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Salt tolerance and salinity effects on plants: a review.

机译:耐盐性和盐分对植物的影响:综述。

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Plants exposed to salt stress undergo changes in their environment. The ability of plants to tolerate salt is determined by multiple biochemical pathways that facilitate retention and/or acquisition of water, protect chloroplast functions, and maintain ion homeostasis. Essential pathways include those that lead to synthesis of osmotically active metabolites, specific proteins, and certain free radical scavenging enzymes that control ion and water flux and support scavenging of oxygen radicals or chaperones. The ability of plants to detoxify radicals under conditions of salt stress is probably the most critical requirement. Many salt-tolerant species accumulate methylated metabolites, which play crucial dual roles as osmoprotectants and as radical scavengers. Their synthesis is correlated with stress-induced enhancement of photorespiration. In this paper, plant responses to salinity stress are reviewed with emphasis on physiological, biochemical, and molecular mechanisms of salt tolerance. This review may help in interdisciplinary studies to assess the ecological significance of salt stress.
机译:暴露于盐胁迫下的植物会发生环境变化。植物耐受盐的能力由多种生化途径决定,这些途径促进水的保持和/或获取,保护叶绿体功能并维持离子稳态。基本途径包括导致渗透活性代谢产物,特定蛋白质和某些自由基清除酶(控制离子和水通量并支持清除氧自由基或分子伴侣)的途径。植物在盐胁迫条件下对自由基的解毒能力可能是最关键的要求。许多耐盐物种积累了甲基化代谢产物,它们作为渗透保护剂和自由基清除剂起着至关重要的双重作用。它们的合成与应激诱导的光呼吸增强有关。在本文中,综述了植物对盐分胁迫的反应,重点是生理,生化和耐盐分子机制。这项审查可能有助于跨学科研究,以评估盐胁迫的生态意义。

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