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Nitric Oxide Mediates Root K(+)/Na(+) Balance in a Mangrove Plant, Kandelia obovata, by Enhancing the Expression of AKT1-Type K(+) Channel and Na(+)/H(+) Antiporter under High Salinity

It is well known that nitric oxide (NO) enhances salt tolerance of glycophytes. However, the effect of NO on modulating ionic balance in halophytes is not very clear. This study focuses on the role of NO in mediating K(+)/Na(+) balance in a mangrove species, Kandelia obovata Sheue, Liu and Yong. We...

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Autores principales: Chen, Juan, Xiong, Duan-Ye, Wang, Wen-Hua, Hu, Wen-Jun, Simon, Martin, Xiao, Qiang, Liu, Ting-Wu, Liu, Xiang, Zheng, Hai-Lei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3747234/
https://www.ncbi.nlm.nih.gov/pubmed/23977070
http://dx.doi.org/10.1371/journal.pone.0071543
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author Chen, Juan
Xiong, Duan-Ye
Wang, Wen-Hua
Hu, Wen-Jun
Simon, Martin
Xiao, Qiang
Chen, Juan
Liu, Ting-Wu
Liu, Xiang
Zheng, Hai-Lei
author_facet Chen, Juan
Xiong, Duan-Ye
Wang, Wen-Hua
Hu, Wen-Jun
Simon, Martin
Xiao, Qiang
Chen, Juan
Liu, Ting-Wu
Liu, Xiang
Zheng, Hai-Lei
author_sort Chen, Juan
collection PubMed
description It is well known that nitric oxide (NO) enhances salt tolerance of glycophytes. However, the effect of NO on modulating ionic balance in halophytes is not very clear. This study focuses on the role of NO in mediating K(+)/Na(+) balance in a mangrove species, Kandelia obovata Sheue, Liu and Yong. We first analyzed the effects of sodium nitroprusside (SNP), an NO donor, on ion content and ion flux in the roots of K. obovata under high salinity. The results showed that 100 μM SNP significantly increased K(+) content and Na(+) efflux, but decreased Na(+) content and K(+) efflux. These effects of NO were reversed by specific NO synthesis inhibitor and scavenger, which confirmed the role of NO in retaining K(+) and reducing Na(+) in K. obovata roots. Using western-blot analysis, we found that NO increased the protein expression of plasma membrane (PM) H(+)-ATPase and vacuolar Na(+)/H(+) antiporter, which were crucial proteins for ionic balance. To further clarify the molecular mechanism of NO-modulated K(+)/Na(+) balance, partial cDNA fragments of inward-rectifying K(+) channel, PM Na(+)/H(+) antiporter, PM H(+)-ATPase, vacuolar Na(+)/H(+) antiporter and vacuolar H(+)-ATPase subunit c were isolated. Results of quantitative real-time PCR showed that NO increased the relative expression levels of these genes, while this increase was blocked by NO synthesis inhibitors and scavenger. Above results indicate that NO greatly contribute to K(+)/Na(+) balance in high salinity-treated K. obovata roots, by activating AKT1-type K(+) channel and Na(+)/H(+) antiporter, which are the critical components in K(+)/Na(+) transport system.
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spelling pubmed-37472342013-08-23 Nitric Oxide Mediates Root K(+)/Na(+) Balance in a Mangrove Plant, Kandelia obovata, by Enhancing the Expression of AKT1-Type K(+) Channel and Na(+)/H(+) Antiporter under High Salinity Chen, Juan Xiong, Duan-Ye Wang, Wen-Hua Hu, Wen-Jun Simon, Martin Xiao, Qiang Chen, Juan Liu, Ting-Wu Liu, Xiang Zheng, Hai-Lei PLoS One Research Article It is well known that nitric oxide (NO) enhances salt tolerance of glycophytes. However, the effect of NO on modulating ionic balance in halophytes is not very clear. This study focuses on the role of NO in mediating K(+)/Na(+) balance in a mangrove species, Kandelia obovata Sheue, Liu and Yong. We first analyzed the effects of sodium nitroprusside (SNP), an NO donor, on ion content and ion flux in the roots of K. obovata under high salinity. The results showed that 100 μM SNP significantly increased K(+) content and Na(+) efflux, but decreased Na(+) content and K(+) efflux. These effects of NO were reversed by specific NO synthesis inhibitor and scavenger, which confirmed the role of NO in retaining K(+) and reducing Na(+) in K. obovata roots. Using western-blot analysis, we found that NO increased the protein expression of plasma membrane (PM) H(+)-ATPase and vacuolar Na(+)/H(+) antiporter, which were crucial proteins for ionic balance. To further clarify the molecular mechanism of NO-modulated K(+)/Na(+) balance, partial cDNA fragments of inward-rectifying K(+) channel, PM Na(+)/H(+) antiporter, PM H(+)-ATPase, vacuolar Na(+)/H(+) antiporter and vacuolar H(+)-ATPase subunit c were isolated. Results of quantitative real-time PCR showed that NO increased the relative expression levels of these genes, while this increase was blocked by NO synthesis inhibitors and scavenger. Above results indicate that NO greatly contribute to K(+)/Na(+) balance in high salinity-treated K. obovata roots, by activating AKT1-type K(+) channel and Na(+)/H(+) antiporter, which are the critical components in K(+)/Na(+) transport system. Public Library of Science 2013-08-19 /pmc/articles/PMC3747234/ /pubmed/23977070 http://dx.doi.org/10.1371/journal.pone.0071543 Text en © 2013 Chen et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Chen, Juan
Xiong, Duan-Ye
Wang, Wen-Hua
Hu, Wen-Jun
Simon, Martin
Xiao, Qiang
Chen, Juan
Liu, Ting-Wu
Liu, Xiang
Zheng, Hai-Lei
Nitric Oxide Mediates Root K(+)/Na(+) Balance in a Mangrove Plant, Kandelia obovata, by Enhancing the Expression of AKT1-Type K(+) Channel and Na(+)/H(+) Antiporter under High Salinity
title Nitric Oxide Mediates Root K(+)/Na(+) Balance in a Mangrove Plant, Kandelia obovata, by Enhancing the Expression of AKT1-Type K(+) Channel and Na(+)/H(+) Antiporter under High Salinity
title_full Nitric Oxide Mediates Root K(+)/Na(+) Balance in a Mangrove Plant, Kandelia obovata, by Enhancing the Expression of AKT1-Type K(+) Channel and Na(+)/H(+) Antiporter under High Salinity
title_fullStr Nitric Oxide Mediates Root K(+)/Na(+) Balance in a Mangrove Plant, Kandelia obovata, by Enhancing the Expression of AKT1-Type K(+) Channel and Na(+)/H(+) Antiporter under High Salinity
title_full_unstemmed Nitric Oxide Mediates Root K(+)/Na(+) Balance in a Mangrove Plant, Kandelia obovata, by Enhancing the Expression of AKT1-Type K(+) Channel and Na(+)/H(+) Antiporter under High Salinity
title_short Nitric Oxide Mediates Root K(+)/Na(+) Balance in a Mangrove Plant, Kandelia obovata, by Enhancing the Expression of AKT1-Type K(+) Channel and Na(+)/H(+) Antiporter under High Salinity
title_sort nitric oxide mediates root k(+)/na(+) balance in a mangrove plant, kandelia obovata, by enhancing the expression of akt1-type k(+) channel and na(+)/h(+) antiporter under high salinity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3747234/
https://www.ncbi.nlm.nih.gov/pubmed/23977070
http://dx.doi.org/10.1371/journal.pone.0071543
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