Bulic.indd �AB STRA CT The sequence of Miocene fossiliferous marls of the Crnika beach, along the south west shore of Pag Bay, consists of an alternation of silty and clayey marls, sandstones, coaly clays, coal-bearing strata and sparse intercalations of ben- tonite in the older part, and of an alternation of calcitic marls and organogenic fossiliferous limestones with several coal strata in the younger part. Some of the strata are highly fossiliferous and rich in various species of freshwater gastropods of the genera Melanopsis, Theodoxus, Pyrgula, Prososthenia, Orygoceras and Valvata with the new spe- cies V. (?Costovalvata) pagana. Bivalves are represented by the genera Congeria, Unio, Pisidium. There is also, a rich ostracod assemblage, and remains of fl ora: twigs, leaves and seeds of higher and lower plants, and agglomera- tions of aquatic grasses and algae. Fish bones and teeth, as well as the crocodile tooth, are not particularly common, but they do help to complement the image of the diversity of the biological association that lived in the ancient lake and along its shores. According to facies analysis, the Miocene deposits of the Island of Pag, were deposited on the south-western edge of Paratethys, which has been moved more westward and south-westward within Croatian terri- tory. Keywords: marls, limestones, coal, bentonite, lacustrine bivalves and gastropods, crocodile tooth, plant remains, Early Miocene, Island of Pag, Croatia Macropalaeontology and stratigraphy of lacustrine Miocene deposits at Crnika beach on the Island of Pag (Croatia) � Jeronim Bulić and Zlata Jurišić-Polšak Croatian Natural History Museum, Demetrova 1, HR-10000, Zagreb, Croatia doi: 10.4154/gc.2009.16 Geologia CroaticaGeologia Croatica 1. INTRODUCTION AND PREVIOUS INVESTIGATIONS Miocene fossiliferous deposits of the island of Pag, cropping out on Crnika beach are not known in other Adriatic islands or along the eastern Adriatic coastline. For this reason they are important and have a special value for lacustrine palae- ontology and stratigraphy as well as for regional correla- tion. This deposit transgressively overlies Upper Cretaceous limestones and Eocene fl ysch. The thickness is not constant and can be very variable. In Kolansko Polje, drilling revealed the greatest thickness of these deposits at 142 m. However, in the Crnika area, the thickness of the Miocene is much greater. With the assumption that the superposition relations have not been distorted by repetition, the total thickness of outcrops and deposits in the covered parts of the profi le along the Crnika coastline is 265 m (Figs. 1a, 1b). Apart from the outcrops that are seen immediately to the rear of the beach, the Miocene deposits in the Crnika area are on the whole covered with Quaternary sandy and gravely clays. Lithifi ed coarse grained sandstones and breccias overlie the clay, making picturesque step sections that stand out on the edges of the Quaternary terrace for their individual appearance. The coal layers alongside the beach of Crnika have been known since the end of the 19th century, but it is only recent palaeontological research that has revealed in these deposits rich fi nds of different kinds of molluscs, plant remains, and somewhat less often the teeth of fi sh and reptiles. Geologia Croatica 62/3 135–155 5 Figs. 6 Pls. Zagreb 2009 Geologia Croatica 62/3Geologia Croatica 136 MAMUŽIĆ et al. (1970) and MAMUŽIĆ & SOKAČ (1973) determined these deposits as being of Late Miocene and Early Pliocene age. According to KOCHANSKY-DEVIDÉ & SLIŠKOVIĆ (1978) the bivalve Congeria antecroatica KATZER, discovered in Kolansko polje, implies a Karpatian or Badenian age. Our investigation and systematic collection of fossil re- mains alongside Crnika beach took place in 2001 and later during 2004 and 2005. At that time new outcrops of Miocene deposits were found behind the Sv. Duh beach (Fig. 1a). These very fossiliferous organogenic limestones and marls with intercalations of coal, are for the moment, the youngest part of the Miocene sequence in the Crnika area. 2. GEOLOGICAL SETTING OF CRNIKA AREA Crnika beach is on the island of Pag, part of the archipelago of the northern Adriatic (Fig. 1a). The island is sixty kilome- tres long in a NW–SE orientation, i.e. so Dinaric strike, and nearly ten kilometres wide. Pag Bay extends in the central part of the island, a drowned valley inundated by the sea. On the NE side the bay is linked to the Velebit channel. With respect to geological composition and structural settings the island of Pag is a continuation of the northern Dalmatian mainland (Zadar hinterland). It is characterised by gentle and medium-steep folds, extending in the Dinaric direction (NW–SE). The wings of the folds are secondarily folded and faulted with longitudinal and lateral faults. As a rule, the anticlinal parts of the folds correspond to the elon- The discovery and collection of fossil remains of fl ora and fauna in the Miocene deposits on the island of Pag are closely connected with extractive and geological research into the coal beds in the Kolan area. There are historical data showing that the fi rst research into the coal layers started as far back as 1757 (MARKOVIĆ, 2002). With shorter or long er interruptions, research into coal and other mining activities in Kolan lasted until 1951, when coal mining was halted, the mine was closed and abandoned. Although this was coal of good quality, it was estimated that the beds were too thin to make mining in Kolan economically viable. The fi rst data about the fossil fl ora and fauna in the coal bearing deposits of the island of Pag were recorded by RADIMSKY (1877a, 1877b). His collection of higher plant remains, such as Taxodium distichum miocenicum, Glypto- strobus europaeus, Sequoia langsdorfi , Pinus holothana and Mirca lignitum (ENGELHARDT, 1901), is of particular va- lue. According to the fi ndings of the genera Congeria, Pis- idium and Planorbis (HÖRNES, 1898) these deposits are apportioned to the Sarmatian or the Congerian ‘step’. SCHUBERT & WAAGEN (1913) described the coal layers in Kolansko polje and provided the fi rst complete pal- aeontological description of the fossil remains of fl ora and fauna, which were also the fi rst scientifi c data on fossil re- mains in the coal-bearing deposits of Pag island. The authors promoted the opinion that the coal-bearing strata in Kolansko polje were deposited at the beginning of the Late Miocene, precisely in the Pannonian, which was earlier voiced by RADIMSKY (1877a, b) and by PÖSCH & HOFMANN (1909). Fi gu re 1a: Location map of Crnika beach with sampling points (1−7). Bulić & Jurišić-Polšak: Macropalaeontology and stratigraphy of lacustrine Miocene deposits at Crnika beach on the Island of Pag (Croatia) Geologia Croatica 137 Fi gu re 1 b: C ro ss -s ec tio n of th e st ud ie d de po si ts in th e se ve n ou tc ro ps . Geologia