Maataloustieteellinen Aikakauskirja Vol. 62: 331—337, 1990 Conventional and organic cropping systems at Suitia IV: weeds RAIMO KAUPPILA University of Helsinki, Department of Crop Husbandry SF-00710 Helsinki, Finland Index words: weeds, cropping systems, organic cropping, conventional cropping. Introduction Weeds are postulated to be one of the most difficult problems in organic farming, where herbicides are not used. Possible substitutive methods for herbicides are, for instance, crop rotation, careful ploughing, fallowing, delayed cultivation before sowing and stub- Abstract. At Suitia, Southern Finland, weed populations in different crop rotations at conventional and organic cropping systems were investigated in 1982—1988. The number ofweeds and the dry matteryields of weeds were greater in organic cropping (on average 324 weeds/m 2 and 425 kg DM/ha) compared toconventional cropping (94 weeds/m 2 and 61 kg DM/ha). There were least weeds in the conventionally cultivated ley. The first year, clover ley in organic cropping prevented the growth of weeds as well as the grass ley in conven- tional cropping. Overwintering damages in organically cultivated leys increased the amounts of weeds in the following ley years. Organically cultivated winter wheat reduced the amount and weight of weeds almost as well as conventionally cultivated winter wheat although its biomass was three-fourths of the conventionally cultivated winter wheat. The biomass of organically cultivated barley later on in the rotations was only one-fifth of the conventionally cultivated barley and had five times more weeds. In conventional cropping, the number of weeds in almost all weed species was decreased or stayed at the same level during the experiment. In organic cropping, the number of most weeds in weed species increased from the level for 1982. Most increased Stellaria media, Fallopio convolvulus, Lamium sp and Chenopodium album. ble cultivation. Harrowing of the cereal field surface before or after the emergence of seedlings is also used in organic cropping. The cereal species, the previous crop, the fertilisation method and the time of practise in organic cropping have an essential effect on the number and biomass of weeds and on the abundance of different weed species (Mela 331 JOURNAL OF AGRICULTURAL SCIENCE IN FINLAND https://www.c-info.fi/en/info/?token=KoneofZ4FX-fbhmG.5DOUzreueRgyFbzPmUFHMQ.3XYR2g1rjUdoW5ty38cxgA8fgt1AHH6FrFk5Vk4dphbbgXadC4sgifiHYeDeWINnRJEpOAxkH6z4FsB81nE7ROfOplkgnHz6h4W27yY7E8DCrXYThxwUqmMDzBG6DoDlsL2m7fIJ_35GFV_MTVALF2bU5jR5bcPjqntFbA 1988). The aims of this investigation, as a part of a larger project (Hannukkala et al. 1990), were to clarify the effects of different crop rotations in different cropping systems on the amount of weeds and weed species. Material and methods Experimental field The field consists of about 6 ha (net area) of arable land typical of the grain producing areas of Southern Finland. In 1982, the field was divided into three blocks, and each of these into eight plots. Crop rotations A and B were cultivated conventionally, C and D or- ganically. In the year 1983 the plots were divided into two, phase a and phase b, where phase b skipped three years in the six-year ro- tations. Table 1 shows the crop sequences in 1982—1988. Weed control In conventional cropping weeds were con- trolled with herbicides, while no chemicals were used in organic cropping. A more detailed description of the herbicide treat- ments and other cultivation methods are given in Hannukkala et al. 1990. Weed and plant stand sampling The time and amount of weed and crop sampling varied slightly between years. An at- tempt was made to take the samples when cereals were heading or a little later. Samples were taken from leys before the first cut. Sam- pling took from one to three days. Weed and crop samples from winter wheat and leys were taken yearly between the 20th of Juneand the 12th of Julyand from spring sown species be- tween the 4th and 29th of July. The sample areas in conventional cropping had been treated with herbicides. Table 