Formation and variability of test weight in winter bread wheat genotypes (Triticum aestivum L.) depending on the growing season conditions, preceding crops and sowing dates

O. Demydov, V. Hudzenko, Iryna Pravdziva, N. Vasylenko, О. Derhachov, О. Zaima
Abstract

The study aimed to identifying peculiarities of formation and variability of grain test weight in winter bread wheat genotypes depending on the growing season conditions, sowing dates and different preceding crops. The studies were conducted at The V.M. Remeslo Myronivka Institute of Wheat of the NAAS of Ukraine during 2016- 17–2018-19 growing seasons. There were estimated 17 winter bread wheat genotypes that were sown in three sowing dates after five preceding crops. Test weight was evaluated according to the State Standard 10840–64. Statistical processing was performed with using programs Statistica 8.0, Excel 2013. It was revealed the significant effect of growing season conditions on grain test weight in winter bread wheat varieties in environments of Ukrainian Forest-Steppe. Significant differences in responses of the genotypes under study on sowing date after different preceding crops were revealed. The most effect of sowing dates on test weight was established in the variety MIP Vidznaka, while the most effect of preceding crops was established in the varieties MIP Yuvileina, Podolianka, MIP Lada, and MIP Darunok. In general, maximal test weight was formed after green manure and the minimal one was after soybeans as preceding crop. The general tendency of decrease in grain test weight with shift in sowing dates from September 26 to October 16 after preceding crops green manure, mustard, sunflower, soybeans was revealed. The sowing date October 05 was optimal for the varieties MIP Valensiia, Estafeta myronivska, MIP Lada after green manure, for the varieties Podolianka, Trudivnytsia myronivska, Hratsiia myronivska, MIP Dniprianka, MIP Lada after mustard, for the varieties Podolianka, Trudivnytsia myronivska, Balada myronivska, Hratsiia myronivska, MIP Assol after sunflower, for the varieties Trudivnytsia myronivska, Estafeta myronivska after maize, for the varieties Podolianka, Trudivnytsia myronivska after soybeans. The varieties MIP Vyshyvanka, Trudivnytsia myronivska, Balada myronivska, Estafeta myronivska, MIP Dniprianka, MIP Vidznaka, and MIP Yuvileina were identified which exceeded significantly the standard variety Podolianka in test weight on average by years of the research, sowing dates, and preceding crops