Croatica 62/3Geologia Croatica 138 gated upland ridges and highs, and the synclinal parts cor- respond with the narrow, shallow intermontane valleys. The anticlines are composed of Upper Cretaceous Rudist lime- stones and dolomites, and Palaeogene Foraminiferal lime- stones, while the synclines are fi lled with Palaeogene clastics signifi cantly covered by Quaternary deposits (MAJCEN et al., 1970; MAMUŽIĆ et al., 1970; SOKAČ et al., 1974). Crnika beach stretches along the SW edge of Pag Bay, where over a distance of ca 900 m there are outcrops of Miocene marls, sandstones, clays, limestones, coals and very rare and thin strata of bentonite (Fig. 1b). These deposits slightly dip to the NW, with an inclination that on most of the outcrops rang es between 7 and 15 degrees. Miocene deposits are rich in fossil remains of bivalves, gastropods, some higher and lower plants, as well as other organisms that populated the one-time lake and its shore. The following are particularly frequent; the bivalves Con- geria antecroatica, Unio sp., then gastropods: two species of the genus Delminiella, a new species of the genus Valvata, Melanopsis sp., Prososthenia sp., Thedoxus sp., etc. and the remains of fl ora, for example leaves of sequoia, remains of rush, lacustrine grasses, algae and the seeds of land and wa- ter plants. In addition, rare remains of fi sh teeth and bones occur and a crocodile tooth was discovered. Along with the indigenous fossil molluscs, lacustrine and land terrestrial plants there are numerous well preserved foraminiferal shells which were washed out and redeposited from the nearby marls of Middle Eocene fl ysch deposits. 3. LITHOLOGICAL SUCCESSION OF THE MIOCENE DEPOSITS Alongside Crnika beach, over a distance of nearly one kilo- metre, seven outcrops were singled out in which the Miocene deposits are clearly exposed and accessible for investigation (Fig. 1a). Outcrops 5, 6 and 7 in the more recent part of the profi le are continuous and constitute a unique and linked su- perposition sequence of deposits. The other outcrops are sep- arated by Quaternary breccias, sandstones and clays, and overgrown with thick rush bushes and high grass. In total, the Crnika Miocene deposits form an outcrop thickness of 265 m (Fig. 1b). It is possible that, in the hidden parts of the profi le, be- cause of tectonic shifts, the deposits are repeated several times, while giving the appearance of a normal superposi- tionary sequence. For these reason outcrops 1, 2, 3 and 4, which occur in the older part of the profi le, cannot with cer- tainty be placed in a normal superpositionary relationship. As shown in the composite stratigraphic column, this can only be postulated (Fig. 2). The Miocene deposits in Crnika area are completely composed of fi ne-grained and muddy deposits: silty and clay ey marls, coaly clays and fi ne-grained organogenic lime- stones. But there are differences in the lithological compo- sition between the individual outcrops because of the pro- portion of siliciclastic and carbonate detritus in the deposits. The siliciclastic component decreases from the older to the young er deposits, while the proportion of carbonate com- ponents increases. Organic matter is equally represented in both the older and younger parts of the profi le in the form of thinner and thicker intercalations and lenses of coal. 3.1. Deposits of outcrop 1 Deposits in this outcrop are composed of very calcitic, silty and fossiliferous marls of a yellowish brown colour. In the lower part of the outcrop the marls are variegated with very narrow layers and laminae of light grey fossiliferous lime- stones−biomicrites (Figs. 1b and 2). The well preserved shells of gastropods and congerians can sporadically be found over the whole surface of the outcrop, but are particularly fre- quent in the lower part of it. In the base of the outcrop there is a coal layer of unknown thickness (> 50 cm), of amor- phous appearance, black with glossy breaks; it is easy to split into irregular small plates in which pyrite nests can be ob- served. Between outcrops 1 and 2 in some places along the beach, below the Quaternary deposits and the shoreline gravel worn, grey-blueish, fi ne-grained, calcitic sandstones and siltstones can be observed. Sandstones are composed of fi ne grained detritus, comprising predominantly angular – half-rounded grains of quartz and rare grains of plagioclase, sheets of muscovite and particles of rock – including chert and quartzite. 3.2. Deposits of outcrop 2 The lower part of this sequence consists of thin strata of fi ne- grained dark-brown sandstones alternating with thin coaly marls and laminae of coal (Figs 1b and 2). In the strata along- side the beach, white sections and fragments of gastropods appear, together with a mass of their compacted shells mixed with black carbonised twigs and stems of wetland plants. In the sandy detritus, quartz grains are most abundant, along- side which small crystals of plagioclase, muscovite, grains of quartzite, chert and micrite could be seen. The matrix is sandy and clayey. The sandstones are overlain by very fos- siliferous, dark-grey silty marls with a single layer of ben- tonite 5−7 cm thick (Fig. 3A) and light grey silty marls with concretions of limonite and red-brown and yellow nodules of limonitised marls. Congeria shells are frequent in the nod- ules of limonitised marls (Pl. IV). The central and upper parts of the outcrop are characterised by very regular alternations of thin-layered, yellow-brown, fi ne- grained sandstones, coaly silty marls which gra dually pass into olive-grey and dark-grey coaly marls with carbonised larger parts of trees – stumps and branches (Fig. 3B). 3.3. Deposits of outcrop 3 The lower part of the outcrop is composed of dark-grey silty marls with carbonised branches and stumps and coal layers (Figs 1b and 2). The central and upper part of the outcrop is com posed of unstratifi ed light grey and grey-red marls (Fig. 3C). Bulić & Jurišić-Polšak: Macropalaeontology and stratigraphy of lacustrine Miocene deposits at Crnika beach on the Island of Pag (Croatia) Geologia Croatica 139 3.4. Deposits of the outcrop 4 These deposits crop out mid way between outcrops 3 and 5 (Figs 1b and 2). The outcrop is elevated above a spacious, low coastal zone behind the beach, covered with Quaternary sands and clays. In the lower part of the outcrop, a uniform sequence of unstratifi ed yellowish brown marls with very particular yellow brown limonite nodules can be observed. In the muddy marl it is possible to fi nd scattered very fi ne black fragments and debris of organic matter, of coal and small pyrite nests. The upper part of the outcrop is charac- terised by the alternation of calcitic silty marls and clayey marls. These deposits are characterized by a gradual change in colour. The silty marls are somewhat lighter, most often grey-orange in colour, and the clayey marls are darker, mainly of an olive-grey colour. Fi gu re 2: A composite stratigraphic column of the Lower Miocene beds at Crnika beach on the Island of Pag. Geologia Croatica 62/3Geologia Croatica 140 At several places along the coast, between outcrops 4 and 5, there are smaller outcrops of silty and clayey marls, with characteristic brown-yellow limonite nodules. 