1. Crop sequences at Suitia in 1982—1988. Crop sequences Phase a 1982 1983 1984 1985 1986 1987 1988 Phase b 1982 -> -> -> 1983 1984 1985 -> 1986 1987 1988 System Al barley barley barley barley barley barley barley A 2 barley oats spring barley winter barley barley wheat wheat A 3 barley oats + potato barley winter turnip barley V.faba wheat rape B barley ley ley ley winter oats barley +leys. wheat +leys. Cl, C 2 barley barley potato Persian winter oats + barley +clover +clover clover wheat V.faba +clover Dl, D 2 barley ley annual annual winter oats barley +leys. ley *) ley wheat +leys. * supplemented with additional seed in 1987 only 332 Several small samples were taken from ran- domly chosen points in the plots. The area of one sample was usually 0.25 m 2, and the to- tal area per plot varied yearly from 0.5 to 1.0 m 2. The shoots of the cultivated crop were first cut at the field surface. Weed species were indentified, and all weeds were counted. The dry weights were determined by drying for 24 hours at + 105°C. The results are reported as numbers/m2 or kg/ha. Statistical analyses The significance of differences were tested with the ANOVA model as described by Hannukkala et al. 1990. Results The rotations were combined to four crop- ping sequences because there were no signifi- cant differences between the weeds in the ro- tations Al—A3, Cl and C 2 or D 1 and D2. The new groups were: A = conventional plant production B = conventional plant production on a cattle farm C = organic plant production D = organic plant production on a cattle farm The results are reported as averages for the two phases (a and b) because there were no significant differences between the phases. Number of weeds In the first trial year (1982) barley was grown in all plots. In sequences B, C and D, ley crops were sown in addition, under the cereals. The number of weeds was slightly higher in organic cropping than in conven- tional cropping (Table 2). Making comparisons between various crop rotations and between years is difficult be- cause the cultivated crops varied often during the six-year-long rotations. Considering all ro- tations and trial years, the number of weeds were, however, the smallest (9—56 weeds/m2 ) during the ley years in conventional cropping. The number of weeds in organic cropping was usually manifold that in conventional cropping. The number of weeds was smallest (62 weeds/m 2 ) in the first ley year. In the sec- ond and third year ley there were, however, over 400 weeds/m2 . In the organically culti- vated potato crop the number of weeds was relatively small (162 weeds/m2 ). In 1986 (phase a) and 1983 (phase b), win- ter wheat was grown in all plots except the bar- ley monoculture plot (Al). In conventional cropping the number of weeds in winter wheat did not differ much from the other years. In organic cropping the number of weeds was, however, noticeably smaller than in the other years, being only slightly higher than in con- ventionally cultivated wheat stands. In 1988 (phase a) and 1985 (phase b), bar- ley was grown in all the plots. In organic crop- ping the number of weeds was over five times higher than in conventional cropping. In con- ventional cropping the number of weeds had decreased, and in organic cropping it had in- creased noticeably compared with the number of weeds at the beginning of the trial. Table 2. Number of weeds per squaremetre in conventional and organic cropping in 1982—1988. For crop sequences A to D and years, see Table 1. Years 82 83/86 84/87 85/88 86/83 87/84 88/85 x Conventional A 96 246 112 46 103 109 69" 112 B 131 21 56 9 86 117 105a 75 Organic C 152 659 162 426 142 303 505b 336 D 204 62 443 432 159 290 558b 311 333 Weed dry weights The changes in weed dry weights followed the changes in the number of weeds. The dry weight of weeds was smallest (16 —67 kg/ha) in conventionally cultivated leys and highest (1200—1280 kg/ha) in the second and third year ley of organic cropping (Table 3). The individual weed dry weights were usually higher in organic cropping. Weed species The weed species were