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This study evaluates the effectiveness of post–harvest oilseed radish green manures and different tillage methods in controlling potential soil contamination and weed infestation in typical chernozem soil and maize crops. It was found that the application of oilseed radish green manures significantly reduced the quantity of weed seeds in the 0–30 cm soil layer by 2.9–7.1 million seeds ha-1 compared to the non–green manure background. In maize fields, the population of all weed biological groups decreased by 0.2–4.5 individuals/m2 and their biomass decreased by 4–69 g/m2, resulting in an increase in grain yield by 1.5–1.8 t ha-1. Substituting plowing with no–moldboard tillage for incorporating oilseed radish green manures reduced weed seed reserves in the 0–30 cm soil layer by 0.7–1.7 million seeds ha-1. The deepest no–moldboard tillage provided the lowest potential contamination in the upper 0–5 cm soil layer, with 24.4 and 22.3 million seeds ha-1, which was 0.6–1.1 and 2.3–3.3 million seeds ha-1 lower compared to no–moldboard tillage at 13–15 and 6–8 cm. Substituting plowing with no–moldboard tillage increased the number and biomass of weeds in maize crops, mainly due to early and late spring groups.
Słowa kluczowe
Czasopismo
Rocznik
Tom
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77--85
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Bibliogr. 45 poz., rys., tab.
Twórcy
autor
- Sumy National Agrarian University, 160, H. Kondratieva Str., Sumy, 40021, Ukraine
autor
- Sumy National Agrarian University, 160, H. Kondratieva Str., Sumy, 40021, Ukraine
autor
- Dnipro State Agrarian and Economic University, Sergei Yefremov, Str., 25, Dnipro, 49000, Ukraine
autor
- National University of Life and Environmental Sciences of Ukraine, 15 Str., Heroiv Oborony, Kyiv, 03041, Ukraine
autor
- Dnipro State Agrarian and Economic University, Sergei Yefremov, Str., 25, Dnipro, 49000, Ukraine
autor
- Dnipro State Agrarian and Economic University, Sergei Yefremov, Str., 25, Dnipro, 49000, Ukraine
autor
- Dnipro State Agrarian and Economic University, Sergei Yefremov, Str., 25, Dnipro, 49000, Ukraine
autor
- Sumy National Agrarian University, 160, H. Kondratieva Str., Sumy, 40021, Ukraine
autor
- Sumy National Agrarian University, 160, H. Kondratieva Str., Sumy, 40021, Ukraine
autor
- Sumy National Agrarian University, 160, H. Kondratieva Str., Sumy, 40021, Ukraine
Bibliografia
- 1. Armengot L., Blanco-Moreno J.M., Bàrberi P., Bocci G., Carlesi S., Aendekerk R. & Sans F.X. (2016). Tillage as a driver of change in weed communities: a functional perspective. Agriculture, Ecosystems & Environment, 222, 276–285. https://doi.org/10.1016/j.agee.2016.02.021
- 2. Bezuidenhout S.R., Reinhardt C.F. & Whitwell M.I. (2012). Cover crops of oats, stooling rye and three annual ryegrass cultivars influence maize and Cyperus esculentus growth. Weed Research, 52, 153–160. https://doi.org/10.1111/j.1365-3180.2011.00900.x
- 3. Casal J.J. & Qüesta J.I. (2018). Light and temperature cues: multitasking receptors and transcriptional integrators. New Phytologist., 217, 1029–1034.
- 4. Cordeau S., Smith R., Gallandt E., Brown B., Salon P., Di Tommaso A. & Ryan M. (2017). Timing of tillage as a driver of weed communities. Weed Science, 65(4), 504–514. https://doi.org/10.1017/wsc.2017.26
- 5. Dong F., Zeng W. (2024). Effects of fall and winter cover crops on weed suppression in the united states: A meta-analysis. Sustainability, 16, 3192. https://doi.org/10.3390/ su16083192
- 6. Dvořák P., Tomášek J., Hamouz K. & Kuchtová P. (2016). Reply of mulch systems on weeds and yield components & nbsp; in potatoes. Plant, Soil and Environment, 61(7), 322–327. https://doi.org/10.17221/242/2015-pse
- 7. Farhood Y., Saeed Z.S., Ghassem A., Farideh S. & Vahid B. (2015). Effects of cover crops and weed management on corn yield. Journal of the Saudi Society of Agricultural Sciences, 14(2), 178–181. https://doi.org/10.1016/j.jssas.2014.02.001
- 8. Fernández-Milmanda G.L. & Ballaré C.L. (2021). Shade avoidance: expanding the color and hormone palette. Trends in Plant Science, 265, 509–523.
