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Submergence and Waterlogging Stress in Plants: A Review Highlighting Research Opportunities and Understudied Aspects

机译:植物的淹没和淹水胁迫:强调研究机会和未充分研究的方面的综述

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摘要

Soil flooding creates composite and complex stress in plants known as either submergence or waterlogging stress depending on the depth of the water table. In nature, these stresses are important factors dictating the species composition of the ecosystem. On agricultural land, they cause economic damage associated with long-term social consequences. The understanding of the plant molecular responses to these two stresses has benefited from research studying individual components of the stress, in particular low-oxygen stress. To a lesser extent, other associated stresses and plant responses have been incorporated into the molecular framework, such as ion and ROS signaling, pathogen susceptibility, and organ-specific expression and development. In this review, we aim to highlight known or suspected components of submergence/waterlogging stress that have not yet been thoroughly studied at the molecular level in this context, such as miRNA and retrotransposon expression, the influence of light/dark cycles, protein isoforms, root architecture, sugar sensing and signaling, post-stress molecular events, heavy-metal and salinity stress, and mRNA dynamics (splicing, sequestering, and ribosome loading). Finally, we explore biotechnological strategies that have applied this molecular knowledge to develop cultivars resistant to flooding or to offer alternative uses of flooding-prone soils, like bioethanol and biomass production.
机译:土壤淹水会在植物中产生复合应力和复杂应力,这取决于地下水位的深度,即淹没应力或涝渍应力。在自然界中,这些压力是决定生态系统物种组成的重要因素。在农田上,它们造成与长期社会后果相关的经济损失。通过研究胁迫的各个组成部分(特别是低氧胁迫),对植物分子对这两种胁迫的反应的理解有所帮助。在较小程度上,其他相关的胁迫和植物反应已被整合到分子框架中,例如离子和ROS信号传导,病原体易感性以及器官特异性表达和发育。在这篇综述中,我们旨在强调尚未在分子水平上对此分子进行深入研究的浸入/淹水胁迫的已知或可疑成分,例如miRNA和反转录转座子表达,明/暗循环的影响,蛋白质同工型,根结构,糖感测和信号传导,应力后分子事件,重金属和盐分应力以及mRNA动态(剪接,螯合和核糖体负载)。最后,我们探索了利用该分子知识来开发抗洪品种的生物技术策略,或提供了易受洪涝的土壤的替代用途,例如生物乙醇和生物质生产。

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