首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Drought stress delays endosperm development and misregulates genes associated with cytoskeleton organization and grain quality proteins in developing wheat seeds
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Drought stress delays endosperm development and misregulates genes associated with cytoskeleton organization and grain quality proteins in developing wheat seeds

机译:干旱胁迫延缓了胚乳的发育,并调节了小麦种子中与细胞骨架组织和谷粒质量蛋白有关的基因

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摘要

Drought stress is a major yield-limiting factor for wheat. Wheat yields are particularly sensitive to drought stress during reproductive development. Early seed development stage is an important determinant of seed size, one of the yield components. We specifically examined the impact of drought stress imposed during postzygotic early seed development in wheat. We imposed a short-term drought stress on plants with day-old seeds and observed that even a short-duration drought stress significantly reduced the size of developing seeds as well as mature seeds. Drought stress delayed the developmental transition from syncytial to cellularized stage of endosperm. Coincident with reduced seed size and delayed endosperm development, a subset of genes associated with cytoskeleton organization was misregulated in developing seeds under drought-stressed. Several genes linked to hormone pathways were also differentially regulated in response to drought stress in early seeds. Notably, drought stress strongly repressed the expression of wheat storage protein genes such as gliadins, glutenins and avenins as early as 3 days after pollination. Our results provide new insights on how some of the early seed developmental events are impacted by water stress, and the underlying molecular pathways that can possibly impact both grain size and quality in wheat. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:干旱胁迫是小麦的主要产量限制因素。小麦产量对生殖发育期间的干旱胁迫特别敏感。种子的早期发育阶段是决定种子大小的重要决定因素,种子大小是产量的组成部分之一。我们专门研究了小麦合子后早期种子发育期间施加的干旱胁迫的影响。我们对具有日龄种子的植物施加了短期干旱胁迫,并观察到即使是短期干旱胁迫也显着减小了正在发育的种子和成熟种子的大小。干旱胁迫延迟了胚乳从合胞期到细胞化阶段的发育过渡。伴随着种子尺寸的减小和胚乳发育的延迟,干旱胁迫下发育中的种子中与细胞骨架组织相关的基因的一个子集被错误调节。响应早期种子的干旱胁迫,与激素途径相关的几个基因也受到差异调节。值得注意的是,干旱胁迫早在授粉后3天就强烈抑制了小麦贮藏蛋白基因(如麦醇溶蛋白,谷蛋白和阿文蛋白)的表达。我们的结果提供了有关水分胁迫如何影响种子早期发育事件的新见解,以及可能影响小麦籽粒大小和品质的潜在分子途径。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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