PECULIARITIES OF THE GROWTH AND DEVELOPMENT OF SOY PLANTS DEPENDING ON ELEMENTS OF GROWING TECHNOLOGY
DOI:
https://doi.org/10.32636/agroscience.2023-(2)-4-2Keywords:
plant height, leaf area, nodule bacteria, biological preparations, photosynthesisAbstract
The inoculation of seeds with preparation Rizolain, the combination of inoculation with the bioprotector Rizoseiv, and the spraying of crops with Organic Balance had a significant effect on the height of the plants before harvesting. A significant increase in the area of the leaf surface was due to the factors – spraying of crops with the preparation Organic Balance, seed inoculation with a strain of nodule bacteria in combination with seed treatment with the preparation Rizoseiv, which is a bioprotector. The largest number of nodules on a soybean plant was noted for the inoculation of Rizolain seeds in combination with the bioprotector Rizoseiv on the background of spraying crops with Organic Balance – respectively 78 pcs./plant.
The raw mass of active nodules on average in 2021-2022 compared to the control without inoculation and spraying of crops varied according to the experiment options. Thanks to the inoculation of seeds with the drug Rizolain, the number of active nodules and their raw weight increased. The raw mass of nodules increased after inoculation of seeds with the drug Rizolain in combination with the use of the bioprotector Rizoseiv for the treatment of seed material and spraying of crops with the drug Organic Balance and amounted to 8.0 g per 1 plant in soybeans of the Madison variety. Inoculation of soybean seeds also had a significant effect on photosynthetic productivity. The largest area of the leaf surface of the soybean variety was formed in the seed filling phase in the variant with seed inoculation with the drug Rizolain with the simultaneous use of the drug Rizoseiv and spraying of crops with Organic balance – 53.7 thousand m2/ha, in the control it was 49.2 thousand m2/ha
References
Boyko P., Litvinov D., Demidenko O., Blashchuk M., Rasevich V. (2019). Prediction humus level of black soils of forest-steppe Ukraine depending on the application of crop rotation, fertilization and tillage. International Journal of Ecosystems and Ecology Science, 9 (1), 155-162.
Butenko, A., Litvinov, D., Borys, N., Litvinova, O., Masyk, I., Onychko, V., Khomenko, L., Terokhina, N., Kharchenko, S. (2020). The typicality of hydrothermal conditions of the forest steppe and their influence on the productivity of crops. Journal of Environmental Research, Engineering and Management, 76(3), 84-95. DOI: 10.5755/j01.erem.76.3.25365.
Demyanyuk, O., Symochko, L., Hosam, E. A., Hamuda, B., Symochko, V., & Dmitrenko, O. (2019). Сarbon pool and biological activities of soils in different ecosystems. International Journal of Ecosystems and Ecology Sciences, 9(1), 22-27. DOI: 10.31407/ijees9122.
Didur, I. M., Tsyhanskyi, V. I., Tsyhanska, O. I., Malynka, L. V., Butenko, A. O., Klochkova, T. I. (2019). The effect of fertilizer system on soybean productivity in the conditions of right bank forest-steppe. Ukrainian Journal of Ecology, 9(1), 76-80.
Didur, I. M., Tsyhanskyi, V. I., Tsyhanska, O. I., Malynka, L. V., Butenko, A. O., Masik, I. M., Klochkova, T. I. (2019). Effect of the cultivation technology elements on the activation of plant microbe symbiosis and the nitrogen transformation processes in alfalfa agrocoenoses. Modern Phytomorphology, 13, 30-34. DOI: 10.5281/zenodo.190107.
Gorodiska I., Plaksyuk L., Gorodiska I., Chub A. (2018). Award for biopreparations for the minds of organic production of soy. Bulletin of Agrarian Science, 9, 73-78. DOI: 10.31073/agrovisnyk201809-11.
Kots, S. Ya. (2021). Biological fixation of nitrogen: achievements and prospects for development. Physiology of plants and genetics, 53(2), 128-159. DOI: 10.15407/frg2021.02.128.
Kots, S. Ya., Kyrychenko O. V., Pavlyshchenko A. V., Yakymchuk R. A. (2021). Formation of soybean productivity by early treatment of seeds with fungicides Standak Top and Fever and inoculation with rhizobias on the day of sowing. Agricultural Microbiology, 34, 29-43. DOI: 10.35868/1997-3004.34.29-43
Litvinova, O., Dehodiuk, S., Litvinov, D., Symochko, L., Zhukova, Ya., Kyrylchuk, A. (2021). The impact of agrochemical loading on nutritive regime of gray forest soil during field crop rotation. International Journal of Ecosystems and Ecology Science, 11(4), 831-836. DOI: 10.31407/ijees11.421.
