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Research Article

Water balance of winter wheat following different precursors on the Ukrainian steppe

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References

  • Breus, D.S. and Skok, S.V., 2021, Spatial modelling of agro-ecological condition of soils in steppe zone of Ukraine. Indian Journal of Ecology 48(3), 627–633.
  • Breus, D.S. and Yevtushenko, O., 2023, Agroecological assessment of suitability of the steppe soils of Ukraine for ecological farming. Journal of Ecological Engineering 24(5), 229–236. doi: 10.12911/22998993/161761
  • Dudiak, N.V., Pichura, V.I., Potravka, L.A. and Stratichuk, N., 2021, Environmental and economic effects of water and deflation destruction of steppe soil in Ukraine. Journal of Water and Land Development 50, 10–26. doi: 10.24425/jwld.2021.138156
  • Pichura, V.I., Potravka, L.A., Dudiak, N.V. and Vdovenko, N., 2021, Space-time modeling of climate change and bioclimatic potential of steppe soils. Indian Journal of Ecology 48(3), 671–680.
  • Hufnagel, J., Reckling, M. and Ewert, F., 2020, Diverse approaches to crop diversification in agricultural research. Agronomy for Sustainable Development 40(2), 14. doi: 10.1007/s13593-020-00617-4
  • Sehgal, A., Singh, G., Quintana, N., Kaur, G., Ebelhar, W., Nelson, K.A. and Dhillon, J., 2023, Long-term crop rotation affects crop yield and economic returns in humid subtropical climate. Field Crops Research 298, 108952. doi: 10.1016/j.fcr.2023.108952
  • Boincean, B.P. and Dent, D.L., 2019, Farming the black earth: Sustainable and climate-smart management of chernozem soils (Cham: Springer Nature Switzerland), pp. 89–124, 156–160.
  • Li, J.X., Huang, L.D., Zhang, J., Coulter, J.A., Li, L. and Gan, Y., 2019, Diversifying crop rotation improves system robustness. Agronomy for Sustainable Development 39(4), 39. doi: 10.1007/s13593-019-0584-0
  • Columella, L.I.M., 1941, 4-70, On agriculture, Translated by Harrison Boyd Ash (Cambridge MA: Harvard University Press), pp. 2.7.1.
  • Sanford, G.R., Jackson, R.D., Booth, E.G. Hedtcke, J.L. and Picasso, V., 2021, Perenniality and diversity drive output stability and resilience in a 26-year cropping systems experiment. Field Crops Research 263, 108071. doi: 10.1016/j.fcr.2021.108071
  • Reckling, M., Bergkvist, G., Watson, C.A., Stoddard, F.L., Zander, P.M., Walker, R.L., Pristeri, A., Toncea, I. and Bachinger, J., 2016, Trade-offs between economic and environmental impacts of introducing legumes into cropping systems. Frontiers in Plant Science 7, 669. doi: 10.3389/fpls.2016.00669
  • Bennett, A.J., Bending, G.D., Chandler, D., Hilton, S. and Mills, P., 2012, Meeting the demand for crop production: The challenge of yield decline in crops grown in short rotations. Biological Reviews 87(1), 52–71. doi: 10.1111/j.1469-185X.2011.00184.x
  • Deans, R.M., Brodribb, T.J., Busch, F.A. and Farquhar, G.D., 2020, Optimization can provide the fundamental link between leaf photosynthesis, gas exchange and water relations. Nature Plants 6(9), 1116–1125. doi: 10.1038/s41477-020-00760-6
  • Reichstein, M., Bahn, M. and Mahecha, M.D., Kattge, J. and Baldocchi, D.D., 2014, Linking plant and ecosystem functional biogeography. Proceedings of the National Academy of Science, USA 111: 13697–13702.
  • Anderegg, L.D.L., Berner, L.T., Badgley, G., Sethi, M.L., Law, B.E. and HilleRislambers, J., 2018, Within-species patterns challenge our understanding of the leaf economics spectrum. Ecology Letters 21(5), 734–744. doi: 10.1111/ele.12945
  • Pichura, V., Domaratskiy, Y., Potravka, L.A., Biloshkurenko, O. and Dobrovol’skiy, A., 2023, Application of the research on spatio-temporal differentiation of a vegetation index in evaluating sunflower hybrid plasticity and growth-regulators in the steppe zone of Ukraine. Journal of Ecological Engineering 24(6), 144–165. doi: 10.12911/22998993/162782
  • Wang, Z., Huang, H., Wang, H., Peñuelas, J., Sardans, J., Niinemets, Ü., Niklas, K.J., Li, Y., Xie, J. and Wright, I.J., 2022, Leaf water content contributes to global leaf trait relationships. Nature Communications 13(1), 5525. doi: 10.1038/s41467-022-32784-1
  • Dudiak, N.V., Potravka, L.A. and Stroganov, A.A., 2019, Soil and climatic bonitation of agricultural lands of the steppe zone of Ukraine. Indian Journal of Ecology 46(3), 534–540.
  • Pichura, V., Potravka, L.A., Vdovenko, N., Biloshkurenko, O., Stratichuk, N. and Baysha, K., 2022, Changes in climate and bioclimatic potential in the steppe zone of Ukraine. Journal of Ecological Engineering 23(12), 189–202. doi: 10.12911/22998993/154844
  • Meier, V., (Ed.), 2001, Growth stages of mono- and dicotyledenous plants. source BBCH monograph (Braunschweig: Federal Biological Research Centre for Agriculture and Forestry).
  • Taloor, A.K., Manhas, D.S. and Kothyari, G.C., 2021, Retrieval of land surface temperature, normalized difference moisture index, normalized difference water index of the ravi basin using landsat data. Applied Computing and Geosciences 9, 100051. doi: 10.1016/j.acags.2020.100051
  • Medida, S.K., Rani, P.P., Kumar, G.V.S., Geetha Sireesha, P.V., Kranthi, K.C., Vinusha, V., Sneha, L., Naik, B.S.S.S., Pramanick, B., Brestic, M., Gaber, A. and Hossain, A., 2023, Detection of water deficit conditions in different soils by comparative analysis of standard precipitation index and normalized difference vegetation index. Heliyon 9(4), e15093. doi: 10.1016/j.heliyon.2023.e15093
  • Yengoh, G.T., Dent, D.L. and Olsson, L., Tengberg, A.E. and Tucker III, C.J., 2015, Use of normalized difference vegetation index (NDVI) to assess land degradation at multiple scales: Current status, future trends and practical considerations. Springer briefs in environmental science (Cham: Springer International).
  • Beyer, M., Ahmad, R., Yang, B. and Rodríguez-Bocca, P., 2023, Deep spatial-temporal graph modeling for efficient NDVI forecasting. Smart Agricultural Technology 4, 100172. doi: 10.1016/j.atech.2023.100172
  • Chen, C.-S., Noorizadegan, A., Young, D.L. and Chen, C.S., 2023, On the selection of a better radial basis function and its shape parameter in interpolation problems. Applied Mathematics and Computation 442, 127713. doi: 10.1016/j.amc.2022.127713
  • Pichura, V., Potravka, L.A., Stratichuk, N. and Drobitko, A., 2023, Space-time modeling steppe soil fertility using geo-information systems and neuro-technologies. Bulgarian Journal of Agricultural Science 29(1), 182–197.

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