3.5. Deposits of outcrop 5 The lithological composition of the fi fth outcrop is similar to those of the fourth one and of the smaller outcrops in the covered part of the coastal zone, between the fourth and the fi fth outcrops (Figs. 1b and 2). These are rocks with a muddy matrix composed of variable proportions of silt, micrite and clay. The matrix contains scattered dotted black organic mat- ter debris, coal and globular agglomerations of pyrite as well as relatively well preserved shells of small gastropods and ostracods. In the central part of the outcrop there is a massive marl bed, 1.5−2 m thick, with numerous moulds and whitish con- gerian shells (Fig. 3D). 3.6. Deposits of outcrop 6 The lower part of the outcrop is composed of greyish-red cal- cite siltstone and sandstone with coal beds (Fig. 3., E and F). They are overlain by an alternation of thin strata of yellow Fi gu re 3: Outcrops of Miocene deposits along the beach Crnika. A – Detail of 2. outcrop with thin layered sandstones and coaly marls. B – Carbonised stumps and nodules of limonitic marls. C – Beach with marl outcrops and Quaternary breccias at the top of the slope. D – Thin layered siltstones and silty marls. E – Coal beds and marls with fossils at cap Fumić. F – Coal beds in the sea at cap Fumić. A B C D E F Bulić & Jurišić-Polšak: Macropalaeontology and stratigraphy of lacustrine Miocene deposits at Crnika beach on the Island of Pag (Croatia) Geologia Croatica 141 brown calcitic fi ne-grained siltstones, and olive grey marls and clayey siltstones, grey-red in colour, with intermittent and irregular narrow intercalations of coal (Figs. 1b and 2). The upper part of the outcrop is composed of very fos- siliferous light coloured limestones and thin strata of lami- nated calcitic marls, containing two coal beds of 60 and 50 cm in thickness. The limestones are recrystallised biomic- rites. They are mostly composed of fi ne particles, of shat- tered and fragmented limestone shells of bivalves and gas- tropods containing a negligible proportion of quartz with the grain size of fi ne sand and silt. 3.7. Deposits of outcrop 7 This outcrop lies behind the beach, some twenty metres from the coast (Figs. 1a, 1b and 2). In the major part of the outcrop, and particularly in the lower part, there are fossiliferous limestones close to those of outcrop 6. The limestones are pale yellow and white, with abundant bivalve shells and gastropods. In the upper part of the outcrop the limestones are thinner and gradually pass into grey lami- nated marls. The laminated coaly marls at the top of the out- crop merge into layers with coal. The coal is of amorphous appearance, black in colour, with thin intercalations of marl. At the very top of the outcrop, the coal is directly over- lain by light chalky biomicrites, which very probably con- tinue into the youngest part of the profi le, which remains uninvestigated. 4. PALAEONTOLOGICAL REVIEW Foraminifera Foraminifera are mainly planktonic species, seldom benthic. The shells are fairly damaged, broken, fl attened, pyritized, or deformed. This suggests multiple resedimentation, and perhaps also fairly long transport. Taxa from several zones are mixed, which also suggests redeposition. The foraminiferal assemblage comprises: Subbotina eocaena GUEMBEL, S. hagni GOHR- BANDT, S. cryptomphaza GLAESSNER, Morozovella spinu- loza (CUSHMAN), Acarinina bullbrooki (BOLLI), A. spinu- loinfl ata (BANDY), Turborotalia frontosa (SUBBOTINA), T. pomeroli (TOUMARKINE & BOLLI), Globigerinatheca sp. and is determined as Middle Eocene in age. They were probably washed out from Eocene fl ysch beds, and were redeposited in lacustrine deposits together with Miocene fossils. Mollusca Clivunellidae Delminiella KOCHANSKY-DEVIDÉ & SLIŠKOVIĆ, 1972 The shell has preserved a much reduced part of the spiral at the tip, and the rest of the spiral is restricted to a very much expanded aperture. The lines of growth are prominent, di- vided by furrows, and pass into dense concentric ribs. It is differentiated from the genus Clivunella by the curved or spiral apex and the more remarked, denser and deeper sculp- ture. Because the part of the spiral has been preserved, this genus is more primitive than the genus Clivunella. Delminiella cf. soklici KOCHANSKY-DEVIDÉ (Pl. I, Fig. 1) 1972 Delminiella soklici KOCHANSKY-DEVIDÉ & SLIŠKOVIĆ, pl. III, fi gs. 3−7, pl. IV, fi g. 9 Material: samples 01, 1, 3 The shell consists of 1−2 very small, spirally curved whorls, and the last half of an infl ated coil expanded at the aperture. Unfortunately the Pag specimens have no preserved spi- ral, but in the centre of the last whorl a convexity where the spiral starts can be seen. The apex that should be close to the upper edge is not preserved. The Pag specimens are mainly elliptical in shape, and in this they deviate from the type spe- cies. The spiral ribs that cover the last whorl in the Pag spec- imens are sparser and stronger. The type specimens were found in Vučipolje and Mokro- nog in Duvanjsko polje, and in the area of Zenica, both in Bosnia and Hercegovina. Delminiella cf. excentrica KOCHANSKY-DEVIDÉ & SLIŠKOVIĆ (Pl. I, Fig. 2) 1972 Delminiella excentrica KOCHANSKY-DEVIDÉ & SLIŠKOVIĆ, pl. IV, fi gs. 1−7, 10 Material: samples 01, 1, 2, 3 It has a small (approximately 1 cm), almost round shell with a fl attened upper edge and an oblique, right-bent apex a little below the upper edge. The position of the apex in this species is far outside the centre of the fl at shell, and in the type specimens the apex is bent slightly to the left. The spec- imen of this species from the Crnika site is the fi rst occur- rence in Croatia. Type specimens were found in the Livanjsko, Duvansko and Roško polje in Bosnia and Hercegovina. Planorbinae Gyraulus sp. A (Pl. I, Figs. 5−6) Material: Sample 1 A relatively large specimen of Gyraulus (8x6 mm), it is very deformed and damaged, but nevertheless the true shape can be discerned. On the upper edge the umbilicus is not seen, but there are probably several whorls judging from their width. The last whorl expands very much towards the aperture. Growth lines are visible, as well as the marked rib in the centre of the whorl. On the lower side the whorl seems completely involute, i.e., without an umbilicus. Gyraulus sp. B,?n. sp. (Pl. I, Figs. 7−9) Material: sample 28 Very tiny specimens, < 1.5mm in diameter. On the shell surface a uniform spiral rib is to be seen with a very marked single rib on the upper and one rib on the lower side (like the genus Platyaphus). The shell is partially involute, con- cave both on the upper and lower sides (Fig. 4). Geologia Croatica 62/3Geologia Croatica 142 Plate I 1 Delminiella cf. soklici KOCHANSKY-DEVIDÉ. 