136-158 4 60 Illinois Natural History Survey Bulletin I'ol. 24, Art. I Figs. m-Ua.—Aedes, male genitalia, ventral aspect; A, mesal aspect of bastistyle; db. dorsal brush; inset is claspette, lateral aspect. (Figs. 133, 13+ after Matheson.) .hi<,ust, 1947 Ross: Mosquitoes of Illinois 61 Figs. 141-146. — AfJes male genitalia, ventral aspect. A, baslstyle, mesal aspect; B, enlarged detail of basal lobe, ventral aspect; C, claspettes, dorsal aspect; inset is claspette, lateral aspect. 62 Illinois Natural History Survey Bulletin I'ol. 24, Art. 1 STIMULANS Figs. 147-153. — Acdes male genitalia, ventral aspect. ,7, basistyle, mesal aspect; B, basal lobe, ventral aspect; D, basal lobe, posterior aspect; inset is claspette, lateral aspect and in figs. 1+8 and 149 a detail of its apex. Jiif/iisi. W47 Ross: Mosquitoes of Illinois 63 FUNCTOR 157 GROSSBECKI Figs. 154-158. — Acdes male genitalia, vential aspect. A, hasistyle, mesal aspect; (.', clasp- ettcs, ilorsal aspect; D, basal luhe, posterior aspect; /;, hasistyle, ventrolateral aspect silhouette; inset, claspette, lateral aspect. 64 Illinois Natural History Survey Bulletin lol. 24. Art. 1 16. 17. 4. Basistyle without apical lobe, figs. 136- 14. 138 5 Basistyle with apical lobe definitely devel- oped, figs. 139, 140, or represented by a mass of long setae, figs. 141, 142 ... .7 5. Basistyle with a thick brush of setae (db) on dorsal side, fig. 137; basal lobe with a large area of setae. . . .1. triseriatus Basistyle without a brush of setae on dor- sal side, but with a definite brush form- jj ing the basal lobe, figs. 136, 138 6 6. Basal lobe a distinct, raised prominence; basistyle considerably widened at basal lobe, fig. 136 6. mitchellae Basal lobe represented by only a slightly raised disclike area; basistyle only imperceptibly widened at this point, fig. 138 5. nigromaculis; 4. sollicitans 7. Apical process, of claspette massive and contorted, fig. 139, the contorted por- tion thin and pale 12. thibauiti Apical process of claspette forming a nar- row blade, which may be straight, fig. 140, curved, fig. 143, or barbed, fig. 141 8 8. Basistyle with a dense patch of long setae at apex; basal lobe forming a flat scle- rite on mesal face, with a single long dorsal spine, fig. 141 15. aurifer Basistyle without a dense apical patch of long spines, but with a well-developed apical lobe; basal lobe otherwise, either projecting, or with a large ventral spine, or without a spine, sometimes with a cluster of long setae 9 9. Apical lobe with a large dense patch of spatulate setae, fig. 140 .. 17. canadensis Apical lobe with setae all narrow and hairlike, figs. 143-158 10 10. .Apical lobe of basistyle very long, a dis- tinct angulation near middle of basi- style, fig. 143 ; integument of almost entire body yellow. 21. fulvus pallens Apical lobe either short, fig. 144, or with- out an extra angulation, fig. 145 ; integ- 20. ument chiefly dark brown or black ... 11 11. Basal lobe with two macrochaetae and many small setae, those near the macro- chaetae minute, fig. 145... 16. dorsalis Basal lobe at most with only one macro- chaeta, sometimes with some of the other setae very long, fig. 147 12 12. Basal lobe triangular and appearing de- 21. tached, joined to basistyle by only a nar- row sclerotlzed strip, figs. 147-149.. 13 Basal lobe forming a solid part of the basistyle 15 13. Apical lobe small, fig. 147, with a few projecting setae along its mesal margin 20. dupreei Apical lobe large, fig. 148, with numerous appressed setae along its mesal margin 14 V). -Appendage of claspette wide, its lower basal corner produced ; mesal aspect of f apical lobe long and narrow, fig. 149. . 19. spencerii Appendage of claspette narrower, its lower margin almost confluent in out- line with claspette; mesal aspect of api- cal lobe shorter, decidedly ovate, fig. 148 ; 18. sticticus Basal lobe without macrochaetae, having ; only abundant short setae, fig. 155. . . . 8. excrucians i Basal lobe with at least one conspicuous macrochaeta or a group of long setae, fig. 154 16 Head of claspette produced backward in- to a sharp basal barb, fig. 151 14. trivittatus Head of claspette without a barb, fig. 152 17 Basal lobe composed primarily of an area of short setae forming the basal portion of the mesal face of the basistyle, figs. 152, 153 18 Basal lobe represented by a distinct lobe projecting mesad from the basistyle, figs. 154, 156 19 Area comprising basal lobe long and tri- angular, its basal spine very large, fig. 152; appendage of claspette fairly short 9. flavescens Area comprising basal lobe shorter, its lower portion somewhat projecting, its basal spine only moderately large, fig. 153; appendage of claspette very long and slender; a membranous "island" above macrochaeta 10. stimulans Apical lobe short, appendage of claspette elongate with a narrow necklike base, fig. 157 13. grossbecki Apical lobe very long, fig. 156, or append- age of claspette without a basal neck, fig. 154 20 Basal lobe with membranous, setiferous portion hidden behind sclerotized ven- tral shoulder, fig. 158, which projects ventro-mesad 22. implacabilis Basal lobe with membranous, setiferous portion well exposed from ventral aspect, and without a projecting ventral shoul- der, figs. 154, 156 21 Basal lobe with sparse and moderately short setae, without a sclerotized band along the dorsal and mesal periphery; apical lobe with abundant setae on mesal face, fig. 156 23. punctor Basal lobe with abundant longer setae which form a thick brush, and with a sclerotized collar around the dorsal and mesal periphery, fig. 154; apical lobe with a few long setae on inesal face. . . 11. fitchii .h,!/ust. 1947 Ross: Mosquitoes of Illinois 65 The SuBGENERic Units An investigation of characters of the female genitalia indicates that the subgenera represented in the Illinois Aeita fauna are readily segregated on these characters. In those subgenera in which we have more than one species, either no differences were found among the included species (in the case of Tai niorhynchus). or the differences observed among the various species were so slight and of such a comparative nature that it was impractical to use them as a basis for identi- fication. These findings follow closely those of Gjullin (19,^7), who treated western species of the genus. Diagnosis of Subgenera Representeii IN Illinois (BASED ON female GENITALIA) 1. Postgenital plate elongate, extending three- fourths distance to tip of cerci ; eighth segment large and well sclerotized, with short basal membrane, fig. 160. Sole Illinois species, triseriatus . . . . Finlaya Postgenital plate shorter, its tip not reach- ing half the distance to tip of cerci, tig. 159 2 2. Apical margin of eighth sternite with a deep mesal cleft or incision, figs. 159, 163 3 Apical margin of eighth sternite with only a shallow indentation, fig. 164, or trans- \'erse, fig. 167 4 3. Cerci little longer than ninth tergite ; po^t- genital plate with rounded apex; eighth segment nearly a> high as long, fig. 163. Sole Illinois species, aegypti Stegomyia Cerci nearly twice as long as ninth tergite; postgenital plate with apex notched ; eighth segment nearly twice as long as high, fig. 159. Sole Illinois species, vexans Aedimorphus 4. Eighth tergite and sternite almost entirely membranous, with minute sclerotized spots at bases of some setae; apex of eighth sternite forming a moderately sclerotized "Hap," which is slightly in- cised on meson, fig. 164, Only Illinois species, sollu itans and miti lirilat' Taeniorhynchus Eighth segment moderately and uniformly sclerotized throughout the principal sclerites 5 5. Eighth segment nearly as high as long, the sternite with its apical margin sinu- ate and not projecting beyond the ter- gite; cerci short; postgenital plate with a deep cleft, fig. 166. Sole Illinois spe- cies, tinereus Aedes Either segment much longer than high, fig. 167, or sternite with nearly straight apical margin, projecting markedly be- yond tergite, fig. 162; cerci frequently long, fig. 167, and postgenital plate usu- ally with only a shallow cleft. Con- tains most of the Illinois species of the genus Ochlerotatus Subgenus Finlaya Theobald 1. Aedes triseriatus (Say) Larv.\.