液泡
细胞生物学
离子运输机
内体
生物
营养物
细胞质
生物化学
钾
化学
生物物理学
细胞
膜
生态学
有机化学
作者
Paula Ragel,Natalia Raddatz,Eduardo O. Leidi,Francisco J. Quintero,José M. Pardo
标识
DOI:10.3389/fpls.2019.00281
摘要
Modern agriculture relies on mineral fertilization. Unlike other major macronutrients, potassium (K+) is not incorporated into organic matter but remains as soluble ion in the cell sap contributing up to 10% of the dry organic matter. Consequently, K+ constitutes a chief osmoticum to drive cellular expansion and organ movements, such as stomata aperture. Moreover, K+ transport is critical for the control of cytoplasmic and luminal pH in endosomes, regulation of membrane potential, and enzyme activity. Not surprisingly, plants have evolved a large ensemble of K+ transporters with defined functions in nutrient uptake by roots, storage in vacuoles, and ion translocation between tissues and organs. This review describes critical transport proteins governing K+ nutrition, their regulation and coordinated activity, and summarizes our current understanding of signaling pathways activated by K+ starvation.
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