Keywords

winter bread wheat, test weight, sowing date, preceding crops, ANOVA

Suggested citation
Demydov, O., Hudzenko, V., Pravdziva, I., Vasylenko, N., Derhachov, О., & Zaima, О. (2021). Formation and variability of test weight in winter bread wheat genotypes (Triticum aestivum L.) depending on the growing season conditions, preceding crops and sowing dates. Scientific Reports of the National University of Life and Environmental Sciences of Ukraine, 17(3),45-57. https://doi.org/10.31548/dopovidi2021.03.005
References
  1. Denčić, S., Mladenov, N., & Kobiljski, B. (2011). Effects of genotype and environment on breadmaking quality in wheat. International Journal of Plant Production, 5(1), 71-82. https://doi.org/10.22069/IJPP.2012.721.
  2. Ulianych, I.F. (2020). Grits properties of soft winter wheat grain depending on variety. Journal of Uman NUH, 96(1), 572-582. https://doi.org/10.31395/2415-8240-2020-96-1-572-582.
  3. Deivasigamani, S., & Swaminathan, C. (2018). Evaluation of seed test weight on major field crops. International Journal of Research Studies in Agricultural Sciences, 4(1), 8-11. https://doi.org/10.20431/2454-6224.0401001.
  4. Costa, R., Pinheiro, N., Almeida, A.S., Gomes, C., Coutinho, J., Coco, J., Costa, A., & Maçãs, B. (2013). Effect of sowing date and seeding rate on bread wheat yield and test weight under Mediterranean conditions. Emir. J. Food Agric, 25(12), 951-961. https://doi.org/10.9755/ejfa.v25i12.16731.
  5. Lychko, N.M. (2013). Standardization and confirmation of conformity of agricultural products. Textbook for universities. Moscow: DeLi plyus, 512.
  6. Valde´s, C.V., Estrada-Campuzano, G., Rueda, C.G.M., Lo´pez, A.D., Solis-Moya, E., & Carvaja, A.V. (2020). Grain and flour wheat quality modified by genotype, availability of nitrogen, and growing season. International Journal of Agronomy, 1-9. https://doi.org/10.1155/2020/1974083.
  7. Sobolewska, M., Wenda-Piesik, A., Jaroszewska, A., & Stankowski, S. (2020). Effect of habitat and foliar fertilization with K, Zn and Mn on winter wheat grain and baking qualities. Agronomy, 10(2), 276-297. https://doi.org/10.3390/agronomy10020276.
  8. Zavads'ka, O.V., & Baiba, T.A. (2019). Quality of grain wheat winter soft of the different varieties. Modern Engineering and Innovative Technologies, 2(07-02), 20-23. https://doi.org/10.30890/2567-5273.2019-07-02-026.
  9. Kulig, B., Lepiarczyk, A., Andrzej, O., & Kołodziejczyka, M. (2010). The effect of tillage system and forecrop on the yield and values of LAI and SPAD indices of spring wheat. European Journal of Agronomy, 33(1), 43-51. https://doi.org/10.1016/j.eja.2010.02.005.
  10. Prokopenko, O. (Ed.). (2020). Crop production of Ukraine 2019. Statistical yearbook. Kyiv: Derzhavna sluzhba statystyky Ukrainy, 183.
  11. Habibi, A., & Fazily, T. (2020). Effect of sowing dates on growth, yield attributes and yield of four wheat varieties. EPRA International Journal of Research and Development, 5(1), 56-59. https://doi.org/10.36713/epra3895.
  12. Gudzenko, V.N. (2019). Statistical and graphical (GGE biplot) evaluation of the adaptive ability and stability of winter barley breeding lines. Vavilov Journal of Genetics and Breeding, 23(1), 110-118. https://doi.org/10.18699/VJ19.469.
  13. Pravdziva, I.V., Demydov, O.A., Hudzenko, V.M., & Derhachov, O.L. (2020). Evaluation of yield and stability of bread winter wheat genotypes (Triticum aestivum L.) depending on predecessors and sowing dates. Plant Varieties Studying and Protection, 16(3), 291-302. https://doi.org/10.21498/2518-1017.16.3.2020.214923.
  14. Zhemela, H.P., & Shakaliy, S.M. (2012). Influence of precursors on grain yield and quality of soft winter wheat. Bulletin of Poltava State Agrarian Academy, 3, 20-22. https://doi.org/10.31210/visnyk2012.03.03.
  15. Siroshtan, A.A., & Kavunets', V.P. (Eds.). (2016). Technology of production of winter wheat seeds (Methodical recommendations). Kyiv: TOV TSP Komprynt, 92.
  16. Grain. Methods for determination of hectolitre weight: Interstate standard 10840-64. (2009). Moscow: Standartinform, 3.
  17. Parvej, M.R., Holshouser, D.L., Kratochvil, R.J., Whaley, C.M., Dunphy, E.J., Roth, G.W., & Faé, G.S. (2020). Early high‐moisture wheat harvest improves double‐crop system: I. Wheat yield and quality. Crop Science, 60(5), 2633-2649. https://doi.org/10.1002/csc2.20172.
  18. Twizerimana, A., Niyigaba, E., Mugenzi, I., Ngnadong, W.A., Li, Ch., Hao, T.Q., Shio, B.J., & Hai, J.B. (2020). The combined effect of different sowing methods and seed rates on the quality features and yield of winter wheat. Agriculture, 10(5), 153-173. https://doi.org/10.3390/agriculture10050153.
  19. Protopish, I.H. (2016). Assessment of correlation of quality factors of winter wheat. Bulletin of Agricultural Science, 94(3), 72-75. https://doi.org/10.31073/agrovisnyk201603-15.