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植物中非生物胁迫信号传导的表观遗传调控

Epigenetic control of abiotic stress signaling in plants.

作者信息

Chung Sunglan, Kwon Chian, Lee Jae-Hoon

机构信息

Underwood International College, Yonsei University, 03722, Seoul, South Korea.

Department of Molecular Biology, Dankook University, Cheonan, 31116, South Korea.

出版信息

Genes Genomics. 2022 Mar;44(3):267-278. doi: 10.1007/s13258-021-01163-3. Epub 2021 Sep 13.

Abstract

BACKGROUND

Although plants may be regularly exposed to various abiotic stresses, including drought, salt, cold, heat, heavy metals, and UV-B throughout their lives, it is not possible to actively escape from such stresses due to the immobile nature of plants. To overcome adverse environmental stresses, plants have developed adaptive systems that allow appropriate responses to diverse environmental cues; such responses can be achieved by fine-tuning or controlling genetic and epigenetic regulatory systems. Epigenetic mechanisms such as DNA or histone modifications and modulation of chromatin accessibility have been shown to regulate the expression of stress-responsive genes in struggles against abiotic stresses.

OBJECTIVE

Herein, the current progress in elucidating the epigenetic regulation of abiotic stress signaling in plants has been summarized in order to further understand the systems plants utilize to effectively respond to abiotic stresses.

METHODS

This review focuses on the action mechanisms of various components that epigenetically regulate plant abiotic stress responses, mainly in terms of DNA methylation, histone methylation/acetylation, and chromatin remodeling.

CONCLUSIONS

This review can be considered a basis for further research into understanding the epigenetic control system for abiotic stress responses in plants. Moreover, the knowledge of such systems can be effectively applied in developing novel methods to generate abiotic stress resistant crops.

摘要

背景

尽管植物在其整个生命周期中可能经常受到各种非生物胁迫,包括干旱、盐害、寒冷、高温、重金属和紫外线B,但由于植物固着的特性,它们无法主动逃避这些胁迫。为了克服不利的环境胁迫,植物已经进化出适应性系统,使其能够对各种环境信号做出适当反应;这种反应可以通过微调或控制遗传和表观遗传调控系统来实现。诸如DNA或组蛋白修饰以及染色质可及性调节等表观遗传机制已被证明在植物应对非生物胁迫的过程中调节胁迫响应基因的表达。

目的

在此,总结了阐明植物非生物胁迫信号传导的表观遗传调控方面的当前进展,以便进一步了解植物有效应对非生物胁迫所利用的系统。

方法

本综述主要从DNA甲基化、组蛋白甲基化/乙酰化和染色质重塑方面,聚焦于表观遗传调控植物非生物胁迫反应的各种成分的作用机制。

结论

本综述可作为进一步研究植物非生物胁迫反应表观遗传控制系统的基础。此外,这些系统的知识可有效地应用于开发培育抗非生物胁迫作物的新方法。

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