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Osmotic adjustment and plant adaptation to environmental changes related to drought and salinity

机译:渗透调节和植物适应与干旱和盐度有关的环境变化

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The salinization and water deficit of soil are widespread environmental problems in limiting plant survival, growth, and productivity. However, some plants could adopt some strategies to resist salinity and drought stresses. Among these strategies, the mechanism of osmotic adjustment could help plants and algae to avoid ion toxicity and maintain water uptake in both stresses by accumulating large quantities of osmolytes. Two types of osmolytes, organic solutes and inorganic ions, play a key role in osmotic adjustment. Different osmolytes and their osmotic adjustment actions are different according to their distribution in different plants. Organic solutes, known as compatible solutes, include amino acids, glycerol, sugars, and other low molecular weight metabolites, serve a function in cells to lower or balance the osmotic potential of intracellular and extracellular ions in resistance to osmotic stresses. Inorganic ions for osmotic adjustment are mainly Na~+, K~+, Ca~(2+), and Cl~–. Inorganic ions make great contribution in osmotic adjustment by ion transport processes with related ion antiporters and ion channels. The aim of this review is to integrate recent data on the mechanisms of osmotic adjustment by osmolytes in plants and algae, and toillustrate the variety of related molecular mechanisms, to introduce new concepts and techniques into this research field. Genetic manipulation including the application of transgenic techniques in plants provides promising strategies to elevate the tolerance capability of plants under osmotic stress conditions.
机译:土壤的盐碱化和缺水是限制植物存活,生长和生产力的普遍环境问题。但是,某些植物可以采取一些策略来抵抗盐分和干旱胁迫。在这些策略中,渗透调节的机制可以帮助植物和藻类避免离子毒性,并通过积累大量的渗透液来维持两种胁迫下的水分吸收。两种渗透剂,有机溶质和无机离子,在渗透调节中起关键作用。根据其在不同植物中的分布,不同的渗透物及其渗透调节作用也不同。有机溶质,称为相容性溶质,包括氨基酸,甘油,糖和其他低分子量代谢物,在细胞中发挥作用,以降低或平衡细胞内和细胞外离子对渗透压的抵抗能力。用于渗透调节的无机离子主要为Na〜+,K〜+,Ca〜(2+)和Cl〜–。无机离子通过相关离子反转运蛋白和离子通道的离子迁移过程对渗透调节做出了很大贡献。这篇综述的目的是整合有关植物和藻类中渗透压调节渗透压的机制的最新数据,并举例说明各种相关的分子机制,以向该研究领域引入新的概念和技术。遗传操纵,包括在植物中应用转基因技术,为提高植物在渗透胁迫条件下的耐受能力提供了有前途的策略。

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