—Fig. 99. Head slightly longer and more rounded than in most other mem- bers of the genus; upper head hairs long, slender, and single or double; lower head hairs shorter, double to quadruple, and hav- ing between them a pair of distinct plumose tufts. Eighth segment with comb forming a single row varying from a regular one composed of 6 or 8 teeth to a dense, irregu- lar row consisting of 10 to 14 teeth. Air tube about three times as long as wide, both the dorsal and ventral margins curving to form a tapered apex; hair tuft long, single or double, and situated beyond pecten ; pec- ten with 15 to 20 fairly even and quite reg- ularly spaced, closely set teeth. Anal seg- ment with dorsal plate covering only the dorsal half of the segment and bearing a multiple tuft at its postero-ventral corner; anal gills rounded at apex, short, the ven- tral pair shorter than dorsal pair. Fem.ale.—Length of wing 4 mm. Bealc and palps black scaled; back of head silver scaled. Mesonotum with a black central portion and silver lateral areas forming a pattern shown in figs. 120, 121 ; there is con- siderable variation in the shape of these markings. Pleural areas with patches of very dense silvery scales. Abdomen with dorsum chiefly blue-black scaled, segments 4—7 with lateral patches of white scales which are smallest on 4, increase posteriorly and usually form a solid white band on 7, venter conspicuously banded with black and white, the white predominating. Legs with tibiae and tarsi blue black, femora with basal half cream, apex blue black, sometimes the anterior face almost entirely blue black. Wings entirely dark scaled. M.ALK.—Color identical with that of female. Palps extremely long, projecting beyond beak. Male genitalia, fig. 137, char- acterized as follows: basistyle without defi- nite apical or basal lobes, the meso-basal portion of the ventral aspect having a large loose brush and dorsal portion having a 66 Illinois Natural History Survey Bulletin /«/. 24. Art. 1 conspicuous tuft near middle of mesal edge. Claspettes prominent, the base stout and short, the apical process long and slightly curved at apex. Breeding primarily in water in tree hole cavities, this species is distributed over the entire state. The adults are sharp biters but apparently do not wander far from the woods in which occur their breeding places. In periods when the rainfall and sap flow refill the tree holes frequently during the summer, this species breeds almost continu- ously. Development of the larvae is very slow compared to that of species which occur in ground pools. The few observa- tions we have made indicate that the larvae may require nearly a month during the sum- mer to reach maturity. The species hiber- nates in the egg stage. Recorded from the Chicago area by Ger- hard in 1910, the species was listed as wide- spread throughout the state by Matheson in 1930. Illinois Records.—Larvae, collected May 16 to September 16, and adults, collected May 10 to October 22, are from Belleville (USPHS), Cahokia (usphs), Camp Grant (usphs), Camp Ellis (usphs), Chicago, Carterville (usphs), Crab Orchard Lake (usPHs), Danville, Des Plaines, Dongola, Dubois, East St. Louis, Elsah, Epworth, Glencoe, Gorham, Great Lakes Naval Training Station, Havana, Homer, Johnston City (usphs), Kappa, La Rue, Law- renceville (uSPHs), Mahomet, Marion (uSPHs), Mascoutah, Mount Carmel, Mount Vernon (usPHs), Muncie, Oak Park, Oakwood, Onarga, Pike, Pulaski, Ravinia, Rising Sun, Rockford (usphs), Roxana, St. Jacob, Scott Field (uspHS), Springfield, Starved Rock State Park, Urbana, Ware, Weldon Springs, and White Heath. Subgenus Stegomjiia Theobald 2. Aedes aegypti (Linnaeus) Larva.—Fig. 112. Head somewhat oval; preantennal hair and upper and lower hairs all very delicate, long, and single; upper hairs almost directly on a line between the two preantennal hairs; lower hairs anterior to upper hairs but situated close to anterior margin of head and with a pair of delicate tufts between them. Eighth segment with comb consisting of a single arcuate row of about 10 toothed scales. Air tube short and relatively stout, about two and one-half times as long as wide and with its ventral margin slightly concave ; hair tuft fairly short, usually quadruple, situated just be- yond end of pecten ; pecten consisting of a close regular row of small teeth. Anal seg- ment with a ventral membranous strip between edges of sclerotized band; each pre- apical dorsal tuft with three to four fila- ments, apical dorsal tufts each with two, the filaments of both of about equal length; anal gills sausage shaped and about as long as siphon. Female.—Figs. 114, 128, 129. Length of wing 3.5 mm. Entire body and appendages clothed with very dark brown or black scales having many small and narrow silver spots and stripes, as follows: head with spots at apex of palps, base of antennae and other places ; mesonotum with two conspicuous lateral stripes curved so that both form a lyre-shaped pattern, with fainter mesal stripes and three white spots on scutellum; pleurae with several patches of silver scales; abdomen with a narrow white basal band on each segment, with a conspicuous large silver spot on the lateral portion of each ter- gite, and with the sternites forming a nar- row whitish area between these; hind tibiae with a broad white band at the base of each segment, middle and front legs with white bands on only the basal two segments; tibiae black; femora with small white kneecaps and stripes of silver scales along the anterior faces and much of the ventral faces. Wings entirely dark scaled. Male.—Similar in size and color to female with the exception of the palps, which are very long, have no apical brushes, and have well-defined conspicuous white bands at the base of each segment. Male genitalia, fig. 134, with very broad robust basistyle, disti- style terminal and simple, and claspettes completely absent. This species, the widespread yellow- fever mosquito of the South, has been taken at only one or two isolated points in Illinois. In this state it seems to be restricted to iso- lated small populations that occur as adven- tives. Apparently none of the introductions has persisted longer than a single summer. The records listed below from Edwardsville appear to be based on the introductions of adults with merchandise; probably no breed- ing or colonization resulted. Apparently this mosquito, one of the most important vectors of yellow fever, does not occur in Illinois naturally and is not able to establish itself permanently even when intro- duced. iugust. I'Ul Ross: Mosquitoes of Illinois 67 Fi^s. 159—167.—Aedes female genitalia. A, lateral aspect; B. ventral aspect; C, dorsal aspect. Abbreviations: c, cercus; />, postgenital plate; s, sternite ; /, tergite. Fig. 157B shows only the postgenital plate. 68 Illinois Natural History Survey Bulletin J'ul. 24, Art. I Illinois Records.—Belleville: Aug. 6, 1942, C. J. Rohde, 19 (USPHS) ; Aug. 26, 1942, chicken coop, 19 (usphs). Edwardsville: Sept. 24, 1943, biting in shop, Ross & Sander- son, 4 9 ; Oct., 1943, Ross& Sanderson, 1$ , 69. W.\TERLOO: Sept. 14, 1942, J. Williams, 19 (usphs). Subgenus Aedimorphus Theobald 3. Aedes vexans (Meigen) Larva.—Fig. 102. Head with upper hairs sometimes triple, sometimes quadruple, lower hairs double or triple, both of mod- erate length and without tufts between them. Eighth segment with comb variable, ranging from 6 to 12 teeth arranged in a scattered single row or an irregular double row. Air tube three and one-half to four times as long as wide; hair tuft short, usu- ally quadruple, situated well beyond the pecten ; pecten with 17 to 25 teeth, the basal teeth small, one to three apical teeth very large, widely separated from the remainder of the pecten, and, if more than one, from each other. Anal segment with sclerotized ring not complete ventrally; anal gills longer than ring, tapering gradually and pointed at apex, sometimes nearly as long as the air tube. Female.—Length of wing 4.5 mm. Head variegated with gray and brown, palps mostly brown-and-black scaled, with a small patch of white scales at apex. Mesonotum almost uniformly dark-brown scaled except for irregular posterior and lateral patches of gray scales. Abdomen with dorsum con- spicuously banded, each segment with a basal white band and an apical bluish-brown band ; the apical tergites frequently have an additional narrow white band of scales and the basal white bands are usually very nar- row on the meson ; venter of abdomen almost entirely white scaled. Legs, fig. 127, with tarsi black, each segment with a basal white band ; these white bands may be ex- tremely narrow on all the segments but are always conspicuous on the posterior tarsal segments and may occupy a quarter of the length of each segment. Wings entiiely bluish-brown scaled. Male.