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The Productivity of Soybeans Depending on the Conditions of Moisture Supply to the Soil

Received: 22 June 2021    Accepted: 5 July 2021    Published: 13 July 2021
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Abstract

The connection of moisture content in the soil to the total productivity of plants has been established. Indicators of photosynthetic activity of soy crops were higher in years, with better moisture resistance. Fluctuations in the net productivity of photosynthesis over the years ranged from 5.3 (the driest year) to 7.0 g/m2 day (a moisturizing year). The average indicator of the net productivity of photosynthesis during the years of favorable moisturizing was 6.5 g/m2•day, in arid years it decreased by 10.8%. The photosynthetic potential of soybean crops on average for 5 drought years was at the level of 2.5 million m2 / day during the period of branching - flowering, then it was reduced by 16%, which was a direct effect of lack of moisture in the soil. During the years of favorable soil moisture, the photosynthetic potential was quite high and remained for a longer period within 2.7 million m2 / day. The total height of plants in dry years was lower and amounted to 74.5% of sufficiently wet years. On average, 18.1 beans were formed on one plant in arid conditions, this indicator was - 29.0 beans with favorable moisture, which was higher by 60.2% compared to previous indicators. Losses from the fall of generative organs during the growing season were significant in dry years - 81.9, favorable for moisture - 78.0%. In conditions of sufficient moisture, the number of beans with three seeds was increased.

Published in American Journal of Agriculture and Forestry (Volume 9, Issue 4)
DOI 10.11648/j.ajaf.20210904.17
Page(s) 211-218
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Soybean, Soil Moisture, Photosynthetic Activity, Productivity

References
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[2] Rozhkov A. O., Karpuk L. M., Mikheeva O. O. et al (2020) The yield of soybean varieties depending on the combination of different sowing methods and seeding rates in the Eastern Forest-Steppe of Ukraine. EuroAsian Journal of BioSciences, 14 (1), 2049–2060.
[3] Grigorchuk N. F., Jakubenko O. V. (2013) Creation of varieties of early ripening soy. Science-technical bulletin Institute of oilseeds NAAN, 19, 43–48.
[4] Shevnikov M. (2019) Scientific basis of the development of the basic elements in the technology of soybean sowing in the conditions of forest-steppe of Ukraine. – Current state, challenges and prospects for research in natural sciences: Collective monograph. – Liha-Press, 192-216.
[5] Lotysh I. (2017) The formation of the leaf surface area of soybean crops depending on the sort, method of sowing and sowing rate in conditions of insufficient moisture of the Forest-Steppe. Bulletin of the Poltava State Agrarian Academy. № 1–2, 167–171.
[6] Shevnikov, M. Ya., Milenko, O. H., & Lotysh, I. I. (2018). The productivity of soy sorts depending on elements of growing technology. Bulletin of Poltava State Agrarian Academy, (3), 15–21. doi: 10.31210/visnyk2018.03.02.
[7] Petrychenko V. F., Drobitko O. M. (2009) The improvement of the model of soybean growing technology for seeds in the conditions of the south-western steppe of Ukraine. Feed and feed production, 64, 3–9.
[8] Briguglio М. (2014) Variability in kunitz trypsin inhibitor contents and activity in Argentinian soybean cultivars. Developing Global Soy Blueprint for a Safe Secure and Sustainable Supply: VIII World Soybean conference research, August 10–15, Beijng, China.
[9] Ogurtsov E. M. (2016) Adaptive technology of soybean cultivation in the Eastern Forest-Steppe of Ukraine monograph, Kharkiv, p. 272.
[10] Shevnikov M. Ya. (2018). World agrotechnology textbook / M. Ya. Shevnikov // 2nd edition, revised and supplemented. Poltava, p. 238.
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[12] Nagorny V. I. (2007). The influence of agroclimatic conditions on the potential of early-ripening and early-ripening soybean varieties / V. I. Nagorny, Yu. O. Romanko // Bulletin of Sumy National Agrarian University. Series \"Agronomy and Biology\", № 10 – 11, 57-61.
[13] Tkalich I. D. (2007). The influence of sowing methods and sowing norms on growth, development and yield of soybeans / I. D. Tkalich // Bull. Institute of Grain Management, № 30, 60 - 63.
[14] Babych A. A. (1996). World land, food and fodder resources / Anatoliy Oleksandrovych Babych/ Agrarian science, p. 200.
[15] Kaminsky V. F. (2006). Complex influence of intensification factors on soybean crop formation in northern Forest-steppe / V. F. Kaminsky // Bulletin of Agrarian Science, № 9, 36–42.
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    Shevnikov Mykola, Milenko Olha, Lotysh Ihor, Shevnikov Dmytro, Shovkova Oksana. (2021). The Productivity of Soybeans Depending on the Conditions of Moisture Supply to the Soil. American Journal of Agriculture and Forestry, 9(4), 211-218. https://doi.org/10.11648/j.ajaf.20210904.17

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    ACS Style

    Shevnikov Mykola; Milenko Olha; Lotysh Ihor; Shevnikov Dmytro; Shovkova Oksana. The Productivity of Soybeans Depending on the Conditions of Moisture Supply to the Soil. Am. J. Agric. For. 2021, 9(4), 211-218. doi: 10.11648/j.ajaf.20210904.17

