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SsHKT1;1是盐生植物盐地碱蓬的一种钾转运蛋白,与耐盐性有关。

SsHKT1;1 is a potassium transporter of the C halophyte Suaeda salsa that is involved in salt tolerance.

作者信息

Shao Qun, Han Ning, Ding Tonglou, Zhou Feng, Wang Baoshan

机构信息

Key Laboratory of Plant Stress Research, College of Life Science, Shandong Normal University, Jinan 250?014, China.

出版信息

Funct Plant Biol. 2014 Aug;41(8):790-802. doi: 10.1071/FP13265.

Abstract

SsHKT1;1, a HKT1 homologue, was isolated from the C3 halophyte Suaeda salsa L. and its ion transport properties were investigated in heterologous systems. The expression of SsHKT1;1 suppressed a K+ transport-defective phenotype of the yeast strain CY162 (Δtrk1Δtrk2), suggesting the enhancement of K+ uptake with SsHKT1;1. However, it did not suppress the salt-sensitive phenotype of the yeast strain G19 (Δena1-4), which lacks a major component of Na+ efflux. Transgenic Arabidopsis thaliana (L.) Heynh. plants overexpressing SsHKT1;1 showed enhanced salt tolerance and increased shoot K+ concentration, whereas no significant changes in shoot Na+ concentration were observed. S. salsa was also used to investigate K+ uptake properties under salinity. The K+ transporters in the roots selectively mediated K+ uptake irrespective of external Na+ and their inhibitor did not affect Na+ uptake at low K+. Thus, both molecular and physiological studies provide strong in vivo evidence that SsHKT1;1 mainly acts as a potassium transporter in heterologous expression systems and S. salsa, and that it is involved in salt tolerance by taking part in the maintenance of cytosolic cation homeostasis, particularly, in the maintenance of K+ nutrition under salinity.

摘要

SsHKT1;1是一种HKT1同源物,从C3盐生植物盐地碱蓬中分离得到,并在异源系统中研究了其离子转运特性。SsHKT1;1的表达抑制了酵母菌株CY162(Δtrk1Δtrk2)的钾转运缺陷表型,表明SsHKT1;1增强了钾的吸收。然而,它并没有抑制酵母菌株G19(Δena1-4)的盐敏感表型,该菌株缺乏钠外流的主要成分。过表达SsHKT1;1的转基因拟南芥植株表现出增强的耐盐性和地上部钾浓度增加,而地上部钠浓度未观察到显著变化。盐地碱蓬也被用于研究盐胁迫下的钾吸收特性。根部的钾转运体选择性地介导钾的吸收,而不受外部钠的影响,并且它们的抑制剂在低钾条件下不影响钠的吸收。因此,分子和生理学研究都提供了强有力的体内证据,表明SsHKT1;1在异源表达系统和盐地碱蓬中主要作为钾转运体发挥作用,并且它通过参与维持细胞质阳离子稳态,特别是在盐胁迫下维持钾营养,从而参与耐盐性。

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