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GhAKT1 的功能特征分析,一种新型 Shaker 样 K⁺通道基因,参与棉花(Gossypium hirsutum)中 K⁺的摄取。

Functional characterization of GhAKT1, a novel Shaker-like K⁺ channel gene involved in K⁺ uptake from cotton (Gossypium hirsutum).

机构信息

State Key Laboratory of Plant Physiology and Biochemistry, Department of Agronomy, China Agricultural University, Beijing 100193, China.

State Key Laboratory of Plant Physiology and Biochemistry, Department of Agronomy, China Agricultural University, Beijing 100193, China.

出版信息

Gene. 2014 Jul 15;545(1):61-71. doi: 10.1016/j.gene.2014.05.006. Epub 2014 May 5.

Abstract

Shaker-like potassium (K(+)) channels in plants play an important role in K(+) absorption and transport. In this study, we characterized a Shaker-like K(+) channel gene GhAKT1 from the roots of Gossypium hirsutum cv. Liaomian17. Phylogenetic analysis showed that the GhAKT1 belongs to the AKT1-subfamily in the Shaker-like K(+) channel family. Confocal imaging of a GhAKT1-green fluorescent fusion protein (GFP) in transgenic Arabidopsis plants indicated that GhAKT1 is localized in the plasma membrane. Transcript analysis located GhAKT1 predominantly in cotton leaves with low abundance in roots, stem and shoot apex. Similarly, β-glucuronidase (GUS) activity was detected in both leaves and roots of PGhAKT1::GUS transgenic Arabidopsis plants. In roots, the GUS signals appeared in the epidermis, cortex and endodermis and root hairs, suggesting the contribution of GhAKT1 to K(+) uptake. In leaves, GhAKT1 was expressed in differentiated leaf primordial as well as mesophyll cells and veins of expanded leaves, pointing to its involvement in cell elongation and K(+) transport and distribution in leaves. Severe K(+) deficiency did not affect the expression of GhAKT1 gene. GhAKT1-overexpression in either the Arabidopsis wild-type or akt1 mutant enhanced the growth of transgenic seedlings under low K(+) deficiency and raised the net K(+) influx in roots at 100μM external K(+) concentration, within the range of operation of the high-affinity K(+) uptake system. The application of 2mM BaCl2 resulted in net K(+) efflux in roots, and eliminated the differences between GhAKT1-overexpression lines and their acceptors indicating that the K(+) uptake mediated by GhAKT1 is also as Ba(2+)-sensitive as AtAKT1.

摘要

植物中的 Shaker 样钾(K(+))通道在 K(+)吸收和运输中发挥着重要作用。在这项研究中,我们从陆地棉品种辽棉 17 的根部中鉴定了一个 Shaker 样 K(+)通道基因 GhAKT1。系统发育分析表明,GhAKT1 属于 Shaker 样 K(+)通道家族的 AKT1 亚家族。GhAKT1-绿色荧光融合蛋白(GFP)在转基因拟南芥中的共焦成像表明,GhAKT1 定位于质膜上。GhAKT1 的转录分析主要位于棉花叶片中,根部含量较低,茎和梢尖含量也较低。同样,PGhAKT1::GUS 转基因拟南芥叶片和根部均检测到 β-葡萄糖醛酸酶(GUS)活性。在根部,GUS 信号出现在表皮、皮层和内皮层以及根毛中,表明 GhAKT1 有助于 K(+)吸收。在叶片中,GhAKT1 在分化的叶原基以及展开叶片的叶肉细胞和叶脉中表达,表明其参与细胞伸长以及 K(+)在叶片中的运输和分布。严重的 K(+)缺乏并不影响 GhAKT1 基因的表达。GhAKT1 在拟南芥野生型或 akt1 突变体中的过表达均增强了低 K(+)缺乏下转基因幼苗的生长,并在 100μM 外源 K(+)浓度下提高了根的净 K(+)内流,这在高亲和力 K(+)吸收系统的作用范围内。应用 2mM BaCl2 导致根的净 K(+)外排,并消除了 GhAKT1 过表达系与其受体之间的差异,表明 GhAKT1 介导的 K(+)吸收也与 AtAKT1 一样对 Ba(2+)敏感。

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