determined yearly from all plots. The number of weeds in differ- ent species at the beginning and at the end of the original crop rotation (phase a) are re- ported. In both years, barley was the culti- vated crop. Up to 1988, the total number of weeds decreased in conventional cropping and increased in organic cropping (Table 4). In 1982,Fumaria officinalis was the most common weed species in all rotations. The differences between the rotations were, how- ever, rather small (56—76 weeds/m 2 ). Slellaria media, Chenopodium album, Fallobia convol- vulus and Lamium sp. were the next common weed species. The number of weeds listed above were slightly higher in organic cropping than in conventional cropping. Up to 1988, the number of weeds in nearly all weed species had decreased or stayed stable in conventional cropping. Elymus repens had, however, clearly increased in the cattle farm crop rotation. Organic cropping had increased the number of most weeds in weed species as compared to 1982. The increase was highest for the species of Slellaria media, Fallopio convolvulus, Lamium sp. and Chenopodium album. In conventional cropping in 1988, nine Table 3. Dry matter yields (kg/ha) of weeds in conventional and organic cropping in 1982—1988. For crop sequences A to D and years, see Table 1. Years 82 83/86 84/87 85/88 86/83 87/84 88/85 x Conventional A 32 127 168 42 52 68 V 71 B 43 34 67 16 90 52 51 a 50 Organic C 110 338 390 1141 39 330 298b 378 D 142 26 1200 1280 63 279 310" 471 Table 4. Number of weeds in different weed species per square metre in conventional and organic cropping in 1982 and 1988. For crop sequences A to D, see Table 1. Crop sequence ABC D Species 82 88 82 88 82 88 82 88 Chenopodium album 4 0 6 0 8 28 24 21 Elymus repens 00 018 02 09 Fallopia convolvulus 6 2 4 1 16 69 23 53 Fumaria officinalis 68 28 76 31 72 72 56 75 Galeopsis sp 11 2 2 3 8 4 5 Galium sp 3 1 6 4 7 1 18 12 Lamiumsp 4 11 18 21 10 17 32 49 Lapsana communis 20 40 40 30 Myosotis arvensis 0 0 0 1 14 0 0 Sonchussp 0 0 4 0 10 11 Stellaria media 7 1 9 1 14 63 28 116 Viola arvensis 0 0 11 15 11 Other 10 11 18 25 14 22 Total 96 44 131 81 152 294 204 364 334 (crop sequence A) or ten (B) different weed species were observed, the number in organic cropping being 14(C) or 17 (D), respectively. Biomass of cultivated crops The comparisons between the biomasses of the cultivated crops were most successful in the years when the same crop species was cul- tivated on all plots. In 1982, 1988 (phase a) and in 1985 (phase b), barley was the culti- vated cereal. In 1986 (a) and 1983 (b), winter wheat was cultivated in all rotations except in the barley monocultures (Al). In the beginning of the trial, the biomasses of barley were from two to three times higher in conventional cropping than in organic crop- ping (Table 5). Later on, the biomasses in con- ventionalcropping were from fivefold to six- fold higher. The biomasses of winter wheat stands in or- ganic cropping were only slightly less than in conventional cropping. Discussion The number of weeds and the dry matter yields of weeds were higher in organic crop- ping than in conventional cropping. The growth of weeds was best suppressed by the perennial leys. In conventional cropping, the effect was still observed in the third year ley because the nitrogen-fertilised grass ley did not grow essentially thinner when aging. Organically cultivated clover ley suppressed weeds in the first ley year as well as conven- tionally cultivated grass ley. Overwintering damages in clover leys forced the use of an- nual ley crop species in the following ley years; the ley was supplemented with additional seed only in 1987. Because of its slow initial growth, clover competed poorly against the weeds, and weeds overran the clover leys. The green manure crops in crop sequence C (85/88), too, could not compete successfully with the weeds. The crop species and cultivars sown in green fallows did not suit the local growing conditions as well as expected. Earthing up the potato bench in crop se- quence C (84/87) clearly decreased the num- ber