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首页> 外文期刊>Journal of Plant Growth Regulation >Comparison of the drought stress responses of tolerant and sensitive wheat cultivars during grain filling: changes in flag leaf photosynthetic activity, ABA levels, and grain yield.
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Comparison of the drought stress responses of tolerant and sensitive wheat cultivars during grain filling: changes in flag leaf photosynthetic activity, ABA levels, and grain yield.

机译:粒填充过程中耐受性和敏感小麦品种的干旱应激反应的比较:旗叶光合活性,ABA水平和籽粒产量的变化。

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摘要

Water status parameters, flag leaf photosynthetic activity, abscisic acid (ABA) levels, grain yield, and storage protein contents were investigated in two drought-tolerant (Triticum aestivum L. cv. MV Emese and cv. Plainsman V) and two drought-sensitive (cvs. GK Elet and Cappelle Desprez) wheat genotypes subjected to soil water deficit during grain filling to characterize physiological traits related to yield. The leaf water potential decreased earlier and at a higher rate in the sensitive than in the tolerant cultivars. The net CO2 assimilation rate (PN) in flag leaves during water deficit did not display a strict correlation with the drought sensitivity of the genotypes. The photosynthetic activity terminated earliest in the tolerant cv. Emese, and the senescence of flag leaves lasted 7 days longer in the sensitive Cappelle Desprez. Soil drought did not induce characteristic differences between sensitive and tolerant cultivars in chlorophyll a fluorescence parameters of flag leaves during post-anthesis. Changes in the effective quantum yield of PSII ( PhiPSII) and the photochemical quenching (qP) depended on the genotypes and not on the sensitivity of cultivars. In contrast, the levels of ABA in the kernels displayed typical fluctuations in the tolerant and in the sensitive cultivars. Tolerant genotypes exhibited an early maximum in the grain ABA content during drought and the sensitive cultivars maintained high ABA levels in the later stages of grain filling. In contrast with other genotypes, the grain number per ear did not decrease in Plainsman and the gliadin/glutenin ratio was higher than in the control in Emese during drought stress. A possible causal relationship between high ABA levels in the kernels during late stages of grain filling and a decreased grain yield was found in the sensitive cultivars during drought stress
机译:水位参数,标志叶片光合活性,脱落酸(ABA)水平,籽粒产量和储存蛋白质含量在两个耐旱(Triticum aestivum L.CV.MV Emese和CV.Plainsman V)和两个干旱敏感(CVS。GK ELET和CAPTLE DESPREZ)小麦基因型在籽粒填充过程中进行土壤水分缺陷,以表征与产量相关的生理性状。叶片水电位早期降低,比在耐受品种中的敏感率更高。在水赤字期间旗叶中的净二氧化碳同化率(Pn)与基因型的干旱敏感性没有表现出严格的相关性。在耐受性CV中最早终止的光合活性。 Emese,旗杆的衰老持续了7天,敏感的Cappelle desprez持续了7天。土壤干旱在波纹叶片叶片叶片叶绿素叶片中的敏感和耐受品种之间的特征差异诱导。 PSII(PHIPSII)有效量子产率的变化和光化学淬火(QP)依赖于基因型而不是品种的敏感性。相反,核中的ABA水平显示在耐受性和敏感品种中的典型波动。耐受性基因型在干旱期间表现出谷物ABA含量的最大值,并且敏感品种在谷物填充的后期保持高ABA水平。与其他基因型相比,平原谷物每只耳的谷物数量没有减少,胶林蛋白/谷蛋白的比率高于在干旱胁迫期间在Emese中的对照中的对照。在干旱胁迫期间发现谷物填充后期粒度和谷物产量下降期间核中的高ABA水平之间的可能因果关系

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