—In size and color similar to female, differing chiefly in the long palps, which have a white-scaled band at the base of each segm.ent. Genitalia, fig. 133, readily distinguished by the following characteris- tics: basistylc with only an inconspicuous basal swelling; dististyle with the apical spine prominent and arising a short distance from the apex, this spine and the pointed apex usually appearing as a fork; claspettes short and surmounted by a tuft of short setae. The commonest mosquito in Illinois in point of numbers throughout the warmer months of the year, Aedes vexans has a range that blankets the entire state. It is a vicious biter and breeds in a wide variety of temporary pond situations. Especially abun- dant after the summer rains, when it emerges in clouds from many types of rain pools and the flooded edges of marshes, vexans is the greatest mosquito nuisance in the state. To date the species is not known j to transmit human diseases. ] There is a great deal of literature on this mosquito. Formerly it was recorded as , sylvestris Theobald. Holarctic in distribu- tion, it does not extend in numbers into the extreme southern United States but is abun- dant at least as far south as southern Illi- nois. The species may have several generations each year. The first brood of adults typi- cally emerges in early spring, a week or so after emergence of canadensis and sticticus. Illinois Records.—Larvae, collected April 3 to September 9, and many males and females, collected April 5 to October 26, are from Algon- quin, Allendale, Altamont, Amboy, Antioch, Areola, Baker, Beach, Belleville (usPHS), Ben- ton, Bensenville, Billett, Bishop, Bourbonnais, Cache, Cahokia (usPHS), Cairo, Calvin, Camp Ellis (usphs), Camp Grant (usphs). Carbon- dale (usPHs), Carterville (usphs), Cary, Casey, Cave-in-Rock, Central City, Champaign, Channel Lake, Chanute Field (usphs), Charles- ton, Chebanse, Chemung, Chester, Chicago, Cordova, Danville, Darwin, Del Rio, Dcs Plaines, Downs, Duncans Mills, Dupo, East Dubuque, East Moline (usphs). East Peoria (usPHS), East St. Louis, Edwardsville, Effing- ham, Eichorn, Eldorado, Elgin, Elizabethtown, Elsah, Epworth, Farmer City, Fort Massac State Park, Fox Lake, Fox Ridge State Park, Frankfort, Franklinville, Fulton, George Field (usPHs), Oilman, Glencoe, Golconda, Got- ham, Gossett, Grafton (usphs). Grand Tower, Granite City (usphs), Grantsburg, Grass Lake, Grayslake, Grayville, Great Lakes Naval Training Station, Halfday, Hamel, Hardin, Raiding, Havana, Hazel Crest, Hebron, Herod, Herrin, Homer, Horse Shoe Lake, Jerscyville, Joetta, Johnston City (uSPHs), Jolitt, Kampsville, Kankakee, Kappa, Karnak, Kcensburg, Keithsburg, La Grange, Lakef Bluff, Lake Fork, Lake Glendale, Lake Villa,! Aiii/iist, 1947 Ross: Mosquitoes of Illinois 69 La Rue, La Salle, Lawrencevilie (usPHs), Lib- ertvville, Lincoln, Mahomet, Makaiuia. M.irissa, Mascoutah. Mattoon, Mazon, Mc- Henrv, Metropolis, Mill Shoals, Mississippi Palisades State Park, Momence, Monticello, Morris, Mount Carmel, Mount Vernon, Mount Zion, Muncie, Neoga, New Boston, New- Haven, New Holland, Northmoor, Oak Park, Oakwooii, Oilfield, Olney, Oregon, Orland Park, Oswego, Palatine, Palestine, Palos Park, Patton, Pecatiinica, Pembroke, Peoria (usphs), Pere Marquette State Park, Pike, Pingree Grove, Pittsfield, Princeton, Quincy, Ravinia, Reynoldsville, Richmond, Ridge Lake, Rising Sun, River Forest, Robinson, Rockford, Rock Isla[ul (USPHS), Rockton, Rosecrans, Rossville, Round Lake, Roxana, Russellville, St. Charles, St. Jacob, St. Joseph, Salem, Sandoval, Savanna (USPHS), Scott Field, (usphs), Seneca (usphs), Seymour, Shawneetown, Skokie, Springfield, Starved Rock State Park, Sugar Grove, Sulli- van, Thomson, Urbana, I'tica, Venedy Sta- tioi , Vienna, Viola, Volo, Wadsworth, Walters- burg, Ware, Watseka, Wauconda, Waukegan, Wedron, West Vienna, Wetaug, White Heath, White Pines Forest State Park, Willow- Springs, Winnetka, Wolf Lake, Woodstock, Vorkville, and Zion. Subgenus Taeniorhynchtis Arribalzaga 4. Aedes sollicitans (Walker) L.XRV.A.—Fisz. 98. Head fairly wide, with short, tutted preantennal hairs and usually single (rarely double) upper and lower hairs, the lower hairs almost directly ante- rior to upper ones and without intervening tufts. Eighth segment with comb forming an irregular scattered triangle, composed of about 14 to 20 small scales. Air tube short and robust, two to two and one-half times as long as wide; hair tuft multiple branched, situated beyond pecten, and of moderate length; pecten forming a close and even series of about 20 teeth, the apical two or three usually more widely separated than the others. Anal segment completely ringed with sclerotized plate; anal gills very short, budlike. Kem.^le.—Length of wing 4.5 mm. Beak black, with a wide white band near middle, palps black tipped with white, dorsum of head golden. Mesonotum predominantly golden-brown scaled, the lateral areas and sometimes a mesal stripe darker brown. Pleurae with many white scales. Abdomen with tawny scales forming a fenestrated pat- tern made up nf narrow basal bands and a wider mesal band of taw'ny scales against a blue-black background, very similar to fig. 119; lateral portions of tergites eadh with a patch of white scales contrasting noticeably with the tawny scales; venter with a mixture of white and tawny scales. Legs, fig. 130, for the most part with a salt- and-pepper mottling of tawny scales and black scales; tarsi definitely banded with the apical portion black scaled, the basal portion white scaled. Hind tarsi with apical segment almost entirely white scaled, sec- ond, third, and fourth segments each with a basal band of white scales that cover a third to a half of the segment; basal segment with a basal band of white scales and a cen- tral band of taw-ny scales, the latter about as long as half the segment. Wings with a mottled appearance, the scales along all the veins being a salt-and-pepper mixture of dark scales and light scales. M.ALE.—SiiTiilar in general to female w it!) the following differences: beak without a definite band, the apical two-thirds being chiefly tawny scaled; palps very long and with distinct apical brushes, the basal seg- ment being mostly tawny scaled. Male geni- talia, fig. I.?8. of a very simple type. Basi- style nearly parallel sided, with a slight indi- cation of a basal lobe, bearing at this point a cluster of hairs. Claspettes of moderate length, with a long apical blade curved at apex. This species was recorded from Illinois by Chandler (1920) and by Matheson (19.?0), and has since been taken at a few scattered localities. Each occurrence has been associated with salt water from mine or oil well drainage. In two instances, at Dupo and at Central City, the species occurred in tremendous numbers. The severe and persistent biting led in each case to the organization of local control meas- ures. In the Dupo area the salinity of water in which breeding occurred was three times the average for ocean water. Like vexans, this species is an intermit- tent breeder. The eggs, which are laid in dry places, hatch at subsequent floodings, and there are new- outbreaks of adults fol- lowing most summer rains. The larvae develop very rapidly after hatching, and a wave (it ailults follows in quick succession. Illinois Records.—Many larvae, collected March 18 to October 27, and adults, collected April 29 to October 14, are from Benton, Cahokia (usphs), Carlerville (usphs). Central City, Centralia, Chanute Field (usphs). Crab Orchard Lake (usphs), Dupo, Granite City (usphs), Herrin, Johnston City (usphs), Law- 70 Illinois Natural History Survey Bulletin lol. 24, Art. 1 renccville (usPHS), Mount Vernon (usphs), Savanna (usphs), Scott Field (usphs), West Frankfort, White City (usphs), and White Heath (usphs). 5. Aedes nigroniaculis (Ludlow) Larxa.—Head similar to that of sollici- tans. having upper and lovv^er head hairs single. Eighth segment with comb forming an irregular scattered triangle composed of 14 to 20 scales. Air tube short and robust, two to two and one-half times as long as wide; hair tuft beyond pecten multiple branched and short; pecten occupying most of the length of the tube with several con- spicuously detached teeth at the apex. Anal segment completely encircled by sclerotized ring. Anal gills twice as long as anal seg- ment, pointed, representing the chief differ- ence between this species and sollicitans. Adults.