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Analysis of Ion Transport Properties of Glycine max HKT Transporters and Identifying a Regulation of GmHKT1;1 by the Non-Functional GmHKT1;4.

Authors :
Liu, Liu
Luo, Sheng
Ma, Longfei
Zhang, Yanli
Wang, Tiantian
Wang, Jicheng
Liang, Xiushuo
Xue, Shaowu
Source :
Plant & Cell Physiology. Sep2024, Vol. 65 Issue 9, p1399-1413. 15p.
Publication Year :
2024

Abstract

High-affinity potassium transporters (HKTs) play an important role in plants responding to salt stress, but the transport properties of the soybean HKT transporters at the molecular level are still unclear. Here, using Xenopus oocyte as a heterologous expression system and two-electrode voltage-clamp technique, we identified four HKT transporters, GmHKT1;1, GmHKT1;2, GmHKT1;3 and GmHKT1;4, all of which belong to type I subfamily, but have distinct ion transport properties. While GmHKT1;1, GmHKT1;2 and GmHKT1;3 function as Na+ transporters, GmHKT1;1 is less selective against K+ than the two other transporters. Astonishingly, GmHKT1;4, which lacks transmembrane segments and has no ion permeability, is significantly expressed, and its gene expression pattern is different from the other three GmHKTs under salt stress. Interestingly, GmHKT1;4 reduced the Na+/K+ currents mediated by GmHKT1;1. Further study showed that the transport ability of GmHKT1;1 regulated by GmHKT1;4 was related to the structural differences in the first intracellular domain and the fourth repeat domain. Overall, we have identified one unique GmHKT member, GmHKT1;4, which modulates the Na+ and K+ transport ability of GmHKT1;1 via direct interaction. Thus, we have revealed a new type of HKT interaction model for altering their ion transport properties. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00320781
Volume :
65
Issue :
9
Database :
Academic Search Index
Journal :
Plant & Cell Physiology
Publication Type :
Academic Journal
Accession number :
180088168
Full Text :
https://doi.org/10.1093/pcp/pcae073