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钙对盐胁迫下辣椒植株水通道蛋白的两种不同作用。

Two different effects of calcium on aquaporins in salinity-stressed pepper plants.

作者信息

Martínez-Ballesta M Carmen, Cabañero Francisco, Olmos Enrique, Periago Paula María, Maurel Christophe, Carvajal Micaela

机构信息

Departamento de Nutrición Vegetal, Centro de Edafología y Biología Aplicada del Segura-CSIC, Apdo. Correos 164, 30100, Espinardo, Murcia, Spain.

出版信息

Planta. 2008 Jun;228(1):15-25. doi: 10.1007/s00425-008-0714-4. Epub 2008 Mar 4.

Abstract

Two different effects of calcium were studied, respectively, in plasma membrane vesicles and in protoplasts isolated from roots of control pepper plants (Capsicum annuum L cv. California) or of plants treated with 50 mM NaCl, 10 mM CaCl(2) or 10 mM CaCl(2) + 50 mM NaCl. Under saline conditions, osmotic water permeability (P ( f )) values decreased in protoplasts and plasma membrane vesicles, and the same reduction was observed in the PIP1 aquaporin abundance, indicating inhibitory effects of NaCl on aquaporin functionality and protein abundance. The cytosolic Ca(2+) concentration, Ca(2+), was reduced by salinity, as observed by confocal microscope analysis. Two different actions of Ca(2+) were observed. On the one hand, increase in free cytosolic calcium concentrations associated with stress perception may lead to aquaporin closure. On the other hand, when critical requirements of Ca(2+) were reduced (by salinity), and extra-calcium would lead to an upregulation of aquaporins, indicating that a positive role of calcium at whole plant level combined with an inhibitory mechanism at aquaporin level may work in the regulation of pepper root water transport under salt stress. However, a link between these observations and other cell signalling in relation to water channel gating remains to be established.

摘要

分别在质膜囊泡和从对照辣椒植株(辣椒品种加州)或用50 mM NaCl、10 mM CaCl₂或10 mM CaCl₂ + 50 mM NaCl处理的植株的根中分离出的原生质体中研究了钙的两种不同作用。在盐胁迫条件下,原生质体和质膜囊泡的渗透水通透性(Pf)值降低,并且在PIP1水通道蛋白丰度中也观察到相同的降低,表明NaCl对水通道蛋白功能和蛋白质丰度具有抑制作用。通过共聚焦显微镜分析观察到,盐度降低了胞质Ca²⁺浓度[Ca²⁺]cyt。观察到Ca²⁺的两种不同作用。一方面,与应激感知相关的游离胞质钙浓度增加可能导致水通道蛋白关闭。另一方面,当Ca²⁺的关键需求降低时(由于盐度),额外的钙会导致水通道蛋白上调,这表明钙在整个植株水平上的积极作用与在水通道蛋白水平上的抑制机制可能共同作用于盐胁迫下辣椒根水运输的调节。然而,这些观察结果与其他与水通道门控相关的细胞信号传导之间的联系仍有待建立。

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