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Quantitative Variation in Water-Use Efficiency across Water Regimes and Its Relationship with Circadian, Vegetative, Reproductive,n and Leaf Gas-Exchange Traits

机译:不同水分利用方式下水分利用效率的定量变化及其与昼夜,营养,生殖,氮和叶片气体交换特征的关系

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摘要

Drought limits light harvesting, resulting in lower plant growth and reproduction. One trait important for plant drought response is water-use efficiency (WUE). We investigated (1) how the joint genetic architecture of WUE, reproductive characters, and vegetative traits changed across drought and well-watered conditions, (2) whether traits with distinct developmental bases (e.g. leaf gas exchange versus reproduction) differed in the environmental sensitivity of their genetic architecture, and (3) whether quantitative variation in circadian period was related to drought response in Brassica rapa. Overall, WUE increased in drought, primarily because stomatal conductance, and thus water loss, declined more than carbon fixation. Genotypes with the highest WUE in drought expressed the lowest WUE in well-watered conditions, and had the largest vegetative and floral organs in both treatments. Thus, large changes in WUE enabled some genotypes to approach vegetative and reproductive trait optima across environments. The genetic architecture differed for gas-exchange and vegetative traits across drought and well-watered conditions, but not for floral traits. Correlations between circadian and leaf gas-exchange traits were significant but did not vary across treatments, indicating that circadian period affects physiological function regardless of water availability. These results suggest that WUE is important for drought tolerance in Brassica rapa and that artificial selection for increased WUE in drought will not result in maladaptive expression of other traits that are correlated with WUE.
机译:干旱限制了采光,导致植物的生长和繁殖降低。对植物干旱响应重要的一个特征是水分利用效率(WUE)。我们研究了(1)在干旱和水源充足的条件下,WUE,生殖性状和营养性状的联合遗传结构如何变化;(2)具有不同发育基础的性状(例如,叶片气体交换与繁殖)在环境敏感性方面是否有所不同(3)昼夜节律时期的数量变化是否与甘蓝型油菜的干旱反应有关。总体而言,干旱的WUE有所增加,主要是因为气孔导度和水分流失的下降幅度大于固碳。在干旱条件下,水分利用效率最高的基因型在水分充足的条件下表达最低的水分利用效率,并且两种处理中的植物和花器官最大。因此,WUE的巨大变化使某些基因型能够在整个环境中达到最佳的营养和生殖性状。在干旱和水源充足的条件下,气体交换和营养性状的遗传结构不同,但花卉性状没有差异。昼夜节律与叶片气体交换性状之间的相关性很显着,但在不同处理之间没有变化,这表明昼夜节律会影响生理功能,而与水的可用性无关。这些结果表明,WUE对于甘蓝型油菜的耐旱性很重要,而人工选择以增加干旱中的WUE不会导致与WUE相关的其他性状的适应不良表达。

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  • 来源
    《Molecular Plant》 |2012年第3期|p.653-668|共16页
  • 作者

    Cynthia Weinig;

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    To whom correspondence should be addressed. E-mail;

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  • 正文语种 eng
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