—In length and color almost identical with those of sollicitans, differing in the coloration of the abdomen, in which the dorsal, mesal, and lateral bands of pale scales are all practically pure white. The width of the white band on the beak and the central band of pale scales on the hind basi- tarsus both vary considerably, sometimes represented by only a few pale scales. No characters have yet been found to separate satisfactorily the male genitalia of sollici- tans and nigromaculis. A western species, nigromaculis has so far been taken only once in Illinois. A single female was caught in the light trap at the Savanna Ordnance Depot, July 7, 1945, and collected by S. Mittler. This record was first discovered by Captain Charles F. Ger- lach, U. S. Public Health Service, to whom I am greatly indebted for information re- garding it. No larvae of this species have yet been taken in the state. The species frequents saline pools throughout the great plains area and westward. 6. Aedes mitchellae (Dyar) Larva.—Head similar to that of sollici- tans. Eighth segment with comb more com- pact than in sollicitans. Air tube somewhat slender, more than three times as long as wide; hair tuft usually seven branched, sit- uated beyond pecten ; pecten composed of a close row of small teeth. Anal segment completely ringed by sclerotic shield ; anal gills slender and pointed, slightly longer than anal segment (after Dyar). Female.—Similar in size and almost all particulars of color and structure to the female of sollicitans, differing chiefly as fol- lows: hind basitarsus having no center band of tawny scales, being black scaled with a basal band of white scales; tibiae predomi- nantly black with a conspicuous scattering of white scales on the anterior face; wings entirely dark scaled. Male.—Genitalia, fig. 136, very similar in most particulars to those of sollicitans, differing chiefly in the round and projecting basal lobe. The setae on this lobe are longer than in sollicitans. This species is primarily southeastern in distribution. Our only record for Illinois is a single female collected on the south side of Chicago, May 18, 1906, by Charles A. Hill; it was recorded as Aedes taeniorhyn- chus (Wiedemann) by Gerhard in 1910. The lack of subsequent records indicates strongly that it represents an adventive. The specimen probably came north by train. Subgenus Aedes (Meigen) 7. Aedes cinereus Meigen Larva.—Fig. 101. Head wide and rela- tively short ; upper and lower hairs each with four to seven filaments, the lower hair almost directly laterad of the upper hair and only slightly anterior to it; no accessory tuft between or in front of upper and lower pairs. Eighth segment with comb forming an irregular line or an irregular triangle of 10 to 15 large well-separated teeth. Air tube moderately elongate, about four and one-half to five times as long as wide; hair tuft short, usually quadruple, situated be- yond pecten; pecten with about 14 teeth, the basal ones very small, the apical ones very long and widely separated. Anal segment with the tergite encompassing only about one-half the segment ; anal gills slender and sharp, about as long as the air tube. Female.—Length of wing 4 mm. Head, including beak and palps, dark brown to black. Mesonotum entirely reddish-brown scaled with a few postero-lateral and pos- tero-mesal areas of grayish scales. Abdo- men with dorsum almost entirely bluish- black scaled, the base of each segment with a narrow crescent of cream scales at the base; venter of abdomen almost entirely white or cream scaled. Legs with tibiae and AiKjtisi. 1941 Ross: MosQuiTOHS OF Illinois 71 tarsi entirely bhiish-hlack scaled, the femora with the anterior faces usually dark, the posterior faces whitish. \Vlns;s entirely dark scaled. Male.—In size and general color simi- lar to female. Palps represented by short stubs, very similar to those of the female and entirely unlike those of any other Illi- nois species of the genus. Abdomen with basal white bands more pronounced than in the female. Male genitalia, fig. 1.55, differ- ing from all others in the genus by the fol- lowing distinctive characters: dististyle in- serted some distance from the apex of the basistyle ; dististyle with prominent sclero- tized processes at base and having apex divided into a Y-shaped fork ; basistyle with a pointed, projecting apex, a broad base bearing a sharp basal lobe, and also a branched sclerotized mesal lobe ; claspettes entirely lacking. This mosquito, which is crepuscular and a ready biter in the vicinity of its larval habitat, is common in the many small water holes that abound in the glacial bogs and marshes in the northeastern corner of the state. Apparently it produces annually only one generation, which emerges in late May or early June. Aedes cinereus was formerly known under the name of fuscus Osten Sacken, and a specimen was so recorded from Glen Ellyn, Illinois. May 30, 1908, by Gerhard (1910). In addition to many records of the species from northeastern Illinois, we have scat- tered records from other parts of the state, especially the southern fourth. The records from southern Illinois were associated with (but not reared from) woodland pools. Illinois Records.— Antioch, C'ahokia (USPHS), Cairo (USPHS), Camp Grant (usphs), Carter- villc (USPHS), Crab Urcharii Lake (USPHS), Chemung, Elgin, Glencoe, Gorham, Great Lakes Naval Training Station, Kankakee, Keithsburg, Lawreiiceville (uSPHS), Pingree Grove, Ravinia, Roxana, Scott Field (usphs), Skokie, Springfield (usphs), Volo, Wauconda, Waukegan, and Zion. Subgenus Ochlerotatus Arribalzaga 8. Aedes excrticians Walker L.ARVA.—Fig. 103. Length 10 mm. Head wide. Lower head hairs usually double, upper head hairs usually triple, but fre- quently double, and any of the four occa- sionally single. No accessory hairs or tufts between them. Air tube elongate, about live times as long as wide; pecten with one to three apical teeth detached, ventral tuft situated beyond the pecten and very long. Lateral comb consisting of an irregular patch of about 25 scales. Anal segment with dorsal shield covering little more than one-half the segment, the anal gills about as long as the segment, narrow and tapering. Female.—Length of wing 6 mm. In color and general characteristics, this spe- cies is very similar to stiniiildiis, differing as follows: mesonotum usually with much more extensive reddish-brown areas and meso-epinieron without bristles. Male.—In color and general structure similar to male of stimulans. Genitalia, fig. 155; similar in general proportions to those of stitiiiiliiiis but differing markedly as fol- lows: ventral aspect of basistyle seeming to have basal lobe projecting as a triangular area; in reality the basal lobe is a large and somewhat rectangular area folded back against the mesal face, covered with rows of short line setae and without any indica- tion of a macrochaeta. To date we have found this species in only the northeastern corner of the state, where it inhabits the spring pools in some of the marshes and bogs. It appears to favor marsh situations that border woods and is found usually in company with stimulans and fitchii. It has only a single generation per year, and its habits are very similar to those of stimulans. We have never found it in Illinois in the tremendous numbers that characterize colonies of stimulans. Mathe- son (1930) recorded the species from sev- eral localities in northeastern Illinois. In addition, he gave a record from Urbana, which is in the central part of the state; this specimen, however, appears more like fitchii, although it is in very poor condition and does not provide a good basis for a defi- nite record. Allies ixirucians is Holarctic in distribu- tion. In North America it is restricted to the northern coniferous forest belt and areas a short distance southward. Our Illinois records appear to be on the southern limit of its range in this longitude. Illinois Records. — Beach: June 10, 1933, Mohr & I'ownseiid, 19. Elk Grove: May 2-6, 1942, Ut5, 219, 6 larvae. Volo: April 24, 1942, Ross & Burks, April 29, 1942, Ross & Samuels, 12 larvae; May 4-5, 1942, Ross & Burks, 19, 5 larvae. Wadsworth: June 3, 1943, Ross & Sanderson, 8 ,J ; June 10, 1942, Ross & Sanderson, 17 (J, 1$. Wauconda: 72 Illinois Natural History Survey Bulletin I 'A. 24. Art.. April 21, 1942, Ross & Riegel, 1 larva; April 29, 1942, 35. 9. Aedes flavescens Miiller Larva.—Head wide, upper and lower hairs multiple, the upper ones sometimes double. Eighth segment with comb form- ing a triangular patch of scales. Air tube over three times as long as wide, the pecten reaching the middle, with the last two teeth detached. Anal segment with dorsal plate covering only the dorsal half of the segment. Anal gills as long as the anal segment and tapering to a point. Female.