Flooding Tolerance of Rice: Regulatory Pathways and Adaptive Mechanisms

Plants Pub Date : 2024-04-23 DOI:10.3390/plants13091178
Jing Wang, Mingzhen Han, Yongxiang Huang, Junliang Zhao, Chuanguang Liu, Yamei Ma
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Abstract

Rice is a major food crop for more than half of the world’s population, while its production is seriously threatened by flooding, a common environmental stress worldwide. Flooding leads to oxygen deficiency, which is a major problem for submerged plants. Over the past three decades, significant progress has been made in understanding rice adaptation and molecular regulatory mechanisms in response to flooding. At the seed germination and seedling establishment stages, the CIPK15-SnRK1A-MYBS1 signaling cascade plays a central role in determining rice submergence tolerance. However, from seedlings to mature plants for harvesting, SUB1A- and SK1/SK2-regulated pathways represent two principal and opposite regulatory mechanisms in rice. In addition, phytohormones, especially gibberellins, induce adaptive responses to flooding throughout the rice growth period. This review summarizes the significant adaptive traits observed in flooded rice varieties and updates the molecular genetics and mechanisms of submergence tolerance in rice.
水稻的耐涝性:调控途径和适应机制
水稻是世界上一半以上人口的主要粮食作物,但其产量却受到洪水的严重威胁,而洪水是全球常见的环境压力。洪水导致缺氧,这对沉水植物来说是一个主要问题。过去三十年来,人们在了解水稻对洪水的适应性和分子调控机制方面取得了重大进展。在种子萌发和成苗阶段,CIPK15-SnRK1A-MYBS1 信号级联在决定水稻耐淹性方面发挥着核心作用。然而,从幼苗到成熟植株收割,SUB1A 和 SK1/SK2 调节的途径代表了水稻中两种主要的、相反的调控机制。此外,植物激素(尤其是赤霉素)在水稻的整个生长期都会诱导对淹水的适应性反应。本综述总结了在淹水水稻品种中观察到的重要适应性状,并更新了水稻耐淹水的分子遗传学和机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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