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Mechanisms of Sodium Transport in Plants—Progresses and Challenges

机译:植物中钠转运的机理—进展与挑战

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摘要

Understanding the mechanisms of sodium (Na+) influx, effective compartmentalization, and efflux in higher plants is crucial to manipulate Na+ accumulation and assure the maintenance of low Na+ concentration in the cytosol and, hence, plant tolerance to salt stress. Na+ influx across the plasma membrane in the roots occur mainly via nonselective cation channels (NSCCs). Na+ is compartmentalized into vacuoles by Na+/H+ exchangers (NHXs). Na+ efflux from the plant roots is mediated by the activity of Na+/H+ antiporters catalyzed by the salt overly sensitive 1 (SOS1) protein. In animals, ouabain (OU)-sensitive Na+, K+-ATPase (a P-type ATPase) mediates sodium efflux. The evolution of P-type ATPases in higher plants does not exclude the possibility of sodium efflux mechanisms similar to the Na+, K+-ATPase-dependent mechanisms characteristic of animal cells. Using novel fluorescence imaging and spectrofluorometric methodologies, an OU-sensitive sodium efflux system has recently been reported to be physiologically active in roots. This review summarizes and analyzes the current knowledge on Na+ influx, compartmentalization, and efflux in higher plants in response to salt stress.
机译:了解高等植物中钠(Na + )流入,有效分隔和外排的机理对于操纵Na + 积累并确保维持低Na 至关重要+ 在细胞质中的浓度,因此植物对盐胁迫的耐受性。 Na + 流入根部的质膜主要是通过非选择性阳离子通道(NSCC)发生的。 Na + 通过Na + / H + 交换剂(NHXs)分隔为液泡。盐过于敏感1(SOS1)催化Na + 外向植物外排的活性是由Na + / H + 反向转运蛋白的活性介导的。蛋白。在动物中,哇巴因(OU)敏感的Na + ,K + -ATPase(一种P型ATPase)介导钠流出。高等植物中P型ATP酶的进化并不排除与动物细胞特征的Na + ,K + -ATPase依赖性机制相似的钠外流机制的可能性。使用新颖的荧光成像和荧光光谱法,最近有报道称OU敏感的钠外排系统在根部具有生理活性。这篇综述总结并分析了有关盐胁迫下高等植物Na + 流入,区室化和外排的当前知识。

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