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Metabolic and Phenotypic Responses of Greenhouse-Grown Maize Hybrids to Experimentally Controlled Drought Stress

机译:温室玉米杂交种对实验控制干旱胁迫的代谢和表型响应

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摘要

Adaptation to abiotic stresses like drought is an important acquirement of agriculturally relevant crops like maize. Development of enhanced drought tolerance in crops grown in climatic zones where drought is a very dominant stress factor therefore plays an essential role in plant breeding. Previous studies demonstrated that corn yield potential and enhanced stress tolerance are associated traits. In this study, we analyzed six different maize hybrids for their ability to deal with drought stress in a greenhouse experiment. We were able to combine data from morphophysiological parameters measured under well-watered conditions and under water restriction with metabolic data from different organs. These different organs possessed distinct metabolite compositions, with the leaf blade displaying the most considerable metabolome changes following water deficiency. Whilst we could show a general increase in metabolite levels under drought stress, including changes in amino acids, sugars, sugar alcohols, and intermediates of the TCA cycle, these changes were not differential between maize hybrids that had previously been designated based on field trial data as either drought-tolerant or susceptible. The fact that data described here resulted from a greenhouse experiment with rather different growth conditions compared to natural ones in the field may explain why tolerance groups could not be confirmed in this study. We were, however, able to highlight several metabolites that displayed conserved responses to drought as well as metabolites whose levels correlated well with certain physiological traits.
机译:适应干旱等非生物胁迫是重要的农业相关作物(如玉米)的获得。在干旱是非常主要的胁迫因素的气候区生长的农作物中,增强干旱耐受性的发展因此在植物育种中起重要作用。先前的研究表明,玉米单产潜力和增强的胁迫耐受性是相关的性状。在这项研究中,我们在温室试验中分析了六种不同的玉米杂交种应对干旱胁迫的能力。我们能够将在充水条件下和缺水条件下测得的形态生理学参数数据与不同器官的代谢数据结合起来。这些不同的器官具有独特的代谢产物组成,叶片在缺水后显示出最重要的代谢组变化。虽然我们可以显示干旱胁迫下代谢物含量的总体增加,包括氨基酸,糖,糖醇和TCA循环中间体的变化,但这些变化与以前根据田间试验数据指定的玉米杂交种之间没有差异作为耐旱或易受害的。此处描述的数据来自温室实验,该实验与自然条件下的生长条件相比有很大差异,这可能解释了为什么在本研究中无法确定耐受性组的原因。然而,我们能够突出显示对干旱表现出保守反应的几种代谢物,以及其水平与某些生理性状密切相关的代谢物。

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  • 来源
    《Molecular Plant》 |2012年第2期|p.401-417|共17页
  • 作者

    Alisdair R. Fernie;

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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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