4X. Sample 3. 2 Delminiella cf. excentrica KOCHANSKY-DEVIDÉ. 4X. Sample 1. 3 Orygoceras sp. 20X. Sample 11. 4 Orygoceras sp. 30X. Sample 14. 5−6 Gyraulus sp. A. Fig. 5 X4. Fig. 6 X7. Sample 1. 7−9 Gyraulus sp. B, Fig. 7–8 X25. Fig. 9 X20. Sample 28. 10−11 Melanopsis sp. A. 16X. Sample 9. Bulić & Jurišić-Polšak: Macropalaeontology and stratigraphy of lacustrine Miocene deposits at Crnika beach on the Island of Pag (Croatia) Geologia Croatica 143 This specimen is similar to the species Gyraulus verti- cillus BRUSINA in shape and to Planorbis jukici BRUSINA, both from the Markuševec locality, which has one spiral rib; but spiral ribs over the whole of the shell, as has the Pag gy- raulus, are not present in a single one of the species men- tioned. Identical forms were discovered by the authors in the Miocene deposits of Poljanska in Slavonia, North Croatian Basin (NCB). Hydrobidae Prososthenia sp. (Pl. II, Figs. 11−12) Materials: samples 01, 1, 3, 8, 9, 10, 12, 14 and 22 A characteristic prososthenia with a thickened lip of the aperture, that expands to the outer side, 6−7 smooth rounded whorls, particularly in the juvenile phase, while at the sides of the last and penultimate they are straighter. These two whorls are also the highest, while the whorls of the third to the juve- nile whorls grow more uniformly. They occur along the whole profi le, and are very abundant at locations 8, 9 and 10. Similar forms are found in Lohovo (Bihać basin; Bosnia and Hercegovina – BH), Strmen dolac, Košute, Brnaze and Peruča (Sinj basin, South Croatia). ?Nematurella sp. (Pl. III, Figs 1−4) Material: sample 28 Very small gastropods, about 2−3 mm high. Similar forms appear in great numbers in the Central European Mo- lasse basins, in the Rzehakia or Oncophora deposits of the Ottnangian of Lower Bavaria (Germany), Ivančica in Mora- via (Czech Republic) and so on (e.g. SCHLICKUM, 1964; ČTYROKÝ 1972). Our specimens recall the species Nema- turella klemmi SCHLICKUM. ?Pyrgula sp. A (Pl. II, Figs. 5−6) Material: sample 2 On narrow shells (maximum height is 8 mm not includ- ing the last whorl, and the greatest width is 2 mm), consist- ing of about ten whorls. Decorated with a single rib imme- diately below the suture. No umbilicus. Narrow aperture, slightly thickened, and turned downwards. In the form of the shell this pyrgula is similar to the ge- nus Micromelania. Pyrgula sp. B (Pl. II, Figs. 7−10) Material: samples 2 (many pyrgulas with 2 strong ribs), 3 (fewer, but also with two strong ribs), 14 (pyrgula with a single wing-shaped rib – like a pagoda), 15 (pyrgula with one but not winged rib), samples 16, 17 and 19 contain little pyrgulas with 2 ribs. Pag pyrgulas have strong shells, consisting of seven whorls. They have a thickened aperture. The surface of the shell is decorated with a single or two spiral ribs. Comparing Pag pyrgula specimens with specimens of the species Pyrgula carinata from the Pontian Trilophos formation in Greece (RUST, 1997) it can be said that there is evidence of polymorphism, but there are not enough specimens for the de- velopment to be tracked. Still, evolution does not progress from smooth specimens here, but starts with shells with two strong ribs on the last two whorls, then,without any noted transitional forms, an elongated form of pyrgula with a single wing-shaped rib on each whorl (recall the shape of the pagoda) is observed. At later locations there are again pyrgulas with two ribs, but these are rare, and are not such marked forms. Bulimidae Bithynia cf. multicostata TCHERNOV (Pl. III, Figs. 5−8) 1975 Bithynia multicostata TCHERNOV, pl. II, fi g. 3 Material: sample 28 A conical shell consists of fi ve slightly rounded whorls. The last two whorls are covered with undulating radial ribs, with 15−16 of them on the last whorl. The aperture is ro- und ed, with a slightly thickened edge. No umbilicus can be observed. This species was defi ned in the Upper Pliocene deposits of the central Jordan valley in Israel. In pre-Badenian deposits of Poljanska by Požega (NCB), identical specimens were found (by authors) overlying de- posits with leaves. Similarities and differences: Our specimens are very similar to ribbed bithynias from the Upper Pliocene deposits of the central Jordan valley in Israel. The Pag specimens also show a similarity with the recent species Baikalia (Dybovski- ola) ciliata (DYBOWSKI) (see WENZ 1938−1944, p. 598). In form and sculpture they are practically identical speci- mens but the Baikal specimens have ciliae and they live at a depth of about 300−350 m, while the specimens from Crnika derive from a shallow water environment and could not have had ciliae. Valvatidae Valvata (?Costovalvata) pagana, n. sp. (Pl. III, Figs. 9−10) POLINSKI (1931/32) described the subgenus Costovalvata from Lake Ohrid on the basis of a fi nding of the fi rst species of this subgenus Valvata (Costovalvata) hirsutecostata. Cog- nate species live in Lake Baikal. Polinski points out that there are no fossil forms with such characteristics. Fi gu re 4: SEM BSE image of Gyraulus sp. B Geologia Croatica 62/3Geologia Croatica 144 Plate II 1−4 Melanopsis sp. B. 2.5X Fig. 1, 5X Fig. 2–4. Sample 22. 5−6 Pyrgula sp. A. 9X. Sample 2. 7−8 Pyrgula sp. B. 9X. Sample 2. 9−10 Pyrgula sp. B. 9X. Sample 14. 11−12 Prososthenia sp. 12X. Sample 8. Bulić & Jurišić-Polšak: Macropalaeontology and stratigraphy of lacustrine Miocene deposits at Crnika beach on the Island of Pag (Croatia) Geologia Croatica 145 Plate III 1−4 ?Nematurella sp. 20 X. Sample 28. 5−8 Bithynia cf. multicostata TCHERNOV. 6 X. Sample 28. 9–10 Valvata (?Costovalvata) pagana, n. sp. 9 X. Sample 2. 11 Theodoxus sp., operculum. 4 X. Sample 22. 12 Theodoxus sp. A. 4 X. Sample 3. 13 Theodoxus sp. B. 2X. Sample 30. Geologia Croatica 62/3Geologia Croatica 146 WENZ (1938−1944, p. 505) described the subgenus in this way: Whorls with weak spiral lines and sharp radial ribs. Last whorl much enlarged, infl ated downwards, broad um- bilicus. Aperture is large, high rather than broad. Recent, Lake Ohrid, 1 species. SCHŰTT (1962) described another species of the genus Valvata (Costovalvata) klemmi, deriving from Aetolia in Greece, (lakes Trigonis and Lysimachia). The strong shell consists of four and a half whorls. The whorl is raised with a blunt apex. The whorls are angular. Juvenile whorls are smooth, and then a combination of spiral and radial sculp- ture is developed. Radial sculpture consists of 20 or so slightly oblique rough ribs, additionally thickened with nodules. The aperture is large, circular, and polygonal. The edge of the aperture is sharp. Umbilicus is narrow and deep. Recent spe- cies. The new species is named after the island of Pag, where it was found on the Crnika beach. This is the fi rst fossil spe- cies of the genus Costovalvata. The holotype (sample 2) is specimen inv. no. 10806 De- partment of Geology and Palaeontology of Croatian Natural History Museum, Zagreb. 