PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Development of winter wheat productivity under the influence of biopreparations and different moisture conditions in the steppe zone

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article presents the results of research on the influence of moisture conditions and biopreparations on the productivity of plants of different biological characteristics of winter soft wheat varieties. The yield of winter wheat significantly depends on the genetic characteristics of the variety, moisture and nutrition conditions. Pre-sowing seed treatment and foliar fertilization of winter wheat with modern biological products increase grain yields and reduce the chemical load on agrocenoses, which is especially important in today’s market economy. The highest level of winter wheat yield under non-irrigated conditions in 2021–2023 on average was formed by the variety Duma Odeska (6.79 t/ha) in the variant with pre-sowing seed treatment with the biological product Azotophyt-r in combination with foliar fertilization with the biological product Helprost, while the lowest productivity was formed by the variety Ovid (5.63 t/ha) in the control variant (pre-sowing seed treatment with clean water without preparations). It has been established that to form a grain yield of 8.43 t/ha, it is necessary to grow a variety of soft winter wheat Duma Odeska under irrigation conditions, the seeds should be treated with the biological product Mycofriend in combination with the foliar application of the biological product Helprost before sowing. When grown under non-irrigated conditions, among the four winter wheat varieties studied, Ozerna cultivar showed the highest grain yield (6.31 t/ha). Under irrigation conditions, the highest grain yield (7.92 t/ha) was on average produced by Duma Odeska winter wheat. Thus, when grown under non-irrigated conditions, a higher yield of winter wheat grain (6.61 t/ha) was obtained by treating seeds with the biological product Azotophyt-r and foliar treatment of plants with the biological product Helprost. A higher grain yield (8.02 t/ha) under irrigation conditions, on average, was formed by winter wheat plants in the variant with pre-sowing seed treatment with the biological product Mycofriend and foliar feeding with the biological product Mycohelp
Twórcy
  • Mykolaiv National Agrarian University, Georgii Gongadze Str 9, 54020, Mykolaiv, Ukraine
  • Mykolaiv National Agrarian University, Georgii Gongadze Str 9, 54020, Mykolaiv, Ukraine
  • Plant Breeding and Genetics Institute, National Center of Seed and Cultivar Investigation, 3 Ovidiopolska Road, 65036, Odesa, Ukraine
autor
  • Kherson State Agrarian and Economic University, Stretenskaya St., 23, Kherson, 73006, Ukraine
Bibliografia
  • 1. Acutis, M., Scaglia, B., Confalonieri, R. (2012). Perfunctory analysis of variance in agronomy, and its consequences in experimental results interpretation. European Journal of Agronomy, 43, 129–135.
  • 2. AL-Rousan, N., AL-Najjar N.,H., AL-Najjar, D. (2024). The impact of Russo-Ukrainian war, COVID-19, and oil prices on global food security. Heliyon, 10, e29279. https://doi.org/10.1016/j.heliyon.2024.e29279
  • 3. Al-Mebayedh, H., Niu, A., Lin, C. (2023). Strategies for cost-effective remediation of widespread oil-contaminated soils in Kuwait, an environmental legacy of the first Gulf War. Journal of Environmental Management, 344, 118601.
  • 4. Arikan, B., Ozfidan-Konakci, C., Alp, F.N., Zengin, G., Yildiztugay, E. (2022). Rosmarinic acid and hesperidin regulate gas exchange, chlorophyll fluorescence, antioxidant system and the fatty acid biosynthesis-related gene expression in Arabidopsis thaliana under heat stress. Phytochemistry, 198, 113157.
  • 5. Blandino, M., Reyneri, A. (2009). Effect of fungicide and foliar fertilizer application to winter wheat at anthesis on flag leaf senescence, grain yield, flour bread-making quality and DON contamination. European Journal of Agronomy, 30(4), 275–282.
  • 6. Biyashev, B., Drobitko, A., Markova, N., Bondar, A., Pissmenniy, O. (2024). Chemical analysis of the state of Ukrainian soils in the combat zone. International Journal of Environmental Studies, 81(1), 199–207. https://doi.org/10.1080/00207233 .2023.2271754
  • 7. Domaratskiy, E., Zhuykov, O., Ivaniv, M. (2018). Influence of sowing periods and seeding rates on yield of grain sorghum hybrids under regional climatic transformations. Indian Journal of Ecology, 45(4), 785–789.