of weeds. The weeds on the top of the potato bench, however, were not destroyed. The weed biomass was still high because of the weak shading of the potato stand. The number and dry weight of weeds in winter wheat were similar in organic and con- ventional cropping. This can be explained by the shade effect of winter wheat stands. The biomass of wheat in organic cropping was up to three-fourths of that in conventional crop- ping. It is evident that, because of its long growing time, winer wheat can use the miner- alized nutrients in proportion better than spe- cies sown in spring. In the later stage of the crop rotation, bar- ley biomasses in organic cropping were only one-fifth of the conventional cropping, and barley could not compete with the weeds in organic cropping. It was also observed that the number of weeds increased in organic crop- ping when there were several spring-sown cereals in succession. Preserving the fertility in organic cropped fields seems to be the most important question for successful cropping, and also has an effect on the weeds. Table 5. Biomasses of cultivated crops (dry matter kg/ha) in conventional and organic cropping in 1982—1988. For crop sequences a to d and years, see Table 1. Years 82 83/86 84/87 85/88 86/83 87/84 88/85 x Conventional A 2860 5670 4220 4030 6590 5870 4020 b 4750 B 1700 1550 4640 860 7530 5560 3350b 3600 Organic C 800 3710 910 790 4810 4070 840" 2280 D 1070 900 750 980 4360 2700 750» 1640 335 The number of weeds in conventional crop- ping was, on average, 94 weeds/m 2 , and be- ing 324 weeds/m2 in organic cropping. Later on in the crop rotations, in organic cultivated barley stands there were from 505 to 558 weeds/m2 . In a spring cereal study (Mukula et ai. 1969), the number of weeds was 550/m 2 , being similar to the number of weeds in or- ganic cropping reported here. In another study (Erviö and Salonen 1987), the number of weeds in conventionally cultivated spring cereal fields was, on average, 173 weeds/m2 . The weed samples in the experiments cited above were taken from unsprayed areas. In a large survey of organic farming in Finland (Mela 1988), the number of weeds in spring and winter cereals was, on average, 505/m2 . In this experiment the biomass of weeds, which mayreflect the competition ability bet- ter than the number of weeds per square metre, in conventional cropping was, on aver- age, 61 kg/ha being 425 kg/ha in organic cropping. In organically cultivated barley stands, the dry weight of weeds was about 300 kg/ha. According to Mukula et ai. (1969), the biomass of weeds in spring cereals was as much as 1000 kg/ha. Erviö and Salonen (1987) reported the air dry weights of the weeds to be 320 kg/ha in conventionally cul- tivated spring cereal fields. In the survey of alternative agriculture made by Mela (1988), the biomass of weeds in spring and winter cereals was 525 kg/ha. The biomass of weeds in the present inves- tigation was quite small. Because of the dif- ferent sampling times it is, however, difficult to make comparisons between the above cited investigations and the present investigation. All possibilities for controlling weeds al- lowed in organic cropping, such as stubble cul- tivation, delayed sowing and shoot cultiva- tion, were not used in this investigation. The amount of weeds could perhaps be further de- creased with these methods in some growing conditions. There is, however, not enough knowledge of the methods best suited to different conditions. The yield reduction caused by weeds was not studied in this investigation. According to Suomela and Paatela (1962), the average 740 kg/ha dry weight of weeds decreased the grain yield of spring cereals between 6 to 9 %. Weed control using herbicides increased the cereal grain yields from 2 to 3 % (Salonen and Erviö 1986) when the air dry weight of weeds was about 320 kg/ha (Erviö and Salo- nen 1987). In the present investigation, the yield reduc- tion of spring cereals in organic cropping can be estimated from the figures presented above to be about 5 %. It is, however, noteworthy that the cereals in the