48 specimens were found, for the most part only poorly preserved. Material: samples 01, 2, 3, 5 Location: Crnika, island of Pag Age: Lower Miocene Diagnosis: Surface of the shell covered with 20 or so bent radial ribs, reinforced with nodules on the places where three rows of spiral ribs pass. Description: the shell has four whorls, lying markedly gradually next to each other (shouldering). The dual sculp- ture is interesting: three pronounced spiral nodule sequences on spiral ribs, through which 20 or so rough radial ribs pass. The umbilicus is open, the aperture is thickened. It occurs in the oldest part of the profi le, together with the clivunellas. Dimensions: height 3 mm, width 4 mm. Similarities and differences: This species is extremely similar to the recent species Valvata (Costovalvata) klemmi SCHŰTT from Greece in the form of the shell and the radial and spiral sculpture. But there are also differences. Here, the aperture is rounded and is not slightly polygonal, the aper- ture is thickened and not sharp. The upper spiral rib is im- mediately below the suture, and not distant from the suture. The whole sculpture is less regular than in V. (C.) klemmi. Orygoceras sp. (Pl. I, Figs. 3−4) Material: samples 1, 2, 3, 8, 9, 10, 11, 12, 13, 14, 16, 19, 22, 23 and 29 Specimens of this genus are found at practically all points of the profi le. Ribbed and smooth forms often appear together, but only the smooth are more common. Thiaridae Brotia (Tinnyea) escheri (BRONGNIART) Material: samples 01, 3, 8 Several fragments found, with characteristic sculpture. Melanopsis sp. A (Pl. I, Figs. 10−11) Material: sample 9 Only shell fragments are preserved, there are no com- plete specimens. Juvenile whorls start to curve in a single plane. The initial whorls are very rounded. The fourth whorl changes, the sides of the whorl becoming almost fl at, lateral ribs appearing, and pigmentation is visible. The shell would seem to have some ten whorls. No whole specimen, but this little melanopsis might perhaps be about 1 cm long. Melanopsis sp. B (Pl. II, Figs. 1−4) Material: sample 22 Very sharped-pointed melanopsid with elongated sipho. No specimen has been extracted from marl, so it could be said that the specimens are poorly preserved. Some 7 whorls were observed. Neritidae Theodoxus sp. A (Pl. III, Fig. 12) Material: samples 01, 2, 3, 5, 6, 8, 9 and 10 The typical pattern composed of irregular white spots on the dark surface of the shell is visible. But the pattern var- ies to spiral dark stripes fi lled with white reticular spots on the light surface of the shell, and some of the shells have light surfaces with no markings. Theodoxus sp. B (Pl. III, Fig. 13) Material: sample 30 The specimens are at least twice as big as the specimens at the beginning of the profi le. They cannot be removed from the rock, but it would seem that the last whorl is very much enlarged, and the pattern consists of irregular triangular thin dark spots on the light surface of the shell. Dreissenidae NUTTALL (1990) introduced a new division of congerias on the basis of their mode of life, and stated that the genus Congeria is of Pontian age, and the previously Miocene con- gerias older than Pontian would be classifi ed into the genus Mytilopsis. Because of the century-old tradition, we have retained the old name of the genus Congeria also for the older Miocene species. KÓKAY (2006) also uses the genus name Congeria for the Ottnangian species. Bulić & Jurišić-Polšak: Macropalaeontology and stratigraphy of lacustrine Miocene deposits at Crnika beach on the Island of Pag (Croatia) Geologia Croatica 147 Congeria neumayri ANDRUSOV (Pl. IV, Figs. 1, 4, 7) 1978 Congeria neumayri, KOCHANSKY-DEVIDÉ & SLIŠKOVIĆ, p. 36, plate I, fi gs. 21−25 Material: sample 01, 1 and 3 Flat triangular shell of medium size (height about 1.5− 2.5 cm). On some specimens brownish stripes can be seen along the growth lines. This species is found in the lower part of the profi le. According to KOCHANSKY-DEVIDÉ & SLIŠKOVIĆ (1978) the species C. neumayri occurs in the Ottnangian of Gornja Planina in Medvednica, and in the Novo Brdo bore by Voloder (NCB). Congeria pilari KOCHANSKY-DEVIDÉ (Pl. IV, Figs. 5, 8) 1978 Congeria pilari, KOCHANSKY-DEVIDÉ & SLIŠKOVIĆ, p. 44, pl. III, fi gs. 31−33; pl. IV, fi gs. 1−12 Material: samples 15, 16 A medium large congeria (height about 3 cm), with a protuberant and sharp edge, bent in the form of an S, ante- rior side steep and high. This species is common in the cen- tral part of the Crnika profi le. According to KOCHANSKY-DEVIDÉ & SLIŠKOVIĆ (1978) this species occurs in the Karpatian of Glinsko Poku- plje (Kirin, Dugoselo, Lovča; NCB) and in northern Bosnia region. Congeria antecroatica KATZER (Pl. IV, Figs. 6, 9) 1978 Congeria antecroatica, KOCHANSKY-DEVIDÉ & SLIŠKOVIĆ, p. 48, pl. IV, fi g. 34; pl. V, fi gs. 16−21; pl. VI, fi gs. 1−18; pl. VII, fi gs. 1−13 Material: samples 21, 22, 26, 29, 30 A large congeria (up to 5 cm high), sharp-edged, with a posterior side drawn out wing-shaped. Very common in the most recent deposits of the profi le. According to KOCHANSKY-DEVIDÉ & SLIŠKOVIĆ (1978) the typical deposits are lacustrine Karpatian and Bade- nian, and in addition to those at Drvar (the type location), there are occurrences at Duvno, Glamoč, Mostar and Rotimlja in Bos- nia and Herzegowina, and also from Kolan on island of Pag. Unionidae Unio sp. (Pl. V, Figs. 2, 3) Material: samples 21, 29 Only the cores of fairly large shells are preserved (width about 6 cm, height about 3.5 cm). A hinge with strong teeth is visible. These are present mainly in the younger parts of the profi le, together with the species Anodonta splendens, Pisidium sp. and Congeria antecroatica. Anodonta splendens GOLDFUSS (Pl. V, Fig. 1) 1972 Anodonta splendens, ČTYROKÝ, p. 126, pl. XXI, fi g. 4 Material: sample 21 The genus Anodonta is kin to the genus Unio, but the shells are larger and thinner, and there are no teeth on the hinge. The shells are about 8 cm long. This species was also found by authors at Jelenska near Kutina in northern Croatia. ČTYROKÝ (1972) states that there is well known occurrence of this species at the village of Ivančica in Moravia (Czech Republic). Sphaeridae Pisidium sp. (Pl. V, Figs. 4, 5) Material: samples 1, 3, 11, 13, 14, 15, 17, 19, 21, 22 Shells are rounded shape (up to 1 cm broad and about 0.7 cm high). This species was observed along the whole profi le, but it is found most often in sample 21, i.e., at the younger part of the profi le, and these specimens are bigger than elsewhere. Vertebrata Fam. Cyprinidae (Pl. VI, Figs. 12−14) Material: samples 1, 2, 3, 8, 11, 22, 28 Some dozen teeth of