- 9. Halde C., Gulden R.H., Entz M.H. (2014). Selection of mulch for cover crops for organic rotational systems No-till in Manitoba, Canada. Agronomy Journal, 106(4), 1193–1204. https://doi.org/10.2134/agronj13.0402
- 10. Horvath D., Bruggeman S., Moriles-Miller J., Anderson J., Dogramaci M., Scheffler B. & Clay S. (2018). Weed presence altered biotic stress and light signaling in maize even when weeds were removed early in the critical weed-free period. Plant Direct, 2(4), e00057. https://doi.org/10.1002/pld3.57
- 11. Horvath D., Clay S., Bruggeman S., Anderson J., Chao W. & Yeater K. (2019). Varying weed densities alter the corn transcriptome highlighting a core set of weed-induced genes and processes with potential for manipulating weed tolerance. The Plant Genome, 12(3), 1–9. https://doi.org/10.3835/plantgenome2019.05.0035
- 12. Horvath D., Clay S., Swanton C., Anderson J. & Chao W. (2022). Weed-induced crop yield loss: a new paradigm and new challenges. Trends in Plant Science, 28, 567–582. https://doi.org/10.1016/j.tplants. 2022.12.014
- 13. Horvath D., Doherty C., Desai J., Clark N., Anderson J. & Chao W. (2023). Weed-induced changes in the maize root transcriptome reveal transcription factors and physiological processes impacted early in crop-weed interactions. AoB Plants, 15(3), plad013. https://doi.org/10.1093/aobpla/plad013
- 14. Hryhoriv Y., Butenko A., Nechyporenko V., Lyshenko M., Ustik T., Zubko V., Makarenko N., Mushtai V. (2021). Economic efficiency of Camelina sativa growing with nutrition optimization under conditions of Precarpathians of Ukraine. Agraarteadus, 32(2), 232–238. https://doi.org/10.15159/jas.21.33
- 15. Hryhoriv Y., Butenko A., Solovei H., Filon V., Skydan M., Kravchenko N., Masyk I., Zakharchenko E., Tykhonova O., Polyvanyi A. (2024). Study of the impact of changes in the acid-base buffering capacity of surface sod-podzolic soils. Journal of Ecological Engineering, 25(6), 73–79. https://doi.org/10.12911/22998993/186928
- 16. Huber M., Nieuwendijk N., Pantazopoulou C. & Pierik R. (2021). Light signalling shapes plant–plant interactions in dense canopies. Plant Cell Environment, 44, 1014–1029.
- 17. Hutianskyi R., Popov S., Zuza V. & Kuzmenko N. (2022). Weediness of corn for grain crops by cultivation in the stationary crop rotation and permanent crops in the Eastern Forest Steppe of Ukraine. Quarantine and Plant Protection, 3, 15–19. doi.org/10.36495/2312-0614.2022.3.15-19
- 18. Jabran K., Cheema Z.A., Khan M.B. & Hussain M. (2016). Control of cabbage aphid brevicoryne brassicae (Homoptera: Aphididae) through allelopathic water extracts. Pakistan journal of scientific and industrial research. Series B: Biological Sciences, 59, 48–51.
