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耐旱型被子植物脱水和干燥胁迫下的分子响应。

Molecular responses to dehydration and desiccation in desiccation-tolerant angiosperm plants.

机构信息

Institute of Molecular Physiology and Biotechnology of Plants (IMBIO), University of Bonn, Germany.

出版信息

J Exp Bot. 2018 Jun 6;69(13):3211-3222. doi: 10.1093/jxb/erx489.

Abstract

Due to the ability to tolerate extreme dehydration, desiccation-tolerant plants have been widely investigated to find potential approaches for improving water use efficiency or developing new crop varieties. The studies of desiccation-tolerant plants have identified sugar accumulation, specific protein synthesis, cell structure changes, and increased anti-oxidative reactions as part of the mechanisms of desiccation tolerance. However, plants respond differently according to the severity of water loss, and the process of water loss affects desiccation tolerance. A detailed analysis within the dehydration process is important for understanding the process of desiccation tolerance. This review defines dehydration and desiccation, finds the boundary for the relative water content between dehydration and desiccation, compares the molecular responses to dehydration and desiccation, compares signaling differences between dehydration and desiccation, and finally summarizes the strategies launched in desiccation-tolerant plants for dehydration and desiccation, respectively. The roles of abscisic acid (ABA) and reactive oxygen species (ROS) in sensing and signaling during dehydration are discussed. We outline how this knowledge can be exploited to generate drought-tolerant crop plants.

摘要

由于能够耐受极端脱水,因此对耐旱植物进行了广泛的研究,以期找到提高水利用效率或开发新型作物品种的潜在方法。耐旱植物的研究已经确定糖的积累、特定蛋白质的合成、细胞结构的变化和抗氧化反应的增加是耐旱性的部分机制。然而,植物根据失水的严重程度会有不同的反应,并且失水过程会影响耐旱性。在脱水过程中进行详细分析对于理解耐旱性过程非常重要。本综述定义了脱水和干燥,找到了脱水和干燥之间相对含水量的边界,比较了对脱水和干燥的分子响应,比较了脱水和干燥之间信号转导的差异,最后分别总结了耐旱植物在脱水和干燥时启动的策略。讨论了脱落酸 (ABA) 和活性氧 (ROS) 在脱水过程中的感应和信号转导中的作用。我们概述了如何利用这些知识来培育耐旱作物。

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