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首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Long-term field drought affects leaf protein pattern and chloroplast ultrastructure of winter wheat in a cultivar-specific manner.
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Long-term field drought affects leaf protein pattern and chloroplast ultrastructure of winter wheat in a cultivar-specific manner.

机译:长期田间干旱以特定品种影响冬小麦叶片蛋白质模式和叶绿体超微结构。

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摘要

Recurrent drought periods of varying duration often cause extensive crop damage and affect wheat production in Southern Europe. This study compares biochemical and ultrastructural responses of four wheat (Triticum aestivum L.) cultivars to long-term field drought, and their contribution to final grain yield. Gel electrophoresis and immunoblotting analyses combined with transmission electron microscopy and grain yield evaluation were employed to assess drought susceptibility of the wheat cultivars. Two of them behaved as drought-tolerant, the other two presented as drought sensitive. Enhanced degradation of Rubisco large subunit (RLS), Rubisco small subunit (RSS) and Rubisco activase (RA) accompanied by an increased protease activity and reduced levels of heat shock proteins (HSP70) and dehydrins (DHNs) were associated with drought sensitivity. Drought tolerance coincided with relatively stable or increased HSP70 and DHN contents, and unchanged/higher levels of RLS, RSS and RA. Sensitive cultivars were more vulnerable to ultrastructural damages, showing obvious degradation of chloroplast membrane systems and depletion of leaf starch reserves. These drought responses affected yield potential, as tolerant cultivars gave higher yield under intense drought. Thus, our results provide additional insights into the complexity of plant drought responses, identifying multiple interacting traits that may serve as indirect selection criteria for wheat drought tolerance.
机译:持续时间长短不一的经常干旱通常会严重破坏作物并影响南欧的小麦生产。这项研究比较了四个小麦品种( Triticum aestivum L.)对长期田间干旱的生化和超微结构响应,以及它们对最终谷物产量的贡献。凝胶电泳和免疫印迹分析结合透射电子显微镜和谷物产量评估被用来评估小麦品种的干旱敏感性。其中两个表现出耐旱性,另外两个表现出对干旱敏感。 Rubisco大亚基(RLS),Rubisco小亚基(RSS)和Rubisco活化酶(RA)的降解增强,伴随着蛋白酶活性的提高和热休克蛋白(HSP70)和脱水素(DHNs)含量的降低与干旱敏感性相关。耐旱性与相对稳定或增加的HSP70和DHN含量,以及RLS,RSS和RA的水平不变/较高相吻合。敏感的品种更容易受到超微结构的破坏,显示出叶绿体膜系统明显降解和叶片淀粉储备的枯竭。这些干旱反应影响了单产潜力,因为在干旱条件下耐性品种的单产较高。因此,我们的结果为植物干旱响应的复杂性提供了更多的见解,确定了多种相互作用的性状,这些性状可以作为小麦耐旱性的间接选择标准。

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