this group of fi sh have been found. Most specimens were found at sample 3. Otoliths were found at points 3 and 22. This is a fresh to brackish water group of fi sh. Some spe- cies can be as long as 2.5 m, but many species are smaller than 5 cm, as was probably the case here, judging from the size of the little teeth discovered. Fam. Crocodylidae Material: sample 3 Only one tooth was found, probably belonging to a not very large specimen of crocodile. The length is 12 mm, the width 4 mm. It is conical, with a mildly curved shape, and has a rib on each side along the whole length of the tooth. Crocodiles are semi-aquatic animals, live in the fresh water of rivers and lakes, but they can also be found in the brackish waters of shallow lagoons. They are limited to the warm and wet climate of the subtropical or tropical zones. Flora Potamogetonaceae Limnocarpus sp. (Pl. VI, Figs. 9−11) 1978 Limnocarpus longepetiolatus, BŮŽEK & HOLÝ, p. 164, pls. I−III Material: sample 6 Recent genus Ruppia (there are also three species from the Miocene deposits) is a halophilous genus, connected to the Geologia Croatica 62/3Geologia Croatica 148 Plate IV 1 Congeria neumayri ANDRUSOV. 3X. Sample 3. 2, 3 Congeria sp. juv. 20X. Sample 8. 4, 7 Congeria neumayri ANDRUSOV. 5X. Sample 3. 5, 8 Congeria pilari KOCHANSKY-DEVIDÉ. 2X. Sample 15. 6, 9 Congeria antecroatica KATZER. 2X. Sample 21. Bulić & Jurišić-Polšak: Macropalaeontology and stratigraphy of lacustrine Miocene deposits at Crnika beach on the Island of Pag (Croatia) Geologia Croatica 149 Plate V 1 Anodonta splendens GOLDFUSS. 1.5X. Sample 21. 2 Unio sp. 0.5X. Sample 21. 3 Unio sp. 1X. Sample 21. 4, 5 Pisidium sp. 7X. Sample 19. Geologia Croatica 62/3Geologia Croatica 150 sea coasts and slightly salty lakes. This is a species-poor un- derwater community that lives at a depth of 1 m. Today this grass is grazed by wild ducks, and in one 5000 seeds were found, and so it is called ‘widgeongrass’, or duck grass. It is similar with fossil representatives kin to ruppia like the extinct genus Limnocarpus (Eocene to the upper Miocene between the Atlantic and Lake Baikal), which in addition to marine deposits is also found in fresh water, and thus makes up an ecological and taxonomic link with the limnetic genus Potamogeton. Limnocarpus lived in brackish lagoons and stagnant wa- ter, but always close to the sea. Our specimens are reminis- cent of Limnocarpus cf. longepetiolatus (ENGELHARDT) which occurs from the upper Ottnangian to the Karpatian of the Cheb and Sokolov basin in the Czech Republic (accord- ing to BŮŽEK & HOLÝ, 1981). This is the fi rst discovery of Ruppiaceae seeds in Croatia. UNGER (1841−1847) de- scribed blades of the grass in the Sarmatian deposits of Ra- doboj, but seeds were not found there. Capriofoliaceae ?Sambucus pulchela C. & E.M. REID (Pl. VI, Figs. 3, 4) Material: sample 18 1986 Sambucus pulchela, KNOBLOCH, p. 32, pl. I, fi g. 2 KNOBLOCH (1986) mentioned an occurrence of this seed in the Lower Miocene of Moravia (Czech Republic), Slovakia and Austria, always connected with a swampy en- vironment, or alongside deposits of brown coal. Our seed is a little narrower in form than that from Moravia. ?Hydrocharitaceae ?Stratiotes sp. (Pl. VI, Figs. 1, 2) Material: sample 19 Taxodiaceae At the Crnika profi le, fossilised twigs of these stemmed plants are close to coal deposits. At points 8 to 10 there were semi- carbonised stems at the primary site, and since these deposits were discovered alongside the present coastline, sometimes larger pieces of carbonised stems are discovered in the sea. Species of Taxodiaceae are widespread in the Tertiary of Europe, and N. America too. They grew in coastal, wet- land forests, particularly on the shores of stagnant waters. Sediments of brown coal from this period were derived mainly from stems of Taxodiaceae. This in particular relates to the genus Sequoia and the species Glyptostrobus europaea (BRONGNIART) UNGER, similar to the cypress. For ex- ample, in sands on the main Tertiary coal stratum of the Rhine coal basin in Germany many fossil twigs and cones were observed, of these two genera, among others (KILP- PER, 1968). In the Upper Oligocene deposits of the northern edge of Saxony Lausitz remains of Taxodiaceae have also been found (MAI, 1997). Remains of leaves, fruits and seeds of Taxodiaceae have also been discovered in Upper Austria by Nieder Rudling, close to Eferding (KOVAR-EDER & BERGER, 1987). In Bosnian Miocene fresh water basins, it is common to fi nd twigs and leaves of these genera (ENGEL- HARDT, 1901). Glyptostrobus europaea (BRONGNIART) UNGER (Pl. VI, Figs. 5, 7, 8) Material: samples 3, 5, 8, 11, 20, 25, 30 1997 Glyptostrobus europaea, MAI, p. 15 Age: Oligocene to Pliocene in the whole of Europe. Sequoia sp. (Pl. VI, Fig. 6) Material: sample 8 1968 Sequoia langsdorfi , KILPPER, p. 104, pl. 33, fi gs. 24, 31 1997 Sequoia abietina, MAI, p. 16 Palynology According to Dr Koraljka Bakrač (personal comment), the most frequent occurrence in sporomorphs is the pollen of trees from mixed subtropical forests (Quercus, Momipites, Engelhartioidites), the pollen of coastal trees (Carya), bush es (Ephedripites, Myrica) evergreen trees (Pinus), swamp for- ests (Taxodium) and ferns (Polypodium). The sporomorph composition is similar to that of the Lower Miocene deposits of Medvednica (the locality of Planina). 5. DISCUSSION 1. Similar fauna in the Lower Miocene Paratethys deposits of N. Croatia and the Lower Miocene lacustrine deposits of the Dinaric palaeodepressions Dinaride Lake System (DLS), JIMÉNEZ-MORENO et al. (2009), together with compa- rable sedimentation of marly carbonate deposits, with inter- calations of coal, and lenses of pyroclastic material, confi rm the proposition (ANIĆ 1951−1953, PAVELIĆ 2002) that the Dinaric lakes were also part of Paratethys. It is to this lake area that, in our opinion, the ‘Pag Lake’ also belongs. Al- though it is placed on the edge of the Mediterranean zone, the sea could not have had an essential infl uence on the sed- imentation and living environment of Pag Lake, which is clear from the fossils observed. On the other hand, fresh wa- ter deposits with intercalations of coal layers and the fl ora and fauna from the Pag Lake show a great similarity with the freshwater Lower Miocene deposits of the NCB and of Bosnia and Herzegovina (ENGELHARDT, 1901). Miocene lacustrine deposits and fossils have also been found in Krbavsko polje (JURIŠIĆ-POLŠAK et al., 1993); by Kosinj, where marls with freshwater fossils have been bored (FRITZ & PAVIČIĆ, 1975); by Žegar in open profi les of limestone marls, and in Bilišani in marly limestones where there are plant remains, congerians, unionids, and melanias (ŽAGAR-SAKAČ & SAKAČ, 1984). This, then, is not an isolated discovery; rather the Pag Miocene Lake is spatially connected with the hinterland. For this reason the border of Bulić & Jurišić-Polšak: Macropalaeontology and stratigraphy of lacustrine Miocene deposits at Crnika beach on the Island of Pag (Croatia) Geologia Croatica 151 Plate VI 1, 2 Stratiotes sp. – seed, 15X. Sample 19. 