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Two Soybean Plant Introductions Display Slow Leaf Wilting and Reduced Yield Loss under Drought

机译:两个大豆植物介绍显示慢叶枯萎 干旱条件下减产减产

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摘要

Due to high costs of irrigation, limited availability of irrigation water in many locations and/or lack of irrigation capabilities, genetic improvement for drought tolerance is an effective method to reduce yield loss in soybean [Glycine max (L.) Merr.]. Slow wilting and minimal yield reduction under drought are important traits in evaluating drought tolerance. Two maturity group III soybean plant introductions (PIs, PI 567690 and PI 567731) and two elite cultivars (DKB38-52 and Pana) were evaluated with and without irrigation on a sandy soil. Drought was imposed by withholding irrigation at full bloom and continued until moderate wilting was shown by the fast leaf wilting in the check cultivar, Pana. Then, irrigation was resumed until maturity. Genotypes were scored for leaf wilting during the stress period, and yields were assessed at the end of the growing season and used to calculate a drought index. Yields of the exotic PIs were lower than those of the checks under both drought and well-watered conditions. However, the PIs exhibited significantly lower wilting and less yield loss under drought (higher drought index) than check cultivars. The two PIs may have useful genes to develop drought-tolerant germplasm and cultivars and maybe useful in genetic and physiological studies to decipher mechanisms responsible for improving yield under limited water availability
机译:由于高昂的灌溉成本,许多地方的灌溉用水有限和/或缺乏灌溉能力,抗旱性遗传改良是减少大豆产量损失的有效方法[Glycine max(L.)Merr。]。干旱条件下的枯萎缓慢和单产下降最小是评估耐旱性的重要特征。在砂土上进行灌溉和不进行灌溉的情况下,对两种成熟的第三组大豆植物(PI,PI 567690和PI 567731)和两种优良品种(DKB38-52和Pana)进行了评估。干旱是由于在盛开时不进行灌溉而造成的,并一直持续到直到帕纳(Pana)选育品种的快速枯萎表明中等程度的枯萎。然后,恢复灌溉直至成熟。对基因型在胁迫期间的枯萎进行评分,并在生长季节结束时评估其产量,并用于计算干旱指数。在干旱和水源充足的情况下,外来PI的产量均低于对照的产量。但是,与干旱品种相比,干旱条件下的表现出明显更低的萎lower率和更少的产量损失(较高的干旱指数)。这两个PI可能具有有用的基因来发展耐旱的种质和品种,并且可能在遗传和生理研究中有用以破译在有限的水供应下提高产量的机理

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