Litvinova, O., Litvinov, D., Romanova, S., Kovalyova, S. (2019). Soil biological activity under the human-induced impact in the farmed ecosystem. International Journal of Ecosystems and Ecology Science, 9(3), 529-536. DOI: 10.31407/ijees9316.
Mazur, V., Didur, I., Tkachuk, O., Pantsyreva, H., & Ovcharuk, V. (2021). Agroecological stability of cultivars of sparsely distributed legumes in the context of climate change. Scientific Horizons, 24(1), 54-60. DOI: 10.48077/scihor.24(1).2021.54-60.
Mazur, V., Tkachuk, O., Pantsyreva, H., & Demchuk, O. (2021). Quality of pea seeds and agroecological condition of soil when using structured water. Scientific Horizons, 24(7), 53-60.
Mazur, V. A., Mazur, K. V., Pantsyreva, H. V., Alekseev O. O. (2018). Ecological and economic evaluation of varietal resources Lupinus albus L. in Ukraine. Ukrainian Journal of Ecology, 8(4), 148-153.
Onufran, L. I., & Netis, V. I. (2017). Absorption and use of solar energy by soybean crops under different growing conditions. Bulletin of Agrarian Science of the Black Sea Coast, 2(94), 107-116.
Pantsyreva, H. V., Didur, I. M., & Telekalo, N. V. (2020). Agroecological rationale of technological methods of growing legumes. The Scientific Heritage, 52, 3-7.
Petrichenko, V. F., Kobak, S. Y., & Chorna, V. M. (2017). Influence of inoculation and morphology of the regulator on the peculiarities of soybean plant growth in the Forest-Steppe. Bulletin of Agricultural Science, 11, 29-34.
Polishchuk, I. S., Polishchuk, M. I., Mazur, O. V., & Yurchenko, N. A. (2018). Field germination of soybean seeds depending on sowing dates according to soil temperature. Agriculture and Forestry, 11, 36-43.
Posypanov, H. S. (1991). Methods of studying the biological fixation of nitrogen in the air. Moscow: Agropomizdat.
Symochko, L. (2020). Soil microbiome: Diversity, activity, functional and structural successions. International Journal of Ecosystems and Ecology Sciences, 10(2), 277-284. DOI: 10.31407/ijees10.206.
Tanchyk, S., Litvinov, D., Butenko, A., Litvinova, O., Pavlov, O., Babenko, A., Shpyrka, N., Onychko, V., Masyk, I., & Onychko, T. (2021). Fixed nitrogen in agriculture and its role in agrocenoses. Agronomy Research, 19(2), 601-611. DOI: 10.15159/AR.21.086.
Tkachuk, O., Telekalo, N. (2020). Agroecological potential of legumes in conditions of intensive agriculture of Ukraine collective monograph (рр. 91-108). Riga: Baltija Publishing.
Tsyhanskyi, V. I. (2021). Optimization of the soybean fertilization system based on the use of preparations of biological origin in the conditions of the Forest-Steppe of the Right Bank. Agriculture and Forestry, 2(21), 69-80. DOI: 10.37128/2707-5826-2021-2-6.
Ushkarenko V. O., Vozhehova R. A., Holoborodko S.P., Kokovikhin S.V. (2013). Statistical analysis of field experiment results in farming. Kherson.
Vyshnivskyi, P. S., & Furman, O. V. (2020). Productivity of soybeans depending on the elements of cultivation technology in the conditions of the Right-Bank Forest-Steppe of Ukraine. Horticulture and Soil Science. 11(1), 13-22. DOI: 10.31548/agr2020.01.013.
Zabolotnyi, H. M., Mazur, V. A., Tsyhanska, O. I., Didur, I. M., Tsyhanskyi, V. I., & Pantsyreva, H. V. (2020). Agrobiological bases of soybean cultivation and ways of maximum realization of its productivity. Vinnitsa: Individual entrepreneur Dmytro Korzun
Downloads
Published
Issue
Section
License
Copyright (c) 2023 Olena TSYHANSKА (Author)

This work is licensed under a Creative Commons Attribution 4.0 International License.