3, 4 Sambucus cf. pulchella C. & E.M.REID seed, 16X. Sample 18. 5, 7, 8 Glyptostrobus sp. (Fig. 5. Sample 8, X10; Figs. 7, 8. Sample 11, X16) 6 Sequoia sp., 10X. Sample 8. 9, 10, 11 Limnocarpus cf. longepetiolatus (ENGELHARDT), seeds. 20X. Sample 6. 12, 13, 14 Cyprinidae. 30X (Fig. 12. Sample 28; Figs. 13, 14. Sample 2) Geologia Croatica 62/3Geologia Croatica 152 Paratethys should be expected much further south-west than the line that ANIĆ (1951−53) and PAVELIĆ (2002) set in their studies (Fig. 5). 2. The migration of species from central Paratethys to the east has been known for some time, as has the popula- tion of Lake Baikal with many endemic species that derive from the Pannonian or Pontian, partially fresh, or entirely fresh water, of the inland Paratethys basin (HÖRNES, 1898, BRUSINA, 1874; 1887, DYBOWSKI, 1875). Similarly, some forms from the older Dinaric lakes are repeated in today’s lakes as endemic or cognate species. For example the species Bithynia cf. costata from Crn- ika, also discovered by the authors in Poljanska, has been determined in the Pliocene deposits of Israel, and it is cog- nate to recent endemic forms from Lake Baikal. The ribbed Valvata, here determined as subgenus Costovalvata, today lives in the Aetolia Lake in Greece (SCHŰTT, 1962) and Lake Ohrid in Macedonia (WENZ, 1938−1944). Analogously, some endemic species from freshwater lakes migrated to brackish parts of the Pannonian basin dur- ing the Pannonian to Pliocene. The genera Pyrgula, Fossa- rulus, Orygoceras, Prososthenia, Theodoxus and so on that lived in the Miocene lakes were also alive later in the brack- ish Paratethys (BRUSINA, 1897, 1902). The species Melan- opsis defensa from the Pontian deposits of Paratethys (Jag- njedovec, Podravina) has its own cognate in the younger lacustrine deposits of Livno and Duvno basins (JURIŠIĆ- POLŠAK & SLIŠKOVIĆ, 1988). However it is also neces- sary to take into consideration parallelism in the development of individual forms (KOCHANSKY-DÉVIDE, 1976). 3. Fresh water Miocene deposits of Sinjsko and Petrovo polje show a difference in fl oral and faunal composition than is the case in freshwater deposits along the Crnika beach on the island of Pag. In Sinjsko and Petrovo polje, together with some ten species of melanopsids and prososthenians, fossa- ruluses, congerians and unionids (BRUSINA, 1874, 1897, 1902; NEUMAYR, 1869) the fossilized fruits of swamp tree Ceratostratiotes sinjanum KERNER (BŮŽEK, 1982), so far not known from the Dinaric freshwater basins, have been found. But no clivunellas, no Valvata pagana, no common species of congerians, unionids, melanopsids from Pag have been found there, nor the remains of the big stem med plants the taxodiaceans. We could speak here on difference in mol- luscs species sense, but not in generic sense. Still, the issue of the interrelation of these two basins remains unsolved for now. 4. Lacustrine development of the Lower Miocene is present in the whole of Croatia and also in western Bosnia and Herzegovina. Despite of previous/mentioned differences we are of opinion that the Dinaric Neogene lakes were prob- ably occasionally linked with a watercourse network, which enabled the migration of plant and animal species from one lake to another. So we fi nd examples of the mollusc Con- geria neumayri from Crnika also in the N. Croatian locations Fi gu re 5: Approximate loca- tions of the south-western shoreline of the Paratethy- an Sea, and the south-west- ern boundary of Central Pa- ratethys. Bulić & Jurišić-Polšak: Macropalaeontology and stratigraphy of lacustrine Miocene deposits at Crnika beach on the Island of Pag (Croatia) Geologia Croatica 153 of Planina and Jelenska, the species C. pilari from Crnika also in Glinsko Pokuplje and in N. Bosnia, while C. ante- croatica from Crnika was also found in N. Bosnia (Drvar) and in Duvanjsko and Mostarsko polje. Specimens of the genera Bithynia and Gyraulus identical to those of Pag were found by authors at Poljanska in Slavonia. While in northern Croatia this development was ended by marine transgression that happened everywhere during Badenian (ĆORIĆ et al., 2009), at the same time, in the Dinaric lakes, the freshwater regime went on until the lakes were fi lled and vanished, which largely depended on the sinking of the basins, in other words on tectonic movements. The last known lake was in Lika near the little town of Srb, where the fauna and fl ora has shown that the deposits are of Plio−Pleistocene age (JURIŠIĆ-POLŠAK et al., 1997). 5. The lacustrine development of the Lower Miocene is characterised by a specifi c facies of marly carbonate depos- its with intercalations of coal and lenses of bentonite. As well as congerians of various species (Congeria neumayri, C. pi- lari, C. antecroatica, C. socialis, C. zoisi, C. dalmatica, C. venusta, C. boeckhi) there are also Anodonta splendens, Unio sp. and Pisidium sp., and the gastropod genera: Brotia (Tin- nyea) escheri, plus several species of the genera Melanopsis, Bithynia, Theodoxus, Pyrgula, Gyraulus, Valvata, Orygo- ceras. There are frequent remains of fl ora and fi sh. As for vertebrates, along the Crnika profi le, only a single crocodile tooth has been found. In Gornja Jelenska, the remains of the proboscideans Prodeinotherium bavaricum and Gomphoth- erium angustidens, as well as rhinocerotid Brachypotherium brachypus (RADOVČIĆ et al., 1998) have been found. At Lučane in Sinjsko polje (OLUJIĆ, 1999), where, together with evolutionary lineages of prososthenians and melanop- sids, a new species Conohyus olujici has been determined (BERNOR et al., 2004), the proboscidean Gomphotherium angustidens and the rhinocerotid Aceratherium incisivum were also observed. According to this vertebrate association, these deposits should correspond to the chronozones MN4 and MN5 (RÖGL & STEININGER, 1983). Using the radiometric method Ar/ Ar the exact age of pyroclasts from the tuffs of the Sutina site at Lučane has been determined as 15.7 million years (Swisher − personal comment). Because of the specifi c development we propose that these freshwater deposits shoud be called the Illyric. Illyric originated from Latin term Illyricum for the area on the Bal- kan peninsula, inhabited by Illyrians (group of tribes of the Indoeuropean origin) in the ancient time. The name derives from Greek mythology, after Illyrio, the son of Kadmo and Harmony. 6. In the Ottnangian of Central Europe (Slovakia, Upper Bavaria, Upper Austria) the Rzehakia or Oncophora brack- ish sediments were deposited (ČTYROKÝ, 1972). The fol- lowing fossils are characteristic for these deposits: Siliquia, Rzehakia, Limnopagetia, Ctyrokya, several species of Nema- turella while in the Croatian lacustrine Miocene deposits these fossils have not been found. Only the specimen Ano- donta splendens and Nematurella sp. are common with the Crnika locality. 