  • 8. Domaratskiy, Ye., Kozlova, O., Kaplina, A. (2020). Economic efficiency of applying environmentally friendly fertilizers in production technologies in the south of Ukraine. Indian Journal of Ecology, 47(3), 624–629.
  • 9. Domaratskyi, Ye., Kozlova, O., Domaratskyi, O., Lavrynenko, Iu., Bazaliy, V. (2020). Effect of nitrogen nutrition and environmentally friendly combined chemicals on productivity of winter rapeseed under global climate change. Indian Journal of Ecology, 47(2), 330–336.
  • 10. Esposito M. (2021). Drone and sensor technology for sustainable weed management: a review. Chemical and biological technologies in agriculture. Electron. Of science professional edition 8(1), 18. https://doi.org/10.1186/s40538-021-00217-8
  • 11. Gamayunova, V., Kovalenko, O., Smirnova, I., Korkhova, M. (2022). The formation of the productivity of winter wheat depends on the predecessor, doses of mineral fertilizers and bio preparations. Scientific Horizons, 25(6), 65–74. https://doi.org/10.48077/scihor.25(6).2022.65-74
  • 12. Korkhova, M., Panfilova, A., Domaratskiy, Ye., Smirnova, I. (2023). Productivity of winter wheat (T. aestivum, T. durum, T. spelta) depending on varietal characteristics in the context of climate change. Ecological Engineering & Environmental Technology, 24(4), 236–244.
  • 13. Korkhova, M., Smirnova, I., Panfilova, A., Bilichenko, O. (2023). Productivity of winter wheat depending on varietal characteristics and pre-sowing treatment of seeds with biological products. Scientific Horizons, 26(5), 65–75. https://doi.org/10.48077/scihor5.2023.65
  • 14. Lamichhane, J.R., Corrales, D.C., Soltani, E. (2022). Biological seed treatments promote crop establishment and yield: a global meta-analysis. Agronomy for Sustainable Development, 42(45), 2–24. https://doi.org/10.1007/s13593-022-00761-z
  • 15. Lin, F., Li, X., Jia, N., Feng, F., Huang, H., Huang, J., Fan, Sh., Ciais, Ph., Song, X.P. (2023). The impact of Russia-Ukraine conflict on global food security. Global Food Security, 36, 100661.
  • 16. Makarova, T., Domaratskiy, Ye., Hapich, G., Kozlova, O. (2021). Agromeliorative efficiency of phosphogypsum application on irrigation saline soils in the Northern Steppe of Ukraine. Indian Journal of Ecology, 48(3), 789–795.
  • 17. Macholdt, J., Hadasch, S., Piepho, H.-P., Reckling, M., Taghizadeh-Toosi, A., Christensen, B.T. (2021). Yield variability trends of winter wheat and spring barley grown during 1932–2019 in the Askov Long-term Experiment. Field Crops Research, 264, 108083.
  • 18. Panfilova, A., Korkhova, M., Markova, N. (2023). Influence of biologics on the productivity of winter wheat varieties under irrigation conditions. Notulae Scientia Biologicae, 15(2), 11352–11352.
  • 19. Pichura, V., Potravka, L., Domaratskiy, Y., Drobitko, A. (2024). Water balance of winter wheat following different precursors on the Ukrainian steppe. International Journal of Environmental Studies. https://doi.org/10.1080/00207233.2024.2314891
  • 20. Rasool, S., Rasool, T., Gani, K. M. (2022). A review of interactions of pesticides within various interfaces of intrinsic and organic residue amended soil environment. Chemical Engineering Journal Advances, 11. https://doi.org/10.1016/j.ceja.2022.100301
  • 21. Solokha, M., Pereira, P., Symochko, L..,Vynokurova, N., Demyanyuk, O., Sementsova, K., Inacio, M., Barcelo, D. (2023). Russian-Ukrainian war impacts on the environment. Evidence from the field on soil properties and remote sensing. Science of The Total Environment, 902(1), 166122.
  • 22. Voloschuk O., Voloschuk I., Stasiv O., et al. (2021). Regulation of winter wheat productivity. Ukrainian Journal of Ecology, 11(9), 127–130.
  • 23. Ushkarenko V.O. and Vozhegova R.A. (2020). Methodology of the field experiment. Oldie+: Odesa. Ukraine. 448.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-235dabc0-969c-444c-a663-de2c331da4f7
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.