- 19. Jabran K., Mahajan G., Sardana V. & Chauhan B.S. (2015). Allelopathy for weed control in agricultural systems. Crop Protection, 72, 57–65. https://doi.org/10.1016/j.cropro.2015.03.004
- 20. Karbivska U., Asanishvili N., Butenko A., Rozhko V., Karpenko O., Sykalo О., Chernega T., Masyk I., Chyrva, A., Kustovska A. (2022b). Changes in agrochemical parameters of sod-podzolic soil depending on the productivity of cereal grasses of different ripeness and methods of tillage in the Carpathian Region. Journal of Ecological Engineering, 23(1), 55–63. https://doi.org/10.12911/22998993/143863
- 21. Karbivska U., Masyk I., Butenko A., Onychko V., Onychko T., Krіuchko L., Rozhko V., Karpenko O., Kozak M. (2022a). Nutrient balance of sod–podzolic soil depending on the productivity of meadow agrophytocenosis and fertilization. Ecological Engineering & Environmental Technology, 23(2), 70–77. https://doi.org/10.12912/27197050/144957
- 22. Karbivska U., Butenko A., Kozak M., Filon V., Bahorka M., Yurchenko N., Pshychenko O., Kyrylchuk K., Kharchenko S., Kovalenko I. (2023). Dynamics of productivity of leguminous plant groups during long-term use on different nutritional backgrounds. Journal of Ecological Engineering, 24(6), 190–196. https://doi.org/10.12911/22998993/162778
- 23. Kolisnyk O., Yakovets L., Amons S., Butenko A., Onychko V., Tykhonova O., Hotvianska, A., Kravchenko N., Vereshchahin I., Yatsenko V. (2024). Simulation of high–product soy crops based on the application of foliar fertilization in the conditions of the right bank of the forest steppe of Ukraine. Ecological Engineering & Environmental Technology, 25(7), 234–243. https://doi.org/10.12912/27197050/188638
- 24. Kołodziejczyk M. (2015). The effect of living mulches and conventional methods of weed control on weed infestation and potato yield. Scientia Horticulturae, 191, 127–133. https://doi.org/10.1016/j.scienta.2015.05.016
- 25. Kong C., Zhang S., Li Y., Xia Z., Yang X., Meiners S. & Wang P. (2018). Plant neighbor detection and allelochemical response are driven by root-secreted signaling chemicals. Nature Communications, 9, 1–9.
- 26. Kovalenko V., Kovalenko N., Gamayunova V., Butenko A., Kabanets V., Salatenko I., Kandyba N., Vandyk M. (2024). Ecological and technological evaluation of the nutrition of perennial legumes and their effectiveness for animals. Journal of Ecological Engineering, 25(4), 294–304. https://doi.org/10.12911/22998993/185219
- 27. Kovalzhy N., Rieznik S., Butenko A., Havva D., Degtyarjov V., Hotvianska A., Bondarenko O., Nozdrina N. (2024). Activity of cellulose–degrading microorganisms in typical chernozem under different fertilization systems of strawberries (Fragaria). Agriculture and Forestry, 70(3), 105–113. https://doi.org/10.17707/AgricultForest.70.3.07
- 28. Kunz C., Sturm D., Varnholt D., Walker F. & Gerhards R. (2016). Allelopathic effects and weed suppressive ability of cover crops. Plant, Soil and Environment, 62, 60–66. https://doi.org/10.17221/612/2015-pse
- 29. Lawley Y.E., Weil R.R. & Teasdale J.R. (2011). Forage radish cover crop suppresses winter annual weeds in fall and before corn planting. Agronomy Journal, 103, 137–144. https://doi.org/10.2134/agronj2010.0187
- 30. Legris M., Nieto C., Sellaro R., Prat S. & Casal J. (2017). Perception and signalling of light and temperature cues in plants. The Plant Journal, 90, 683–697.
- 31. Li L., Zhao H. & Kong C. (2020). Loliolide the most ubiquitous lactone is involved in barnyardgrassinduced rice allelopathy. Journal of Experimental Botany, 71, 1540–1550.
- 32. Malinovsky F., Thomsen M., Nintemann S., Jagd L., Bourgine B., Burow M. & Kliebenstein D. (2017). An evolutionarily young defense metabolite influences the root growth of plants via the ancient TOR signaling pathway. Elife, 6, e29353.