6. CONCLUSIONS (1) Marls with strata of coal alongside Crnika beach and similar deposits with coal in Kolansko polje were created through deposition in a freshwater lake. For the most part these freshwater deposits are composed of muddy sludge; mainly of marls and coaly clays with intercalations of very fi ne-grained sandstones, organogenic limestones and fre- quent layers of coal. In the lithological composition of the outcrops, no coarse grained clastites were observed, which might be ascribed to a lower intensity of erosion on the land areas with the gently expressed relief behind the lake, and the lower transporta- tion power of the watercourses that drained this area. It is assumed that these outcrops of Miocene deposits on Pag belonged to the same sedimentation area, i.e., a single freshwater lake, which in the Lower Miocene occupied the major part of today’s Pag Bay, the Crnika beach and behind it, and a good part of Kolansko polje. The limestone ridge of Grubišinac, which today separates Crnika and Kolansko polje, was elevated later, probably as a result of post-Mi- ocene tectonics. (2) The representation of plant and animal communities in various parts of the Miocene sequence in Crnika area is not uniform, and shows that there were sudden changes of bioecological conditions during the sedimentation of these deposits. Periods of typically lacustrine sedimentation in the area are marked by a very poor biological community, with few species, and few individuals; for example, the central part of the deposits on the profi le. Against this, in the oldest and youngest deposits of the profi le, an explosive development of molluscs can be seen, particularly of gastropods and bivalves, and a lush develop- ment of plant communities, which can be ascribed to the shallowing of the lake in these periods, and the spread of marsh habitats (crocodiles, seeds of Limnocarpus grass and the stemmed vegetation Taxodium and Sequoia). (3) At Crnika, examples of the Clivunellidae gastropods were observed for the fi rst time in Croatia. They are other- wise known from a basement of coal in the Miocene lake deposits of Tušnica in the southern part of Livanjsko polje. After JIMÉNEZ-MORENO et al. (2009) Clivunellid gastro- pods appeared at the top of Ottnangian, before more than 17 Ma ago. Three species of dreissenids have been determined, of which, Congeria neumayri occurs in the lowest part of the profi le, C. pilari in the central part of the profi le, and in the youngest deposits we fi nd C. antecroatica. These congerias were found in several lacustrine deposits of North Croatia and Bosnia, as well as in Herzegovina. Disocvery of the species Congeria pilari, is particularly important, as this has previ- ously been known from the freshwater deposits of Glinsko Pokuplje and North Bosnia, which lie below the Badenian marine deposits (KOCHANSKY-DÉVIDE & SLIŠKOVIĆ, 1978). Accordingly, the deposits in which these congerias are found are older than the Badenian. However, Congeria neu- Geologia Croatica 62/3Geologia Croatica 154 mayri suggests a possible Ottnangian age of the Crnika de- posits, as well as for the Vukov dol on Medvednica Mt., where this species was previously found. But a Karpathian age for the Crnika locality is confi rmed by the results of magneto- stratigraphic investigations (JIMÉNEZ-MORENO et al., 2009). Fish teeth and a crocodile tooth were also observed at Crnika, the latter being the fi rst observation in Croatia. (4) Although Pag Lake was settled at the edge of the Mediterranean zone, the sea did not have any essential effect on the sedimentation and living environment. Palaeontolog- ical data suggest the conclusion that Pag Lake belonged in a palaeogeographic sense to a unique Paratethys system of freshwater lakes that during the Lower Miocene covered large parts of the Pannonian basin and the neighbouring Di- naric area to the south. (5) Freshwater lacustrine deposits of the Lower Miocene were developed over the whole of Croatia and in West Bos- nia and Herzegovina. Because of their specifi c features, we propose that these deposits be called the Illyric. In northern part of Croatia such lacustrine sedimentation lasted until the Lower Badenian when it was ended by a ma- rine transgression (ĆORIĆ et al., 2009). In the Dinaric lakes, such a fresh water regime existed for much longer, in some areas until the Pleistocene (JURIŠIĆ - POLŠAK et al., 1997.). ACKNOWLEDGEMENT We wish to express our gratitude to Professor R.L. BERNOR, repre- sentative of the National Geographic and the Louis Leakey Foundation, which provided fi nancial support for the research at Crnika in 2001. We also thank Professor BERNOR, C.S. FEIBEL and S. BEE for their collaboration and useful suggestions during the fi eld work. We also thank the Protection of the Geological Heritage Section of the Croatian Geological Society for funding that enabled research into the Miocene deposits on Pag in 2000; also Ivan OPIĆ (Geoist d.o.o. for geological research, Samobor), which provided a dona- tion to cover the costs of chemical analyses; Krešimir KRIZMANIĆ and associates from the Geology and Geochemical Department, Sector SII, INA, for their work in the making of preparations and petrographic analyses. We thank Darinka BABAC, BSc, of Geološki konzalting for palaeontological analysis of foraminifers. We also would like to thank our colleagues Andrejka ŽAGAR- SAKAČ, Jakov RADOVČIĆ, Sanja JAPUNDŽIĆ and Tamara ĐEREK for help in the determination of given groups of fl ora and fauna. Thanks are also due to Dr. Koraljka BAKRAČ for palynological determinations. Many thanks to colleague Mrs. Katarina KRIZMANIĆ for her help in preparing the manuscript. We thank senior museum technician Nives BORČIĆ for taking and processing the photo- graphs, and Dr. Hrvoje POSILOVIĆ, assistant on the Faculty of Natural Sciences and Ivo SUŠA (Croatian Geological Survey) for help in preparing the graphic supplements. Finally, we are greatly indebted to Dr. Ivo VELIĆ for his help in coordinating the manuscript with the comments and suggestions of the reviewers. REFERENCES ANIĆ, D. (1951–53): Starost naslaga sa smeđim ugljenom u Bosni, Her- cegovini i Dalmaciji.– Geol. vjesnik, 5/7, 73–110. BERNOR, L.R., BI, S. & RADOVČIĆ, J. (2004): A contribution to the evolutionary biology of Conohyus olujici n. sp. (Mamalia, Suidae, Tetraconodontinae) from early Miocene of Lučane, Croatia.– Geo- diversitas, 26/3, 509–534. BRUSINA, S. (1874): Fossile Binnen-Mollusken aus Dalmatien, Kroa- tien und Slavonien nebst einem Anhange.– Deutsche vermehrte Ausgabe der kroat. im Rad 28 (1874) erschienenen Abhandlung – Aktienbuchdruckerei, Agram, 138 p. BRUSINA, S. 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