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Growing Out of Stress: The Role of Cell- and Organ-Scale Growth Control in Plant Water-Stress Responses

机译:摆脱压力:细胞和器官规模生长控制在植物水分胁迫反应中的作用

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摘要

Water is the most limiting resource on land for plant growth, and its uptake by plants is affected by many abiotic stresses, such as salinity, cold, heat, and drought. While much research has focused on exploring the molecular mechanisms underlying the cellular signaling events governing water-stress responses, it is also important to consider the role organismal structure plays as a context for such responses. The regulation of growth in plants occurs at two spatial scales: the cell and the organ. In this review, we focus on how the regulation of growth at these different spatial scales enables plants to acclimate to water-deficit stress. The cell wall is discussed with respect to how the physical properties of this structure affect water loss and how regulatory mechanisms that affect wall extensibility maintain growth under water deficit. At a higher spatial scale, the architecture of the root system represents a highly dynamic physical network that facilitates access of the plant to a heterogeneous distribution of water in soil. We discuss the role differential growth plays in shaping the structure of this system and the physiological implications of such changes.
机译:水分是陆地上植物生长最受限的资源,植物对水的吸收受到许多非生物胁迫的影响,例如盐度,寒冷,高温和干旱。尽管许多研究都集中在探索控制水压力响应的细胞信号传递事件的分子机制上,但重要的是要考虑生物结构在这种响应中所起的作用。植物生长的调节发生在两个空间尺度上:细胞和器官。在这篇综述中,我们关注于在这些不同的空间尺度上生长的调节如何使植物适应缺水胁迫。讨论了细胞壁有关该结构的物理特性如何影响水分流失以及影响壁可扩展性的调节机制如何在缺水情况下维持生长的问题。在较高的空间尺度上,根系的体系结构代表了高度动态的物理网络,可促进植物接触土壤中水的异质分布。我们讨论了差异生长在塑造该系统的结构中所起的作用以及这种变化的生理意义。

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