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Wheat potassium transporter TaHAK13 mediates K(+) absorption and maintains potassium homeostasis under low potassium stress

Potassium (K) is an essential nutrient for plant physiological processes. Members of the HAK/KUP/KT gene family act as potassium transporters, and the family plays an important role in potassium uptake and utilization in plants. In this study, the TaHAK13 gene was cloned from wheat and its function...

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Autores principales: Run, Yonghang, Cheng, Xiyong, Dou, Wei, Dong, Yue, Zhang, Yanan, Li, Bingbing, Liu, Tengfei, Xu, Haixia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9816385/
https://www.ncbi.nlm.nih.gov/pubmed/36618640
http://dx.doi.org/10.3389/fpls.2022.1103235
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author Run, Yonghang
Cheng, Xiyong
Dou, Wei
Dong, Yue
Zhang, Yanan
Li, Bingbing
Liu, Tengfei
Xu, Haixia
author_facet Run, Yonghang
Cheng, Xiyong
Dou, Wei
Dong, Yue
Zhang, Yanan
Li, Bingbing
Liu, Tengfei
Xu, Haixia
author_sort Run, Yonghang
collection PubMed
description Potassium (K) is an essential nutrient for plant physiological processes. Members of the HAK/KUP/KT gene family act as potassium transporters, and the family plays an important role in potassium uptake and utilization in plants. In this study, the TaHAK13 gene was cloned from wheat and its function characterized. Real-time quantitative PCR (RT-qPCR) revealed that TaHAK13 expression was induced by environmental stress and up-regulated under drought (PEG6000), low potassium (LK), and salt (NaCl) stress. GUS staining indicated that TaHAK13 was mainly expressed in the leaf veins, stems, and root tips in Arabidopsis thaliana, and expression varied with developmental stage. TaHAK13 mediated K(+) absorption when heterologously expressed in yeast CY162 strains, and its activity was slightly stronger than that of a TaHAK1 positive control. Subcellular localization analysis illustrated that TaHAK13 was located to the plasma membrane. When c(K(+)) ≤0.01 mM, the root length and fresh weight of TaHAK13 transgenic lines (athak5/TaHAK13, Col/TaHAK13) were significantly higher than those of non-transgenic lines (athak5, Col). Non-invasive micro-test technology (NMT) indicated that the net K influx of the transgenic lines was also higher than that of the non-transgenic lines. This suggests that TaHAK13 promotes K(+) absorption, especially in low potassium media. Membrane-based yeast two-hybrid (MbY2H) and luciferase complementation assays (LCA) showed that TaHAK13 interacted with TaNPF5.10 and TaNPF6.3. Our findings have helped to clarify the biological functions of TaHAK13 and established a theoretical framework to dissect its function in wheat.
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spelling pubmed-98163852023-01-07 Wheat potassium transporter TaHAK13 mediates K(+) absorption and maintains potassium homeostasis under low potassium stress Run, Yonghang Cheng, Xiyong Dou, Wei Dong, Yue Zhang, Yanan Li, Bingbing Liu, Tengfei Xu, Haixia Front Plant Sci Plant Science Potassium (K) is an essential nutrient for plant physiological processes. Members of the HAK/KUP/KT gene family act as potassium transporters, and the family plays an important role in potassium uptake and utilization in plants. In this study, the TaHAK13 gene was cloned from wheat and its function characterized. Real-time quantitative PCR (RT-qPCR) revealed that TaHAK13 expression was induced by environmental stress and up-regulated under drought (PEG6000), low potassium (LK), and salt (NaCl) stress. GUS staining indicated that TaHAK13 was mainly expressed in the leaf veins, stems, and root tips in Arabidopsis thaliana, and expression varied with developmental stage. TaHAK13 mediated K(+) absorption when heterologously expressed in yeast CY162 strains, and its activity was slightly stronger than that of a TaHAK1 positive control. Subcellular localization analysis illustrated that TaHAK13 was located to the plasma membrane. When c(K(+)) ≤0.01 mM, the root length and fresh weight of TaHAK13 transgenic lines (athak5/TaHAK13, Col/TaHAK13) were significantly higher than those of non-transgenic lines (athak5, Col). Non-invasive micro-test technology (NMT) indicated that the net K influx of the transgenic lines was also higher than that of the non-transgenic lines. This suggests that TaHAK13 promotes K(+) absorption, especially in low potassium media. Membrane-based yeast two-hybrid (MbY2H) and luciferase complementation assays (LCA) showed that TaHAK13 interacted with TaNPF5.10 and TaNPF6.3. Our findings have helped to clarify the biological functions of TaHAK13 and established a theoretical framework to dissect its function in wheat. Frontiers Media S.A. 2022-12-23 /pmc/articles/PMC9816385/ /pubmed/36618640 http://dx.doi.org/10.3389/fpls.2022.1103235 Text en Copyright © 2022 Run, Cheng, Dou, Dong, Zhang, Li, Liu and Xu https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Run, Yonghang
Cheng, Xiyong
Dou, Wei
Dong, Yue
Zhang, Yanan
Li, Bingbing
Liu, Tengfei
Xu, Haixia
Wheat potassium transporter TaHAK13 mediates K(+) absorption and maintains potassium homeostasis under low potassium stress
title Wheat potassium transporter TaHAK13 mediates K(+) absorption and maintains potassium homeostasis under low potassium stress
title_full Wheat potassium transporter TaHAK13 mediates K(+) absorption and maintains potassium homeostasis under low potassium stress
title_fullStr Wheat potassium transporter TaHAK13 mediates K(+) absorption and maintains potassium homeostasis under low potassium stress
title_full_unstemmed Wheat potassium transporter TaHAK13 mediates K(+) absorption and maintains potassium homeostasis under low potassium stress
title_short Wheat potassium transporter TaHAK13 mediates K(+) absorption and maintains potassium homeostasis under low potassium stress
title_sort wheat potassium transporter tahak13 mediates k(+) absorption and maintains potassium homeostasis under low potassium stress
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9816385/
https://www.ncbi.nlm.nih.gov/pubmed/36618640
http://dx.doi.org/10.3389/fpls.2022.1103235
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