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植物中的干旱胁迫响应与抗性:从细胞响应到长距离细胞间通讯

Drought Stress Responses and Resistance in Plants: From Cellular Responses to Long-Distance Intercellular Communication.

作者信息

Takahashi Fuminori, Kuromori Takashi, Urano Kaoru, Yamaguchi-Shinozaki Kazuko, Shinozaki Kazuo

机构信息

Gene Discovery Research Group, RIKEN Center for Sustainable Resource Science, Tsukuba, Japan.

Gene Discovery Research Group, RIKEN Center for Sustainable Resource Science, Wako, Japan.

出版信息

Front Plant Sci. 2020 Sep 10;11:556972. doi: 10.3389/fpls.2020.556972. eCollection 2020.

Abstract

The drought stress responses of vascular plants are complex regulatory mechanisms because they include various physiological responses from signal perception under water deficit conditions to the acquisition of drought stress resistance at the whole-plant level. It is thought that plants first recognize water deficit conditions in roots and that several molecular signals then move from roots to shoots. Finally, a phytohormone, abscisic acid (ABA) is synthesized mainly in leaves. However, the detailed molecular mechanisms of stress sensors and the regulators that initiate ABA biosynthesis in response to drought stress conditions are still unclear. Another important issue is how plants adjust ABA propagation, stress-mediated gene expression and metabolite composition to acquire drought stress resistance in different tissues throughout the whole plant. In this review, we summarize recent advances in research on drought stress responses, focusing on long-distance signaling from roots to shoots, ABA synthesis and transport, and metabolic regulation in both cellular and whole-plant levels of Arabidopsis and crops. We also discuss coordinated mechanisms for acquiring drought stress adaptations and resistance tissue-to-tissue communication and long-distance signaling.

摘要

维管植物的干旱胁迫反应是复杂的调控机制,因为它们包括从水分亏缺条件下的信号感知到全株水平获得干旱胁迫抗性的各种生理反应。据认为,植物首先在根部识别水分亏缺条件,然后几种分子信号从根部转移到地上部分。最后,一种植物激素脱落酸(ABA)主要在叶片中合成。然而,干旱胁迫条件下启动ABA生物合成的胁迫传感器和调控因子的详细分子机制仍不清楚。另一个重要问题是植物如何调节ABA的传播、胁迫介导的基因表达和代谢物组成,以在整个植物的不同组织中获得干旱胁迫抗性。在这篇综述中,我们总结了干旱胁迫反应研究的最新进展,重点关注从根到地上部分的长距离信号传导、ABA的合成与运输,以及拟南芥和作物在细胞和全株水平上的代谢调控。我们还讨论了获得干旱胁迫适应性和抗性的协调机制、组织间通讯和长距离信号传导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53c4/7511591/2363f1ab98ff/fpls-11-556972-g001.jpg

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