- 33. McErlich A.F. & Boydston R.A. (2013). Current state of weed management in organic and conventional cropping systems. Automation: The Future of Weed Control in Cropping Systems, 11–32. https://doi.org/10.1007/978-94-007-7512-1_2
- 34. Melander B., Liebman M., Davis A.S., Gallandt E.R., Bàrberi P., Moonen A.-C., Rasmussen J., van der Weide R. & Vidotto F. (2017). Non-chemical weed management, in weed research: Expanding Horizons. John Wiley & Sons, Ltd, Chichester, 245–270: https://doi.org/10.1002/9781119380702.ch9
- 35. Mishchenko Y., Butenko A., Bahorka M., Yurchenko N., Skydan M., Onoprienko I., Hotvianska A., Tokman V. & Ryzhenko A. (2024). Justification of organic agriculture parameters in potato growing with economic and marketing evaluation. AgroLife Scientific Journal, 13(1), 139–146. https://doi.org/10.17930/AGL2024115
- 36. Mishchenko Y., Kovalenko I., Butenko A., Danko Y., Trotsenko V., Masyk I., Zakharchenko E., Hotvianska A., Kyrsanova G. & Datsko O. (2022). Post-Harvest siderates and soil hardness. Ecological Engineering & Environmental Technology, 23(3), 54–63. https://doi.org/10.12912/27197050/147148
- 37. Ninkovic V., Rensing M., Dahlin I. & Markovic D. (2019). Who is my neighbor? Volatile cues in plant interactions. Plant Signaling Behavior, 14, 1634993.
- 38. Petit S., Cordeau S., Chauvel B., Bohan D., Guillemin J. P. & Steinberg C. (2018). Biodiversity-based options for arable weed management. Agronomy for Sustainable Development, 38, 1–21. https://doi.org/10.1007/s13593-018-0525-3
- 39. Price A.J. & Norsworthy J.K. (2013). Cover crops for weed management in southern reduced-tillage vegetable cropping systems. Weed Technology, 27, 212–217. https://doi.org/10.1614/wt-d-12-00056.1
- 40. Radchenko M., Trotsenko V., Butenko A., Masyk І., Bakumenko O., Butenko S., Dubovyk O., Mikulina M. (2023). Peculiarities of forming productivity and quality of soft spring wheat varieties. Agriculture and Forestry, 69(4), 19–30. https://doi.org/10.17707/AgricultForest.69.4.02
- 41. Santín-Montanyá M.I., Martín-Lammerding D., Zambrana E. & Tenorio J.L. (2016). Management of weed emergence and weed seed bank in response to different tillage, cropping systems and selected soil properties. Soil and Tillage Research, 161, 38–46. https://doi.org/10.1016/j.still.2016.03.007
- 42. Scherner A., Melander B. & Kudsk P. (2016). Vertical distribution and composition of weed seeds within the plough layer after eleven years of contrasting crop rotation and tillage schemes. Soil and Tillage Research, 161, 135–142. https://doi.org/10.1016/j.still.2016.04.005
- 43. Tykhonova O., Skliar V., Sherstiuk M., Butenko A., Kyrylchuk K., Bashtovyi M. (2021). Analysis of Setaria glauca (L.) p. beauv. population’s vital parameters in grain agrophytocenoses. Environmental Research, Engineering and Management, 77(1), 36–46. https://doi.org/10.5755/j01.erem.77.1.25489
- 44. Voitovyk M., Butenko А., Prymak I., Mishchenko Yu., Tkachenko M., Tsiuk O., Panchenko O., Slieptsov Yu., Kopylova T., Havryliuk O. (2023). Influence of fertilizing and tillage systems on humus content of typical chernozem. Agraarteadus, 34(1), 44–50. https://doi.org/10.15159/jas.23.03
- 45. Voytovyk М., Butenko A., Prymak І., Tkachenko M., Mishchenko Y., Tsyuk О., Panchenko О., Kondratiuk I., Havryliuk O., Sleptsov Y. & Polyvanyi A. (2024). Mobile phosphorus presence of typical chernozems on fertiliser system. Rural Sustainability Research, 51(346), 58–65. https://doi.org/10.2478/plua-2024-0006
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f9128c08-3e4a-41e7-9ab2-145606a096e8
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