首页> 外文期刊>Functional Plant Biology >Balancing salinity stress responses in halophytes and non-halophytes: a comparison between Thellungiella and Arabidopsis thaliana.
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Balancing salinity stress responses in halophytes and non-halophytes: a comparison between Thellungiella and Arabidopsis thaliana.

机译:平衡盐生植物和非盐生植物的盐度胁迫响应:Thellungiella和拟南芥的比较。

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摘要

Salinity is one of the major abiotic stress factors that drastically reduces agricultural productivity. In natural environments salinity often occurs together with other stresses such as dehydration, light stress or high temperature. Plants cope with ionic stress, dehydration and osmotic stress caused by high salinity through a variety of mechanisms at different levels involving physiological, biochemical and molecular processes. Halophytic plants exist successfully in stressful saline environments, but most of the terrestrial plants including all crop plants are glycophytes with varying levels of salt tolerance. An array of physiological, structural and biochemical adaptations in halophytes make them suitable models to study the molecular mechanisms associated with salinity tolerance. Comparative analysis of plants that differ in their abilities to tolerate salinity will aid in better understanding the phenomenon of salinity tolerance. The halophyte Thellungiella salsuginea has been used as a model for studying plant salt tolerance. In this review, T. salsuginea and the glycophyte Arabidopsis thaliana are compared with regards to their biochemical, physiological and molecular responses to salinity. In addition recent developments are presented for improvement of salinity tolerance in glycophytic plants using genes from halophytes.
机译:盐分是严重降低农业生产力的主要非生物胁迫因素之一。在自然环境中,盐度经常与其他应力(例如脱水,轻度应力或高温)同时发生。植物通过多种机制来应对高盐度引起的离子胁迫,脱水和渗透胁迫,这些机制涉及生理,生化和分子过程。盐生植物成功地存在于胁迫性盐环境中,但是包括所有农作物在内的大多数陆生植物都是具有不同耐盐性的糖原。盐生植物的一系列生理,结构和生化适应使它们成为研究与盐度耐受性相关的分子机制的合适模型。对不同植物耐盐性的植物进行比较分析将有助于更好地理解盐耐性现象。盐生植物Thellungiella salsuginea已被用作研究植物耐盐性的模型。在这篇综述中,比较了盐芥T. salsuginea和拟南芥糖生植物对盐度的生化,生理和分子反应。另外,提出了利用盐生植物的基因改善糖生植物中盐分耐受性的最新进展。

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