—Length of wing 7 mm. Head and mesonotum golden brown with areas shading to a more yellowish cast. Beak and palps black with white scales scattered along the entire length. Dorsum of abdo- men entirely cream scaled. Legs, except for the tarsi, mostly cream scaled. Basi- tarsus a mixture of white and black scales, the apical tarsal segments with the basal halves entirely white scaled, the apical halves dark scaled. Wings almost entirely cream scaled with a few black scales mixed in with them. Male.—In size and general color similar to female, palps with an apical brush. Gen- italia, fig. 152, as follows: apical lobe large and projecting; basal lobe large and tri- angular, with many short setae and a single large conspicuous macrochaeta; claspette having a short stout base with fairly long apical filament, and beyond this a long nar- row neck and enlarged apical head which tapers to a narrow tip. To date we have taken only isolated adults of this species from the state, all from the northeastern portion, from near the Wisconsin border to Kankakee, some 100 miles farther south. The males we took in the vicinity of marshes in which the larvae probably breed. Our records for this species, which is Holarctic in distribution, are on the south- ern edge of its range. The Illinois records given by Matheson (19.^0) for this species from Algonquin prove to be for fitchii, but our present records from Franklinville and Woodstock are close to Algonquin. The species is believed to have only one genera- tion per year and the adults seldom are abundant enough to be a nuisance. Illinois Records. — Antioch: May 21, 1941, 1(5, 1?. Franklinville: June 4, 1943, marsh pond, Ross & Sanderson, 1^. Kankakee: Aug/ 4, 1938, Burks & Boesel, 1$. Woodstock: June 4, 1943, cattail marsh, Ross k Sanderson, U 1$. Zion: June 19, 1941, 1$ ; June 10, 1942jj Mohr & Burks, 19. 10. Aedes stimulans Walker Larva.—Fig. 104. Length 9 mm. Head wide, lower head hairs usually single, rarely double, upper head hairs usually double but occasionally single, triple, or quadruple. Eighth segment with lateral comb forming a rough triangle of about 30 scales. Air tube about three and one-half times as long as wide; pecten composed of an even series, the ventral tuft situated beyond it, usually three haired, and longer than width of seg- ment at base of tuft. Dorsal shield covering little more than half of segment; gills pointed and usually slightly shorter than segment. Female.—Length of wing 6 mm. Beak and palps with a mixture of brown scale.s and white scales. Mesonotum varying from grayish brown to reddish brown, with gray- scaled stripes or areas along the lateral half and always nearly covering the scutellum. Mesopleurae with a group of three to six epimeral bristles. Dorsum of abdomen mostly dark scaled, each segment with a basal band of white scales, the bands small and crescentic on the basal segments, becom- ing wider and more extensive toward the apex. Hind tarsi with basal segments mostly white scaled; second, third, and fourth dark scaled with a basal white band occupying about a third of the segment. Wings mottled with brown scales and white scales, the dark ones predominating. Male.—Similar to female in color and structure. Palps with apical brushes. White bands on abdomen usually much more exten- sive. Male genitalia, fig. 153: basistyle with well-developed apical lobe ; basal lobe devel- oped as a large mesal lobe bearing many short setae and a large macrochaeta, but projecting only slightly as seen from ventral view; claspette curved and narrow, its apical filament elongate with a long slender base, a sharp upper projection near middle, and from this point gradually tapering to a slen- der curved tip. Three Aedes species, stimulans, excru- cians, and fitchii, form a group the females of which are frequently difficult to identify. The characters given in the key are not infallible, but will serve to separate most August. 1947 Ross: Mosquitoes of Illinois 73 specimens. Characters of larvae and of male genitalia offer very satisfactory means of diagnosis. Aedes stimulans occurs in tremendous numbers in and near woodland pools and stump holes in the northeastern corner of Illinois. The larvae, which appear shortly after the annual spring thaw, develop slowly, but are usually full grown by the time the first warm weather of late May occurs. The adults soon emerge, and during June and early July many woods in the vicinity of northeastern Illinois are teeming with ferocious biters. The species has only one generation per year. Outside of the north- eastern corner of the state, we have records of isolated colonies as far south as the cen- tral portion of the state. Early records of about 1906 and 1910 indicate that this spe- cies may have been much more abundant in central Illinois during the early part of the century, before so many extensive tracts uf upland timber were cleared. The range of stimulans is widespread throughout the northeastern states, across the north central states, through Canada, and into the Yukon. Illinois is on the south- ern limit of its range. Illinois Records.—Larvae, collected April 15 to .^pril 2S, and adults, collected .April 28 to July 20, are from .Mgonquin, Antioch, Ben- seiiville. Bishop, Camp Grant (usphs), Elk tJruve, Cilencoe, Guriiee, Halfday, Highwood, .Mornence, Muncie, Northmoor, Palatine, Princeton, Ravinia, River Forest, Rockford, Rock Island, Rondout, Rosecrans, Starved Rock State Park, Urbana, Ttica, Volo, Wads- worth, Waukcgan, Vorkvillc, and Zion. 11. Aedes fitc/iii Felt & Young Larva.— Fig. 109. Length 9 mm. Head wide, lower hairs usually double, occasion- ally single or triple, upper hairs usually triple, occasionally double, and rarely quad- ruple. Lateral comb somewhat triangular, composed of about 25 scales. Air tube elon- gate, about five times as long as its width near middle of pecten, tapering markedly and gradually from base to apex; pecten consisting of 20 to 25 scales forming an even row; ventral tuft situated just beyond pec- ten and very long. Anal segment with dor- sal shield covering nearly two-thirds of seg- ment; anal gills longer than segment and pointed. I'EMALE.—Length of wing 6 mm. Color and general structure in general as for stim- ulans with the following diagnostic features: head gray, mesonotum with the mesal third bright reddish brown, the lateral third hoary gray with a few reddish-brown scaled areas, scutellum gray; meso-epimeron usually with only two bristles. Male.—In size and general color similar to female. Genitalia, fig. 154: basistyle with projecting rod, apical lobe bearing a scat- tering of long setae projecting mesad ; basal lobe large and bearing a dense cluster of very fine long setae, in addition to the basal macrochaeta. Claspette with basal portion nearly straight, the apical filament short and curved, bladelike, and with its underside notched at the extreme base. Both Gerhard (1910) and Matheson (19.^0) recorded this species from Illinois. Most of our recent records for it are from the northeastern corner of the state. Here the species breeds in abundance in practically every open marsh. It is usually found asso- ciated with Culisela inornata or Aedes ex- crucians, but in some marshes it occurs as a pure colony. Our only records south of northern Illinois were obtained by Hart from Urbana in 1887 and from Havana in 1892. We have a recent record taken from Savanna, which is in the extreme northwest- ern part of the state. The species has apparently only one generation per year. Our Illinois records appear to be on the southern limit of the range of this species, which has a wide northern distribution simi- lar to that of stimulans. Illinois Records.—Larvae, collected April 29 to June 10, and adults, collected May 3 to October 5, are from Algonquin, Antioch, Elk Grove, Franklin (Cook County), Franklin- ville, Glencoe, Great Lakes Naval Training Station, Halfday, Lake Bluff, Orland Park, Palos Park, Ravinia, River Forest, Sand Lake, Savanna, Urbana, Volo, Wadsworth, Wauke- gan. Willow Springs, Woodstock, and Zion. 12. Aedes thihaiiiti Dyar & Knab Larva.