experiments cited above had been fertilised, and thus they had more nutrients available than cereals in organic cropping. The barley yields were rather small in this investigation (see Korva and Varis 1990). The reduction of yields caused by weeds may have been considerably greater than es- timated here because weeds competed with cultivated crops for the very sparse nutrient sources. The weed problem in organic cropping is, however, of minor importance when com- pared to the differences in crop yields between organic and conventional cropping (see Kor- va and Varis 1990). Some unpredictable con- ditions may, however, lead to real weed prob- lems. Such conditions occur, for instance, when poor crop stands that have suffered overwintering damages cannot be strength- ened or made dense with nitrogen fertilisers and the competing weeds cannot be destroyed by herbicides. Preservation of the fertility of the field, use of varied crop rotations and choosing the ap- propriate species and cultivars best suited to local growing conditions are the basic require- ments for successful weed control in organic cropping. Acknowledgements. I would like to thank Jukka Korva for the statistical analyses and Prof. Eero Varis and Visa Nuutinen for commenting on the manuscript. 336 References Erviö, L.-R. & Salonen, J. 1987. Changes in the weed population of spring cereals in Finland. Ann. Agric. Fenn. 26: 201—226. Hannukkala, A.0., Korva, J. & Tapio, E. 1990. Con- ventional and organic cropping systems at Suitia I: Experimental design and s maries. J. Agric. Sci. Finl. 62: 295—307. Korva, J. & Varis, E. 1990. Conventional and organic cropping systems at Suitia II: Crop growth and yields. J. Agric. Sci. Finl. 62: 309—319. Mela, T. 1988. Luonnonmukainen peltoviljely Suomes- sa. Viljelymenetelmät, rikkakasvit, peltojen viljavuus, sadot ja sadon laatu. Summary: Organic farming in Finland. Cultivation methods, weeds, soil fertility, SELOSTUS Suitian viljelyjärjestelmät V: Rikkakasvit Raimo Kauppila Helsingin yliopisto, Kasvinviljelytieteen laitos Vuosina 1982—1988 tutkittiin sekä tavanomaisesti että luonnonmukaisesti viljeltyjen kasvintuotanto- ja koti- eläintuotantotilojen erilaisten viljelykiertojen rikkakas- vustoja. Luonnonmukaisen viljelyn viljelykiertojen rikkakasvien lukumäärät jakuiva-ainesadot (keskimäärin 324 kpl/m2 ja 425 kg/ha) olivat merkitsevästi suuremmatkuin tavan- omaisessa viljelyssä (keskimäärin 94 kpl/m 2 ja 61 kg/ha). Vähiten rikkakasveja oli tavanomaisen viljelyn nurmes- sa. Luonnonmukaisen viljelyn apilapitoinen nurmi ehkäisi ensimmäisenä nurmivuotena rikkakasvien kasvua yhtä hy- vin kuin tavanomaisen viljelyn heinänurmi. Luonnonmu- kaisen viljelyn nurmien talvehtimisen epäonnistuminen lisäsi rikkakasvustoja huomattavasti seuraavina nurmi- vuotma. yields and yield quality. Helsingfors University, Department of Crop Husbandry. Publications 220. Mukula, J., Raatikainen, M., Lallukka, R. & Raatikai- nen, T. 1969. Composition of weed flora in spring cereals in Finland. Agric. Fenn. 8:61 —110. Salonen, J. & Erviö, L-R. 1986. Kannattaako kevätvil- jan kemiallinen rikkakasvintorjunta. Koetoim. ja Käyt. 43: 26. Suomela, H. & Paatela, J. 1962. The influence of irri- gation, fertilizing and MCPA on the competition be- tween spring cereal weeds. Weed Research 2: 90—99. Ms received April 2, 1990 Luonnonmukaisesti viljelty syysvehnäkasvusto, jonka biomassa oli noin 3/4 tavanomaisesti viljeltyyn verrattu- na, vähensi sekä rikkakasvien lukumäärää että painoa lä- hes kuten tavanomaisesti viljellyt syysvehnäkasvustot. Oh- ran biomassa oli luonnonmukaisen viljelynviljelykierto- jen myöhäisessä vaiheessa ainoastaan noin 1/5 ja rikka- kasveja oli noin viisinkertainen määrä tavanomaisesti vil- jeltyyn ohraan verrattuna. Vuoteen 1988 mennessä olivat tavanomaisessa viljelyssä lähes kaikkien rikkakasvilajien lukumäärät vähentyneet tai pysyneet muuttumattomina. Luonnonmukainen vil- jely lisäsi useimpien rikkakasvilajien lukumäärää vuoteen 1982 verrattuna. Eniten lisääntyivät Stellaria media, Fal- lopio convolvulus, Lamium sp ja Chenopodium album. 337