Chloride transport and homeostasis in plants.

Quantitative plant biology Pub Date : 2025-06-30 eCollection Date: 2025-01-01 DOI:10.1017/qpb.2025.10008
Harverth Silva-Herrera, Stefanie Wege, Bastian Leander Franzisky, Namrah Ahmad, M Rob G Roelfsema, Christoph-Martin Geilfus
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引用次数: 0

Abstract

The micronutrient chloride (Cl-) plays key roles in plant physiology, from photosystem II and vacuolar ATPase activity to osmoregulation, turgor maintenance and drought resilience, while also posing toxicity risks at high concentrations. This review examines Cl- uptake, transport and homeostasis, focussing on adaptations balancing its dual roles as a nutrient and toxicant. Key transporters, including NPF, SLAH, ALMT, CLC and CCC families, mediate Cl- fluxes to maintain ionic balance and prevent toxicity. Plants employ strategies such as selective uptake and vacuolar compartmentalization to cope with high salinity. Cl- also influences nitrogen-use efficiency and plant productivity. Advances in transporter biology reveal the role of Cl- in water-use efficiency, drought resilience and stress adaptation.

植物中氯化物的运输和体内平衡。
微量营养素氯离子(Cl-)在植物生理中起着关键作用,从光系统II和液泡atp酶活性到渗透调节、膨胀维持和抗旱性,同时在高浓度下也存在毒性风险。本文综述了氯的吸收、运输和体内平衡,重点是平衡其作为营养物和毒物的双重角色的适应性。关键转运蛋白,包括NPF、SLAH、ALMT、CLC和CCC家族,调节Cl-通量以维持离子平衡并防止毒性。植物采用选择性吸收和液泡区隔化等策略来应对高盐度。Cl-也影响氮的利用效率和植物的生产力。转运体生物学的进展揭示了Cl-在水分利用效率、抗旱能力和胁迫适应方面的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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