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质膜电位在调控番茄高亲和钾转运体HAK5编码基因表达中的假定作用

A putative role for the plasma membrane potential in the control of the expression of the gene encoding the tomato high-affinity potassium transporter HAK5.

作者信息

Nieves-Cordones Manuel, Miller Anthony J, Alemán Fernando, Martínez Vicente, Rubio Francisco

机构信息

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

出版信息

Plant Mol Biol. 2008 Dec;68(6):521-32. doi: 10.1007/s11103-008-9388-3. Epub 2008 Aug 27.

Abstract

A chimeric CaHAK1-LeHAK5 transporter with only 15 amino acids of CaHAK1 in the N-terminus mediates high-affinity K(+) uptake in yeast cells. Kinetic and expression analyses strongly suggest that LeHAK5 mediates a significant proportion of the high-affinity K(+) uptake shown by K(+)-starved tomato (Solanum lycopersicum) plants. The development of high-affinity K(+) uptake, putatively mediated by LeHAK5, was correlated with increased LeHAK5 mRNA levels and a more negative electrical potential difference across the plasma membrane of root epidermal and cortical cells. However, this increase in high-affinity K(+) uptake was not correlated with the root K(+) content. Thus, (i) growth conditions that result in a hyperpolarized root plasma membrane potential, such as K(+) starvation or growth in the presence of NH(4) (+), but which do not decrease the K(+) content, lead to increased LeHAK5 expression; (ii) the presence of NaCl in the growth solution, which prevents the hyperpolarization induced by K(+) starvation, also prevents LeHAK5 expression. Moreover, once the gene is induced, depolarization of the plasma membrane potential then produces a decrease in the LeHAK5 mRNA. On the basis of these results, we propose that the plant membrane electrical potential plays a role in the regulation of the expression of this gene encoding a high-affinity K(+) transporter.

摘要

一种嵌合的CaHAK1-LeHAK5转运蛋白,其N端仅含15个CaHAK1氨基酸,可介导酵母细胞对钾离子的高亲和性吸收。动力学和表达分析有力地表明,LeHAK5介导了钾离子饥饿的番茄(Solanum lycopersicum)植株所表现出的大部分高亲和性钾离子吸收。推测由LeHAK5介导的高亲和性钾离子吸收的发展,与LeHAK5 mRNA水平的增加以及根表皮和皮层细胞质膜上更负的电势差相关。然而,这种高亲和性钾离子吸收的增加与根中的钾离子含量无关。因此,(i)导致根细胞质膜超极化的生长条件,如钾离子饥饿或在NH(4) (+)存在下生长,但不降低钾离子含量,会导致LeHAK5表达增加;(ii)生长溶液中NaCl的存在,可防止钾离子饥饿诱导的超极化,也会阻止LeHAK5表达。此外,一旦该基因被诱导,质膜电位的去极化会导致LeHAK5 mRNA减少。基于这些结果,我们提出植物膜电位在调控这种编码高亲和性钾离子转运蛋白的基因表达中起作用。

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