— Head, fig. 97. wider than long; preantennal and both upper and lower head hairs long, the lower head hairs usually quadruple, the others with five or more branches; clypeal hairs very wide apart, three-quarters as far apart as distance be- tween upper head hairs; lower head hairs considerably laterad of and only slightly anterior to upper hairs; antennae very long, over three-quarters as long as head, antennal tuft very long. Eighth segment with comb 74 Illinois Natural History Survey Bulletin Fol. 24, Art. 1 consisting of a trianguloid patch of scales. Air tube about four anil one-half times as long as wide, with pecten consisting of about 20 scales arranged in an even row, ventral tuft situated just beyond pecten, usually six branched, the branches longer than the greatest width of the tube. Anal segment with dorsal shield longer than wide, cover- ing about two-thirds of the segment; anal gills about as long as segment, tapering to a blunt tip. P'emale.—Length of wing 4 mm. Beak and palps black, head gray. Mesonotum, fig. 122, with a bluish-black mesal patch that is narrow on the anterior half of the meso- notum but that on the posterior half occu- pies nearly the entire width of the segment. Antero-lateral areas of the mesonotum are a bright gray, with scales long and slender and not forming a shingled patch; abdomen bluish black with small white lateral patches at the bases of most of the segments ; legs with tibiae and tarsi entirely black, femora with anterior and apical portions black, with conspicuous white knee rings and white basal areas; wings entirely brownish-black scaled. Male.—Similar in size and color to female ; palps very long and with apical brushes. Male genitalia, fig. 139, with broad basistyle that has a prominent apical and basal lobe and peculiar claspettes; the claspette blade is contorted into a somewhat irregular hook-shaped structure unlike that of any other North American species in the genus. Otiherwise, the species shows a marked affinity to trivittatus, on the basis of the small but definite apical and basal lobes of the basistyle. Published records indicate that this species is primarily a south central species and has been found in abundance in Arkansas. The Illinois records represent the most northern locality in which the species has been taken. An excellent account of its life history is given by Horsfall (1940). It usually breeds in holes within the bases of standing trees. It seems to prefer swamp situations and, according to some writers, shows a marked preference for the bases of sweet gum and tupelo gum trees. Illinois Records. — Cahokia: June 29, 1943, Snow, 13 (usPHs). Carterville: June 27, 1942, 19 (usPHs) ; May 31, 1944, 19 (usphs). Marion: June 2, 1942, Johnson, IS (usphs). Scott Field: June 25, 1942, 2 9 (usphs) ; June 16, 1943, 2 9 (USPHS); June 18, 1943, 19 (usphs). 13. Aedes grossbecki Dyar & Knab Larva.—Fig. 113. Length 10 mm. Head wide, lower hairs usually double or triple, upper hairs usually triple, sometimes dou- ble or quadruple. Lateral comb of segment 8 forming a triangular patch consisting of about 30 scales. Air tube three and one- half times as long as wide, tapering only slightly; pecten teeth forming an even row; ventral tuft situated just beyond pecten and as long as, or slightly longer than, width of i air tube at base of tuft. Anal segment with dorsal shield covering about one-half of i segment ; anal gills about as long as seg- ment and tapering. Female.—Length of wing 5 mm. Beak and palps black, with scattered white scales, each palp with a small tuft of white scales at apex ; dorsum of head covered with gray and white scales. Mesonotum with an irregular pattern, fig. 118, the lateral area white scaled, the mesal third of the anterior half bright brown scaled and the major por- tion of the disc of the posterior half black scaled, the posterior border white scaled; these areas are variable and merge one into another. Dorsum of abdomen irregularly scaled, the ground pattern dark scaled with a scattering of white scales, and each seg- ment with an arcuate basal area of white scales. Legs, fig. 124, mostly white scaled, the middle and posterior pair with irregular areas of black scales; hind tarsi banded, segments 2 to 5 with basal third to half white scaled, apex black scaled, basitarsus mostly white scaled but not definitely banded. Wings with a mixture of white scales and black scales. All the wing scales are very wide, fig. 169, a characteristic that sets off this species from all other Illinois members of the genus. Male.—In size, color, and wing scaling similar to female. Palps with large apical brushes. Male genitalia, fig. 157: basistyle with projecting apical lobe bearing several rows of hairs curved dorsad; basal lobe wide and steplike, the macrochaeta some- what isolated on the ventral edge, the re- mainder with a cluster of long setae; clasp- ettes with base curved, apical filament with a slender base and an expanded apex that tapers to a curved sharp tip. Although not abundant, this species is common throughout the post oak flats along the Mississippi River in extreme southern Illinois. Outside this area only isolated Ainiiist. 1941 Ross: Mosquitoes of Illinois 75 specimens have been taken, but these extend the known range in the state north as far as Chicago. The only Chicago record is that of Gerhard (1910), who recorded a male from Chicago and a female from Palos Park under the name Aedes sylricola Grossbeck (now considered a synonym of grossbecki). The adults of grossbecki emerge early in the spring and apparently have only one generation per year. Outside of Illinois the species has been recorded from only a few localities to the South. We have encoun- tered the adults in the field so rarely that we know little of their habits. Illinois Records.—Several larvae, collectei] April 3, and adults, collected April 6 to June 17, are from Cache, Crab Orchard Lake, Gor- ham, Grand Tower, La Rue, Mount Vernon, Revnoldsvillc, St. Jacob, Urbana, and Ware. 14. Aedes trivittatus Coquillett Fig. 168.—Portion of wing of Aedes slimu- ItlflS, L.ARVA.— I' ig. 108. Head fairly wide, upper and lower head hairs always long and single; preantennal hair short and eight- branched; accessory hairs absent. Eighth segment with a triangular comb consisting of short pointed scales. Air tube fairly short and robust, about two and one-halt times as long as wide; hair tuft fairly short and six to eight branched, situated beyond apex of pecten ; pecten consisting of about 1 5 fairly long teeth arranged in an almost per- fectly regular row. Anal segment completely ringed by sclerotic plate; anal gills long and tapering, frequently twice length of anal segment. Kenlale.—Length of wing 5 mm. Beak and palps black, dorsum of head white scaled. Mesonotum, fig. 115, with a long dark central wedge, flanked on the side by a wide stripe of white scales; the anterior portion of the mesonotum has a dark stripe laterad of the light stripe. Dorsum of abdo- men almost entirely dark scaled with small lateral triangles of white scales on the apical segments ; venter almost entirely white scaled with black lateral triangles on basal segments. Kemora pale scaled with stripes of black scales on apical areas; tibiae and tarsi dark scaled with narrow lines of whit- ish scales on the ventral edge ; wings en- tirely dark scaled. M.ALE.— In size and color similar to female. .Male genitalia, fig. 151: basistyle with apical lobe only moderately developed, shoulderlike; basal lobe steplike, with a Fig. 169.—Portion of wing of Aedes gioss- lieeki. Note the wide scales on the veins com- pared with those of fig. 168. Fig. 170. — Aedes triserialus, scales on pro- notal lobe, lateral aspect. Fig. 171. — Aedes ihihautii, scales on pro- notal lobe, lateral aspect. 76 I Illinois Natural History Survey Bulletin J'ol. 24, Art.l very sinuate macrochaeta and many long slender setae. Claspette curved, its apical filament with a definite neclc and head, the bacic of the head produced into one to sev- eral spineliice barbs, the tip slender and slightly hooked. The male of this species is very similar in many respects to tliat of infirmatus Dyar & Knab. In infirmat us, fig. 150, the macro- chaeta of the basal lobe has a definite thicic- ened angle near the base, the basal lobe itself is diagonal to the main axis of the basistyle, and the basistyle is more slender. The claspettes of the two species are very similar. Aedes trivittaliis is one of the extremely annoying species encountered in Illinois. It is a fierce biter, even in the day time, and occurs in a wide variety of temporary pool situations. The adult emergence apparently occurs principally during the late spring, generally later than that of stictictis and canadensis and frequently coinciding with that of vi'xans. The larvae have been found in shady woodland pools usually resulting from spring rains or spring floods. In our recent collecting, the adults have been en- countered in great numbers many times, but the larvae have been taken very seldom and only in small numbers. In Illinois this species is distributed fairly uniformly over the entire state. Its range covers the northeastern and north central states with a few records extending into the southern states. Illinois Records.