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水稻中一种HKT型转运蛋白作为通用碱金属阳离子转运蛋白的特性分析。

Characterization of a HKT-type transporter in rice as a general alkali cation transporter.

作者信息

Golldack Dortje, Su Hua, Quigley Francoise, Kamasani Uma R, Muñoz-Garay Carlos, Balderas Enrique, Popova Olga V, Bennett John, Bohnert Hans J, Pantoja Omar

机构信息

Department of Biochemistry, The University of Arizona, Tucson, AZ 85721, USA.

出版信息

Plant J. 2002 Aug;31(4):529-42. doi: 10.1046/j.1365-313x.2002.01374.x.

Abstract

We report the characterization of rice OsHKT1 (Oryza sativa ssp. indica) homologous to the wheat K+/Na+-symporter HKT1. Expression of OsHKT1 in the yeast strain CY162 defective in K+-uptake restored growth at mM and micro M concentrations of K+ and mediated hypersensitivity to Na+. When expressed in Xenopus oocytes, rice OsHKT1 showed uptake characteristics of a Na+-transporter but mediated transport of other alkali cations as well. OsHKT1 expression was analysed in salt-tolerant rice Pokkali and salt-sensitive IR29 in response to external cation concentrations. OsHKT1 is expressed in roots and leaves. Exposure to Na+, Rb+, Li+, and Cs+ reduced OsHKT1 transcript amounts in both varieties and, in some cases, incompletely spliced transcripts were observed. By in situ hybridizations the expression of OsHKT1 was localized to the root epidermis and the vascular tissue inside the endodermis. In leaves, OsHKT1 showed strongest signals in cells surrounding the vasculature. The repression of OsHKT1 in the two rice varieties during salt stress was different in various cell types with main differences in the root vascular tissue. The data suggest control over HKT expression as a factor that may distinguish salt stress-sensitive and stress-tolerant lines. Differences in transcript expression in space and time in different lines of the same species appear to be a component of ion homeostasis correlated with salt sensitivity and tolerance.

摘要

我们报道了与小麦K⁺/Na⁺同向转运体HKT1同源的水稻OsHKT1(Oryza sativa ssp. indica)的特性。在K⁺吸收缺陷的酵母菌株CY162中表达OsHKT1,可在毫摩尔和微摩尔浓度的K⁺条件下恢复生长,并介导对Na⁺的超敏反应。当在非洲爪蟾卵母细胞中表达时,水稻OsHKT1表现出Na⁺转运体的吸收特性,但也介导其他碱金属阳离子的转运。分析了耐盐水稻Pokkali和盐敏感水稻IR29中OsHKT1在外部阳离子浓度响应下的表达情况。OsHKT1在根和叶中表达。暴露于Na⁺、Rb⁺、Li⁺和Cs⁺会降低两个品种中OsHKT1的转录本数量,在某些情况下,还观察到不完全剪接的转录本。通过原位杂交,OsHKT1的表达定位于根表皮和内皮层内的维管组织。在叶片中,OsHKT1在脉管系统周围的细胞中显示出最强的信号。在盐胁迫期间,两个水稻品种中OsHKT1的抑制在不同细胞类型中有所不同,主要差异在于根维管组织。数据表明对HKT表达的控制是区分盐胁迫敏感和耐受品系的一个因素。同一物种不同品系中转录本表达在空间和时间上的差异似乎是与盐敏感性和耐受性相关的离子稳态的一个组成部分。

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