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    AMA Style

    Shevnikov Mykola, Milenko Olha, Lotysh Ihor, Shevnikov Dmytro, Shovkova Oksana. The Productivity of Soybeans Depending on the Conditions of Moisture Supply to the Soil. Am J Agric For. 2021;9(4):211-218. doi: 10.11648/j.ajaf.20210904.17

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  • @article{10.11648/j.ajaf.20210904.17,
      author = {Shevnikov Mykola and Milenko Olha and Lotysh Ihor and Shevnikov Dmytro and Shovkova Oksana},
      title = {The Productivity of Soybeans Depending on the Conditions of Moisture Supply to the Soil},
      journal = {American Journal of Agriculture and Forestry},
      volume = {9},
      number = {4},
      pages = {211-218},
      doi = {10.11648/j.ajaf.20210904.17},
      url = {https://doi.org/10.11648/j.ajaf.20210904.17},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ajaf.20210904.17},
      abstract = {The connection of moisture content in the soil to the total productivity of plants has been established. Indicators of photosynthetic activity of soy crops were higher in years, with better moisture resistance. Fluctuations in the net productivity of photosynthesis over the years ranged from 5.3 (the driest year) to 7.0 g/m2 day (a moisturizing year). The average indicator of the net productivity of photosynthesis during the years of favorable moisturizing was 6.5 g/m2•day, in arid years it decreased by 10.8%. The photosynthetic potential of soybean crops on average for 5 drought years was at the level of 2.5 million m2 / day during the period of branching - flowering, then it was reduced by 16%, which was a direct effect of lack of moisture in the soil. During the years of favorable soil moisture, the photosynthetic potential was quite high and remained for a longer period within 2.7 million m2 / day. The total height of plants in dry years was lower and amounted to 74.5% of sufficiently wet years. On average, 18.1 beans were formed on one plant in arid conditions, this indicator was - 29.0 beans with favorable moisture, which was higher by 60.2% compared to previous indicators. Losses from the fall of generative organs during the growing season were significant in dry years - 81.9, favorable for moisture - 78.0%. In conditions of sufficient moisture, the number of beans with three seeds was increased.},
     year = {2021}
    }
    

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  • TY  - JOUR
    T1  - The Productivity of Soybeans Depending on the Conditions of Moisture Supply to the Soil
    AU  - Shevnikov Mykola
    AU  - Milenko Olha
    AU  - Lotysh Ihor
    AU  - Shevnikov Dmytro
    AU  - Shovkova Oksana
    Y1  - 2021/07/13
    PY  - 2021
    N1  - https://doi.org/10.11648/j.ajaf.20210904.17
    DO  - 10.11648/j.ajaf.20210904.17
    T2  - American Journal of Agriculture and Forestry
    JF  - American Journal of Agriculture and Forestry
    JO  - American Journal of Agriculture and Forestry
    SP  - 211
    EP  - 218
    PB  - Science Publishing Group
    SN  - 2330-8591
    UR  - https://doi.org/10.11648/j.ajaf.20210904.17
    AB  - The connection of moisture content in the soil to the total productivity of plants has been established. Indicators of photosynthetic activity of soy crops were higher in years, with better moisture resistance. Fluctuations in the net productivity of photosynthesis over the years ranged from 5.3 (the driest year) to 7.0 g/m2 day (a moisturizing year). The average indicator of the net productivity of photosynthesis during the years of favorable moisturizing was 6.5 g/m2•day, in arid years it decreased by 10.8%. The photosynthetic potential of soybean crops on average for 5 drought years was at the level of 2.5 million m2 / day during the period of branching - flowering, then it was reduced by 16%, which was a direct effect of lack of moisture in the soil. During the years of favorable soil moisture, the photosynthetic potential was quite high and remained for a longer period within 2.7 million m2 / day. The total height of plants in dry years was lower and amounted to 74.5% of sufficiently wet years. On average, 18.1 beans were formed on one plant in arid conditions, this indicator was - 29.0 beans with favorable moisture, which was higher by 60.2% compared to previous indicators. Losses from the fall of generative organs during the growing season were significant in dry years - 81.9, favorable for moisture - 78.0%. In conditions of sufficient moisture, the number of beans with three seeds was increased.
    VL  - 9
    IS  - 4
    ER  - 

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Author Information
  • Faculty of Agrotechnology and Ecology, Department of Plant Breeding, Poltava State Agrarian Academy, Poltava, Ukraine

  • Faculty of Agrotechnology and Ecology, Department of Plant Breeding, Poltava State Agrarian Academy, Poltava, Ukraine

  • “Agrarian-economic Professional College Poltava State Agrarian University” Economic Department, Poltava State Agrarian Academy, Poltava, Ukraine

  • Faculty of Agrotechnology and Ecology, Department of Plant Breeding, Poltava State Agrarian Academy, Poltava, Ukraine

  • “Agrarian-economic Professional College Poltava State Agrarian University” Technological Department, Poltava State Agrarian Academy, Poltava, Ukraine

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