—Larvae, collected May 8 to September 17, and many males and females, collected May 4 to November 29, are from Antioch, Baker, Cahokia (usphs), Camp Grant (UbPHS), Carterville (usPHS), Champaign, Chicago, Crab Orchard Lake (Usphs), Dan- ville, Ues Plaines, East Peoria (usphs), East St. Louis, Edwardsville, Glencoe, Great Lakes Naval Training Station, Halfday, Havana, Herod, Homer, Joetta, Kappa, Keithsburg, Lake Fork, Mascoutah, Matanzas Lake, Momencc, Muncie, Neoga, New Boston, Oak- wood, Fere Marquette State Park, Princeton, Ravinia, St. Jacob, Savanna (usphs), Scott Field (USPHSJ, Seneca (usphs), Seymour, Spring.'eid, Starved Rock State Park, Syca- more, Urbana, Utica, Wadsworth, Ware, VVeldon Springs, and Zioii. IS. Aedes aurifer Coquillett Larva.—Fig. 100. Head wider than long, clypeal bristles moderately far apart. Anten- nae very long, nearly as long as length of head, the tuft distinctly beyond mid at least a definite line of gray scales. Dor- sum of abdomen definitely banded, the apical two-thirds of most of the segments dark scaled, the basal third white scaled. Femora, tig. 125, mostly white scaled, the dorsal edge and apical portion of each black scaled ; tibiae usually with upper and lower mar- gins black scaled, sides predominantly pale scaled ; tarsi predominantly black scaled, without banding, the posterior basitarsus with white scales often extending as irregu- lar lines from base to near apex. Wings predominantly black scaled, the costal and subcostal areas frequently with many white scales mixed with the black ones. M.4LE.—Size and general color as for female. Genitalia, tig. 148 ; basistyle with very large projecting apical lobe, which bears along its mesal edge a series of setae curved dorsad; basal lobe forming a trian- gular Hap markedly detached from basi- style and connected with it chiefly by mem- branous folds, w'ith a macrochaeta at ex- treme base, and with the apical portion curved and bearing fairly stout setae. Clasp- ettes slender, with a short apical filament that is expanded near base. Holarctic in range, this species in North America is widely distributed from coast to coast. In much of the recent literature it has been called hirsutcron (Theobald) in the East and aUrichi Dyar & Knab in the West. Dr. Alan Stone writes me that he believes these two are the same species and should be considered under the name sticti- lus. Edwards (19.i2) has synonymized alilruhi with lateralis (Meigen). Dr. Stone writes that tiiere is some doubt as to the identity of lateralis and believes it prudent to use sticticus for the species. In Illinois sticticus is extremely common along the flood plains of the larger rivers, where it breeds in flood pools. At times individuals of the species appear in great swarms, and the females are ferocious biters during the evening and also during the day in cloudy or shaded situations. Emergence ot the adults occurs once a year, in early spring. The larvae seem to require shaded pools for development. Illinois Records.—Larvae, collected April 3 to August IS, and many males and females, collected April 6 to October 25, are from Alto Parss, Belleville (USPHS), Billett, Bishop, Cache, Cahokia (usphs), Cairo, Calvin, Camp Grant (USPHS), Carbondale, Carterville (usPHS), Casey, Caseyville, Charleston, Clinton, Crab Orchard Lake (usPHs), East St. Louis, Ed- wardsville. Fox Ridge State Park, Fulton, CJeorge Field (usphs), Glencoe, Golconda, Gorham, Grafton (usphs). Grand Tower, Granite City (usphs), Grantsburg, Grayville (usphs). Great Lakes Naval Training Station, Halfday, Havana, Herod, Homer, Hurst, Inman, Joetta, Johnston City (usphs), Kan- kakee, Kappa, Karnak, Keensburg, Keiths- burg, Lake Fork, La Rue, Lawrenceville (usphs), Mascoutah, Matanzas Bay, Mo- mence, Mount Carmel, Mount Vernon, (usphs). New Boston, New Haven, Oakvvood, Pales- tine, Palisades, Patton, Pere Marquette State Park, Pike, Pingree Grove, Prophetstown, Pulaski, Raviiiia, Reynoldsville, Ridge Lake, Rising Sun, Rockford, Russellville, St. Jacob, Savanna (USPHS), Scott Field (usphs), Shaw- neetown, Springfield (usphs), Starved Rock State Park, Tamaroa, Urbana, Utica, \\'arc, West Vincennes, Willow Springs, Wolf Lake, and Zlon. 19. Aedes spencerii (Theobald) Larva.—Length 8 mm. Head wide, botii upper and lower head hairs almost always single but occasionally one of them double. Terminal segments very similar to those of vexaiis, tig. 102. Air tube scarcely more than two and one-half times as long as wide; pecten with apical two or three teeth mark- edh detached; ventral tuft short and be- yond pecten. Lateral comb consisting of about 10 to 12 scales arranged in a regular single or double row. Anal segment, fig. 1 lOB. almost completely ringed by dorsal plate, with only a narrow, V-shaped area ot membrane between the ventral edges of the plate, bearing one or two ventral hair tufts anterior to apical mesal barred areas; gills tapering, longer than segment. Female.—Length of wing 5 mm. Color of beak, head, mesonotura, and legs similar to color of corresponding parts of sticticus. Each segment of dorsum of abdomen, fig. 117, with a median stripe of white scales, an apical band of white .scales, and a nar- 80 Illinois Natural History Survey Bulletin Vol. 24, Art. 1 row basal band of white scales, the center of the lateral area being dark scaled. In very light specimens the dorsum of the abdomen may be almost entirely white scaled. Wings predominantly dark scaled but with many of the anterior veins mostly pale scaled, especially toward the base. Male.—Similar in general to the female but with the abdomen darker; in dark ex- tremes the first four segments may be almost entirely dark scaled. Male genitalia, fig. 149, similar in general to those of sticticus, with the following differences: apical lobe of basistyle more diagonal and longer; apical filament of claspette with a small but pro- nounced notch at the base of the apical fila- ment. We have only a single Illinois record of this species, from Savanna, June 19, 1942, in light trap (usphs). The species is re- ported to be widespread and abundant in the Great Plains region. The larvae have been taken in temporary rain pools and marshes in Minnesota (Owen 1937). 20. Aedes dupreei (Coquillett) Larva.—Fig. 111. Head wide, with upper and lower hairs long, the upper hairs usually single, the lower ones double and sit- uated almost directly anterior to upper ones; the species is unique in having the latero- dorsal hair of the frons branched. Eighth segment with a comb consisting of an even row of about six long teeth. Air tube only relatively long but narrow and tapering at apex, nearly four times as long as wide ; hair tuft long, about six branched, situated before middle of siphon but beyond end of pecten ; pecten consisting of an even row of few large teeth. Anal segment completely ringed by sclerotic shield; anal gills extremely long, over twice length of air tube, each gill con- taining a distinct trachea. Female.—Length of wing 2.5 mm. Beak and palps black, dorsum of head white scaled. Mesonotum with a wide silver stripe extending its entire length, the lateral area dark brown, abdomen entirely dark scaled. Legs almost entirely black scaled, except for the inner faces of the front and middle femora and all but the apexes of the hind femora. Wings entirely dark scaled. Male.—Size and color as for female. Male genitalia, fig. 147: basistyle with pro- jecting and sharp apical lobe that bears only isolated short setae; basal lobe somewhat ovate, detached from basistyle, connected with it chiefly by membranous folds and by a short sclerotized bridge on which arises the macrochaeta. Claspette slender, its api- cal filament curved and saber shaped. We have only one record of the species from Illinois, a series of four females from Ware, August 14, 1942, Ross & Mohr. The specimens were collected as pupae from a temporary rain pool in the post oak flats along the Mississippi River. The species is predominantly southern and southeastern in distribution, and the Illinois record is the one farthest north. 21. Aedes ftilvus pollens E. S. Ross Larva.