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盐胁迫下生长的辣椒根细胞中与H⁺-ATP酶活性相关的水通道蛋白功能

Aquaporin functionality in relation to H+-ATPase activity in root cells of Capsicum annuum grown under salinity.

作者信息

Martínez-Ballesta M. Carmen, Martínez Vicente, Carvajal Micaela

机构信息

Departamento de Nutrición y Fisiología Vegetal, Centro de Edafología y Biología Aplicada del Segura, CSIC, PO Box 4195, 30080 Murcia, Spain.

出版信息

Physiol Plant. 2003 Mar;117(3):413-420. doi: 10.1034/j.1399-3054.2003.00044.x.

Abstract

As water and nutrient uptake should be related in the response of plants to salinity, the aim of this paper is to establish whether or not aquaporin functionality is related to H+-ATPase activity in root cells of pepper (Capsicum annuum L.) plants. Thus, H+-ATPase activity was measured in plasma membrane vesicles isolated from roots and aquaporin functionality was measured using a cell pressure probe in intact roots. Salinity was applied as 60 mM NaCl or 60 mM KCl, to determine which ion (Na+, K+ or Cl-) is producing the effects. We also investigated whether the effects of both salts were ameliorated by Ca2+. Similar results were obtained for cell hydraulic conductivity, Lpc, and H+-ATPase activity, large reductions in the presence at NaCl or KCl and an ameliorative effect of Ca2+. However, fusicoccin (an activator of H+-ATPase) did not alter osmotic water permeability of protoplasts isolated from roots. Addition of Hg2+ inhibited both ATPase and aquaporins, but ATPase also contains Hg-binding sites. Therefore, the results indicate that H+-ATPase and aquaporin activities may not be related in pepper plants.

摘要

由于植物对盐分的响应中水分和养分吸收应该存在关联,本文的目的是确定水通道蛋白的功能是否与辣椒(Capsicum annuum L.)植株根细胞中的H⁺-ATP酶活性有关。因此,测定了从根部分离的质膜囊泡中的H⁺-ATP酶活性,并使用细胞压力探针在完整根中测定了水通道蛋白的功能。施加60 mM NaCl或60 mM KCl的盐分,以确定是哪种离子(Na⁺、K⁺或Cl⁻)产生了这些效应。我们还研究了Ca²⁺是否能改善两种盐的效应。细胞水力传导率Lpc和H⁺-ATP酶活性得到了相似的结果,在存在NaCl或KCl时大幅降低,而Ca²⁺具有改善作用。然而,壳梭孢菌素(一种H⁺-ATP酶激活剂)并未改变从根部分离的原生质体的渗透水通透性。添加Hg²⁺会抑制ATP酶和水通道蛋白,但ATP酶也含有Hg结合位点。因此,结果表明在辣椒植株中H⁺-ATP酶和水通道蛋白的活性可能没有关联。

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