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首页> 外文期刊>Plant, Cell & Environment >Water potential regulation, stomatal behaviour and hydraulic transport under drought: deconstructing the iso/anisohydric concept
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Water potential regulation, stomatal behaviour and hydraulic transport under drought: deconstructing the iso/anisohydric concept

机译:干旱下的水势调节,气孔行为和液压运输:解构ISO / aniso中的概念

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In this review, we address the relationship between stomatal behaviour, water potential regulation and hydraulic transport in plants, focusing on the implications for the iso/anisohydric classification of plant drought responses at seasonal timescales. We first revise the history of the isohydric concept and its possible definitions. Then, we use published data to answer two main questions: (1) is greater stomatal control in response to decreasing water availability associated with a tighter regulation of leaf water potential (Psi(L)) across species? and (2) is there an association between tighter.L regulation (similar to isohydric behaviour) and lower leaf conductance over time during a drought event? These two questions are addressed at two levels: across species growing in different sites and comparing only species coexisting at a given site. Our analyses show that, across species, a tight regulation of Psi(L) is not necessarily associated with greater stomatal control or with more constrained assimilation during drought. Therefore, iso/anisohydry defined in terms of Psi(L) regulation cannot be used as an indicator of a specific mechanism of drought-induced mortality or as a proxy for overall plant vulnerability to drought.
机译:在这篇综述中,我们解决了植物气孔行为,水势调节和液压运输之间的关系,重点是对季节性尺寸的植物干旱反应的ISO /抗氧化物分类的影响。我们首先修改了异常概念的历史及其可能的定义。然后,我们使用已发布的数据来回答两个主要问题:(1)响应于横跨叶水潜力(PSI(L))的降低与叶子水势相关的水可用性降低,是更大的气孔控制? (2)在干旱事件期间有紧张,在干旱事件期间是否存在关系。这两个问题是在两个级别解决的:跨不同地点生长的物种,并仅在给定地点上共存的物种。我们的分析表明,跨物种,PSI(L)的紧张调节不一定与较大的气孔控制或在干旱期间具有更约束的同化。因此,在PSI(L)调节方面定义的ISO / anisoHydry不能用作干旱诱导的死亡率或作为对干旱整体植物脆弱性的代理的特定机制的指标。

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