—Fig. 95. Head wide; upper head hairs long and single, lower ones Ion;; and double, situated as far anterior to the upper ones as half the distance between the upper hairs; between the lower hairs are a pair of very fine, branched hairs; preanten- nal hairs short and multiple. Thorax unique among the Illinois species in having the three lateral meso-thoracic tufts each 15 to 20 branched and relatively stout. Eighth seg- ment with comb triangular, composed of about 30 small scales. Air tube short and tapering, stout, only twice as long as wide; ventral tuft large with about 14 filaments, situated ventrad of the pecten and consider- ably before its apex; pecten consisting of about 15 teeth, of which the 1 to 3 apical teeth are long, large, and well separated, the remainder small and forming a close row. Anal segment completely ringed with sclerotized dorsal shield; anal gills long and tapering, nearly twice as long as air tube. Female.—Length of wing 5.5 mm. Integ- ument of almost entire body bright golden yellow except for a dark brown rectangle at each postero-lateral corner of the meso- notum, irregular dark brown areas at the ends of the abdominal tergites, and the almost black antennae. Body with conspicu- ous long slender hairs. Beak and palps yel- low scaled, the extreme apex of both tipped . with black scales. Mesonotum with scales of the ground color, very thin and scarcely wider than short setae. Abdomen with dor- sum predominantly yellow scaled, the apex of each segment with a band of black scales. Legs yellow scaled, the knees and apical tar- sal segments black scaled. Wings predomi- nantly yellow scaled. ^- hili:;tyle without mesal processes 2 Distiityle with tip truncate and apical spur situated before apex, fig. 180 .j 6. varipes' Olstistyle with tip tapered and small, apical spur situated at end, fig. 179. . .3 Fig. 179. — Psorophora cyanescrns, male genitalia. (After Matheson.) Fii;. 180. — Psorophoi n iriri/i-s, male genitalin. (After Matheson.) Fig. 181. — Psoropliora confinnis, male genitalia. (After Matheson.) Fig. 182. — Psorophora discolor, male genitalia. (After Matheson.) ugust, 1947 Ross: Mosquitoes of Illinois 87 ;. nististyle narrow and sinuate, with a mesal row of bristles and a sharp sub- apical ventral tooth, fig. 177. . .1. ciliata nististyle expanded near middle, without mesal row of bristles and without ven- tral tooth, fig. 181 4 \. .\pex of claspettes with a series of simple >etae and two Battened contorted leaflets at lateral corner, fig. 183: 1 4. ferox; 5. horrida .\pex of claspettes without contorted leaf- lets, at most with scales and thickened hairs, figs. 179, 182 5 i. .\pex of claspettes with a dense series of hairs and scales, fig. 179. .3. eyanescens .\pex of claspettes with a series of only four to eight long, thickened hairs, fig. ISl 6 S. Apex of claspettes with four or five thick- ened hairs, fig. 182 8. discolor Apex of claspettes with five to eight thick- ened hairs, fig. 181 7. confinnis Synopsis of Subgenera Represented IN Illinois 1. .Vdult? with mesonotum having a pair of longitudinal, pale shining areas on each side of a narrow mesal band of scales; large species, gallinippers. Larvae pre- daceous, having quadrangular heads and small antennae without tufts, fig. 174. . Psorophora .•\'pti, Aedes, 2, 4, 8, 9, 17, 23, 24, 37, 52, 56, 58, 59, 60, 65, 66, 67 alba, Orthopodomyia, 17, 36, 37 aldriihi, Aedes, 79 Anopheles, 1, 3, 5, 8, 14, 15, 17, 19, 22, 24, 25, 26. 27, 28, 31, 51 Anophelini, 17 apicalis, Cuiex, 6, S, 17, 23, 41, 43, 44, 45, 46, 47, 51 atlanticus, Aedes, 61 atropalpus, Aedes, 67 aurifer, Aedes, 9, 17, 53, 57, 58, 59, 61, 64, 76, 77 B barberi. Anopheles, 5, 7, 17, 25, 26, 27, 28 bimaculatu-, Aedes, 81 D Diptera, 1, 14 discolor, Psorophora, 9, 17, 82, 83, 86, 87, 92 dorsalis, Aedes, 17, 57, 58, 61, 64, 77 dupreei, Aedes, 9, 17, 52, 56, 59, 62, 64, 80 erraticus, Culex, 17, 23, 43, 44, 45, 47, 50, 51 Eiicorethra, 16, 17 e.\crucians, Aedes, 8, 17, 54, 57, 59, 63, 64, 71, 72, 73 fiilii/iiiu, Culex, 49 ferox, Psorophora, 8, 17, 82, 86, 87, 89, 90, 91 Finlaya, 65 titchii, Aedes, 6, 8, 17, 55, 57, 59, 63, 64, 71, 72, 73 flavescens, Aedes, 8, 17, 57, 59, 62, 64, 67, 72 fulvus pallens, Aedes, 8, 17, 52, 53, 59, 61, 64, 67, 80 fuscus, Aedes, 71 campestris, Aedes, 61, 77 canadensis, Aedes, 6, 7, 8, 17, 20, 54, 57, 60, 64, 67, 63, 76, 77, 78 cataphylla, Aedes, 81 Chaoborinae, 14, 16, 17 Chaoborus, 17 ciliata, Psorophora, 3, 8, 17, 20, 24, 82, 83, 85, 87, 88, 89, cinctipes, Mochlonyx, 16 cinereus, Aedes, 8, 9, 17, 22, 53, 57, 59, 60, 65, 67, 70, 71, 81 columbiae, Psorophora, 92 confinnis, Psorophora, 17, 20, 21, 82, 83, 85, 86, 87, 91, 92 consohrinus, Culiseta, 39 Coquillettidia, 35 Corethrclla, 17 crucians, Anopheles, 9, 17, 26, 27, 31, 32 Culex, 1, 3, 5, S, 9, 13, 19, 21, 24, 28, 37, 40, 41, 42, 43, 44, 45, 46, 47 Culicidae, 1, 14. 17 Culicinae. 14, 16, 17 Culicini, 17 Culiseta, 1, 5, 19, 21, 23, 24, 33, 37, 38, 39 curriei, Aedes, 77 cvanescens, Psorophora, 5, 9, 17, 82, 85, 86, ' 87, 89 Grabhamia, 87, 91 grossbecki, Aedes, 2, 6, 8, 59, 63, 64, 74, 75 H hirsuteron, Aedes, 79 horrlda, Psorophora, 17, i howardii, Psorophora, 9, 87, 88, 89 9, 17, 56, 57, 58, 2, 84, 86, 87, 90, 91 17, 21, 82, 85, 86, impatiens, Culiseta, 39, 40 impalicns, Theobaldia, 39 implacabilis, Aedes, 2, 6, 8, 17, 52, 55, 59, 63, 64, 81, 82 indubitans, Mansonia, 35 iiiHrrnatus, .\edes, 62, 76 inhibitator, Culex, 51 inornata, Culiseta, 5, 6, 8, 17, 21, 23, 24, 30, 37, 38, 39, 40, 73 intrudens, Aedes, 61, 76, 77 Janihinosoma, 87, 89 [95] 96 Illinois Natural History Survey Bulletin rol.24,Art.l lalfralis, Aedes, 79 longipalpis, Psorophora, 82, 84, 87, 90 M Mansonia, 3, 4, 17, 19, 22, 24, 35 Megarhinus, 1, 19, 23, 24, 32 melanura, Culiseta, 37 Melanocoiiion, 50 mitchellae, Aedes, 17, 52, 57, 58, 60, 65, 70 Mo:hlonvx, 16, 17 morsitans, Culiseta, 8, 17, 37, 38, 39, 40 N Neoculex, 46 nigromaculis, Aedes, 17, 52, 57, 64, 70 O occidentalis. Anopheles, 25, 26, 27, 28 Ochlerotatus, 65, 71 Orthopodomyia, 1, 2, 5, 7, 19, 24, 36, 37 pallens, Aedes, 81 peccator, Culex, 17, 43, 44, 45, 51 perturbans, Mansonia, 17, 18, 21, 22, 23, pipiens, Culex, 7, 8, 17, 42, 43, 44, 45, 47, 48, 49 Psorophora, 1, 2, 5, 6, 9, 13, 19, 20, 21, 24, 82, 83, 87, 88 punctipennis. Anopheles, 5, 8, 17, 25, 26, 29, 30, 31, 32 punctipennis, Chaoborus, 16 punctor, Aedes, 8, 17, 52, 59, 63, 64, 82 pygmaea, Psorophora, 82 64, 35 46, 22, 27, salinarius, Culex, 17, 42, 43, 44, 45, 49 sapphirina, Uranotaenia, 8, 17, 20, 22, 23, 33 septentrionalis, Megarhinus, 7, 9, 17, 18, 20, 22, 23, 32 slgnifrra, Bancroftia, 37 signifera, Orthopodomyia, 17, 18, 20, 22, 23, 36, 37 signipennis, Psorophora, 82, 92 smithii, Wyeomyia, 5, 7, 8, 17, 18, 20, 22, 23, 34 sollicitans, Aedes, 1, 2, 5, 17, 20, 52, 53, 57, 58, 60, 64, 65, 67, 69, 70, 77 spencerii, Aedes, 8, 17, 55, 57, 53, 59, 62, 64, 79 Stegomyia, 65, 66 sticticus, Aedes, 6, 8, 17, 55, 57, 58, 59, 62, 64, 68, 76, 78, 79, 80 stimulans, Aedes, 2, 6, 8, 17, 21, 54, 57, 59, 62, 64, 71, 72, 73, 75 sylvrslris, Aedes, 68 sylvicola, Aedes, 75 Taeniorhynchus, 65, 69 taeniorhvnchus, Aedes, 2, 70 tarsalis,' Culex, 17, 19, 41, 43, 44, 45, 46, 49 thibaulti, Aedes, 9, 17, 53, 57, 58, 59, 60, 64, 73, 75 titillans, Mansonia, 35 triseriatus, Aedes, 2, 7, 17, 28, 53, 57, 58, 59, 60, 64, 65, 67, 75 trivittatus, Aedes, 2, 8, 17, 52, 55, 58, 59, 62, 64, 74, 75, 76 U Uranotaenia, 1, 19, 23, 24, 33, 51 quadrimaculatus, Anopheles, 1, 2, 9, 17, 23, 25, 26, 27, 28, 29, 30, 31, 32 quinquefasciatus, Culex, 7, 8, 9, 17, 42, 44, 45, 46, 48, 49 20, 43, varipes, Psorophora, 9, 17, 20, 82, 86, 90, 91 vexans, Aedes, 2, 5, 6, 7, 8, 17, 20, 54, 57, 58, 59, 60, 65, 67, 68, 69, 76, 79, 88, 89 R restuans, Culex, 2, 7, 8, 17, 23, 41, 43, 45, 46, 47, 48 rutilus, Megarhinus, 32 W 44, walkeri. Anopheles, 5, 8, 17, 25, 26, 28, 29, 30 Wyeomyia, 2, 17, 19, 20, 21, 24, 34 'xa Recent Publications A.—ILLINOIS NATURAL HISTORY SURVEY BULLETIN. Volume 22, Article 1.—The Plant Bugs, or Miridae, of Illinois. By Harry H. Knight,^ September, 1941. 234 pp., frontis. + 181 figs., bibliog., index. $1.25. Volume 22. Article 2.—Studies of North American Plecoptera, with special reference ^ to the fauna of Illinois. By T. H. Prison, September, 1942. 122 pp., frontis. + 126 ' figs., bibliog., index. $1.00. ^ , , - . . ' Volume 22, Article 3.—Management of Small Artificial Lakes: a summary of fishene investigations, 1938-1942. By George W. Bennett. February, 1943. 20 pp., fronf " Volume 22,' Article' 4.—The Prairie Chicken in Illinois. By Ralph E. Yeatter. May^^ 1943. 40 pp., frontis. + 18 figs., bibliog. (Bound with Article 5.) C Volume 22, Article 5.—Preferential Rating of Duck Food Plants. By Frank C. Bel| rose, Jr., and Harry G. Anderson. 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