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Osmoprotection in plants under abiotic stresses: new insights into a classical phenomenon

机译:非生物胁迫下植物中的渗透:新见解古典现象

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摘要

Plants employ adaptive mechanisms to survive various abiotic stresses. One mechanism, the osmoprotection system, utilizes various groups of low molecular weight compounds, collectively known as osmoprotectants, to mitigate the negative effect of abiotic stresses. Osmoprotectants may include amino acids, polyamines, quaternary ammonium compounds and sugars. These nontoxic compounds stabilize cellular structures and enzymes, act as metabolic signals, and scavenge reactive oxygen species produced under stressful conditions. The advent of recent drastic fluctuations in the global climate necessitates the development of plants better adapted to abiotic stresses. The introgression of genes related to osmoprotectant biosynthesis from one plant to another by genetic engineering is a unique strategy bypassing laborious conventional and classical breeding programs. Herein, we review recent literature related to osmoprotectants and transgenic plants engineered with specific osmoprotectant properties.
机译:植物采用自适应机制来存活各种非生物胁迫。一种机制,渗透压系统利用各种低分子量化合物,共同称为渗透剂,以减轻非生物应激的负效应。渗透剂可包括氨基酸,多胺,季铵化合物和糖。这些无毒化合物稳定细胞结构和酶,作为代谢信号,并在压力条件下清除反应性氧物种。全球气候最近剧烈波动的出现需要更好地改善对非生物应激的植物的发展。通过基因工程到另一个植物与一株植物有关的基因突出,是一种独特的策略,绕过常规和古典育种计划。在此,我们审查了与具有特异性OsMoplotectant属性的渗透剂和转基因植物相关的最近文献。

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