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Identification of Drought Tolerance Determinants by Genetic Analysis of Root Response to Drought Stress and Abscisic Acid1

机译:通过对干旱胁迫和脱落酸根系响应的遗传分析鉴定干旱耐受性决定因素1

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摘要

Drought stress is a common adverse environmental condition that seriously affects crop productivity worldwide. Due to the complexity of drought as a stress signal, deciphering drought tolerance mechanisms has remained a major challenge to plant biologists. To develop new approaches to study plant drought tolerance, we searched for phenotypes conferred by drought stress and identified the inhibition of lateral root development by drought stress as an adaptive response to the stress. This drought response is partly mediated by the phytohormone abscisic acid. Genetic screens using Arabidopsis (Arabidopsis thaliana) were devised, and drought inhibition of lateral root growth (dig) mutants with altered responses to drought or abscisic acid in lateral root development were isolated. Characterization of these dig mutants revealed that they also exhibit altered drought stress tolerance, indicating that this root response to drought stress is intimately linked to drought adaptation of the entire plant and can be used as a trait to access the elusive drought tolerance machinery. Our study also revealed that multiple mechanisms coexist and together contribute to whole-plant drought tolerance.
机译:干旱胁迫是一种常见的不利环境条件,会严重影响全球的农作物生产力。由于干旱作为胁迫信号的复杂性,解密干旱耐受机制仍然是植物生物学家的主要挑战。为了开发研究植物抗旱性的新方法,我们搜索了干旱胁迫赋予的表型,并确定了干旱胁迫对侧根发育的抑制作用是对胁迫的适应性反应。这种干旱反应部分是由植物激素脱落酸介导的。设计了使用拟南芥(Arabidopsis thaliana)进行的遗传筛选,并分离了对侧根生长(dig)突变体的干旱抑制,该突变体对侧根发育中对干旱或脱落酸的反应有所改变。这些dig突变体的特征表明,它们也表现出改变的干旱胁迫耐受性,表明这种对干旱胁迫的根响应与整个植物的干旱适应性密切相关,并且可以用作访问难以捉摸的干旱耐受性机制的特征。我们的研究还表明,多种机制共存并共同促进了整株植物的耐旱性。

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