Formation of Production Characters of Soya Genotypes [Glycine max (L.) Merr.] in the Areas of South-East Kazakhstan with Sufficient and Limited Water Supply

S. Didorenko, R. Yerzhebayeva, Dzuldyz Bakaevna Abildaeva, A. Amangeldiyeva
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Abstract

Moisture stress is a major environmental factor that limits the soy (Glycine max (L.) Merr.) yield worldwide. This study aimed to evaluate production characters of 98 varieties and collection samples of soy in the fields of the Almaty region of the Republic of Kazakhstan with and without irrigation. The experiment used a combination of features – weight of seeds from a plot, weight of 1,000 seeds, and seed plumpness – as the main markers for drought resistance assessment. Based on a comprehensive assessment of the working collection, soybean genotypes with high drought resistance were identified. These genotypes are useful genetic materials for soy breeding programs with the aim to increase yields and drought resistance. Varieties of the maturity group 00 can be cultivated in the Almaty region without irrigation, since these accessions avoid moisture stress by shortening the vegetation period. These samples can also be recommended for cultivation in non-irrigared areas of Eastern and Northern Kazakhstan. The highest productivity potential in the Almaty region was found in varieties of the maturity group II. However, their cultivation without irrigation will lead to a maximum decrease in yield.
大豆基因型生产性状的形成[甘氨酸max (L.)]稳定。在哈萨克斯坦东南部地区,水供应充足但有限
水分胁迫是制约大豆甘氨酸max (L.)含量的主要环境因素。(mr .)全球产量。本研究旨在评价哈萨克斯坦共和国阿拉木图地区98个大豆品种和收集样品在有无灌溉条件下的生产特性。该试验使用了多种特征的组合——一块地的种子重量、1000粒种子的重量和种子饱满度——作为抗旱性评估的主要标志。通过对工作材料的综合评价,鉴定出具有较高抗旱性的大豆基因型。这些基因型是大豆育种计划中有用的遗传材料,旨在提高产量和抗旱性。成熟度组00的品种可以在不灌溉的情况下在阿拉木图地区种植,因为这些品种通过缩短植被期来避免水分胁迫。这些样品也可推荐用于哈萨克斯坦东部和北部非灌溉区的种植。阿拉木图地区最高的生产力潜力是成熟度组II的品种。但是,不灌溉的栽培将导致产量的最大下降。
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