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The Arabidopsis Thylakoid Chloride Channel AtCLCe Functions in Chloride Homeostasis and Regulation of Photosynthetic Electron Transport

Chloride ions can be translocated across cell membranes through Cl(−) channels or Cl(−)/H(+) exchangers. The thylakoid-located member of the Cl(−) channel CLC family in Arabidopsis thaliana (AtCLCe) was hypothesized to play a role in photosynthetic regulation based on the initial photosynthetic char...

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Autores principales: Herdean, Andrei, Nziengui, Hugues, Zsiros, Ottó, Solymosi, Katalin, Garab, Győző, Lundin, Björn, Spetea, Cornelia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4746265/
https://www.ncbi.nlm.nih.gov/pubmed/26904077
http://dx.doi.org/10.3389/fpls.2016.00115
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author Herdean, Andrei
Nziengui, Hugues
Zsiros, Ottó
Solymosi, Katalin
Garab, Győző
Lundin, Björn
Spetea, Cornelia
author_facet Herdean, Andrei
Nziengui, Hugues
Zsiros, Ottó
Solymosi, Katalin
Garab, Győző
Lundin, Björn
Spetea, Cornelia
author_sort Herdean, Andrei
collection PubMed
description Chloride ions can be translocated across cell membranes through Cl(−) channels or Cl(−)/H(+) exchangers. The thylakoid-located member of the Cl(−) channel CLC family in Arabidopsis thaliana (AtCLCe) was hypothesized to play a role in photosynthetic regulation based on the initial photosynthetic characterization of clce mutant lines. The reduced nitrate content of Arabidopsis clce mutants suggested a role in regulation of plant nitrate homeostasis. In this study, we aimed to further investigate the role of AtCLCe in the regulation of ion homeostasis and photosynthetic processes in the thylakoid membrane. We report that the size and composition of proton motive force were mildly altered in two independent Arabidopsis clce mutant lines. Most pronounced effects in the clce mutants were observed on the photosynthetic electron transport of dark-adapted plants, based on the altered shape and associated parameters of the polyphasic OJIP kinetics of chlorophyll a fluorescence induction. Other alterations were found in the kinetics of state transition and in the macro-organization of photosystem II supercomplexes, as indicated by circular dichroism measurements. Pre-treatment with KCl but not with KNO(3) restored the wild-type photosynthetic phenotype. Analyses by transmission electron microscopy revealed a bow-like arrangement of the thylakoid network and a large thylakoid-free stromal region in chloroplast sections from the dark-adapted clce plants. Based on these data, we propose that AtCLCe functions in Cl(−) homeostasis after transition from light to dark, which affects chloroplast ultrastructure and regulation of photosynthetic electron transport.
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spelling pubmed-47462652016-02-22 The Arabidopsis Thylakoid Chloride Channel AtCLCe Functions in Chloride Homeostasis and Regulation of Photosynthetic Electron Transport Herdean, Andrei Nziengui, Hugues Zsiros, Ottó Solymosi, Katalin Garab, Győző Lundin, Björn Spetea, Cornelia Front Plant Sci Plant Science Chloride ions can be translocated across cell membranes through Cl(−) channels or Cl(−)/H(+) exchangers. The thylakoid-located member of the Cl(−) channel CLC family in Arabidopsis thaliana (AtCLCe) was hypothesized to play a role in photosynthetic regulation based on the initial photosynthetic characterization of clce mutant lines. The reduced nitrate content of Arabidopsis clce mutants suggested a role in regulation of plant nitrate homeostasis. In this study, we aimed to further investigate the role of AtCLCe in the regulation of ion homeostasis and photosynthetic processes in the thylakoid membrane. We report that the size and composition of proton motive force were mildly altered in two independent Arabidopsis clce mutant lines. Most pronounced effects in the clce mutants were observed on the photosynthetic electron transport of dark-adapted plants, based on the altered shape and associated parameters of the polyphasic OJIP kinetics of chlorophyll a fluorescence induction. Other alterations were found in the kinetics of state transition and in the macro-organization of photosystem II supercomplexes, as indicated by circular dichroism measurements. Pre-treatment with KCl but not with KNO(3) restored the wild-type photosynthetic phenotype. Analyses by transmission electron microscopy revealed a bow-like arrangement of the thylakoid network and a large thylakoid-free stromal region in chloroplast sections from the dark-adapted clce plants. Based on these data, we propose that AtCLCe functions in Cl(−) homeostasis after transition from light to dark, which affects chloroplast ultrastructure and regulation of photosynthetic electron transport. Frontiers Media S.A. 2016-02-09 /pmc/articles/PMC4746265/ /pubmed/26904077 http://dx.doi.org/10.3389/fpls.2016.00115 Text en Copyright © 2016 Herdean, Nziengui, Zsiros, Solymosi, Garab, Lundin and Spetea. http://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) or licensor 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
Herdean, Andrei
Nziengui, Hugues
Zsiros, Ottó
Solymosi, Katalin
Garab, Győző
Lundin, Björn
Spetea, Cornelia
The Arabidopsis Thylakoid Chloride Channel AtCLCe Functions in Chloride Homeostasis and Regulation of Photosynthetic Electron Transport
title The Arabidopsis Thylakoid Chloride Channel AtCLCe Functions in Chloride Homeostasis and Regulation of Photosynthetic Electron Transport
title_full The Arabidopsis Thylakoid Chloride Channel AtCLCe Functions in Chloride Homeostasis and Regulation of Photosynthetic Electron Transport
title_fullStr The Arabidopsis Thylakoid Chloride Channel AtCLCe Functions in Chloride Homeostasis and Regulation of Photosynthetic Electron Transport
title_full_unstemmed The Arabidopsis Thylakoid Chloride Channel AtCLCe Functions in Chloride Homeostasis and Regulation of Photosynthetic Electron Transport
title_short The Arabidopsis Thylakoid Chloride Channel AtCLCe Functions in Chloride Homeostasis and Regulation of Photosynthetic Electron Transport
title_sort arabidopsis thylakoid chloride channel atclce functions in chloride homeostasis and regulation of photosynthetic electron transport
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4746265/
https://www.ncbi.nlm.nih.gov/pubmed/26904077
http://dx.doi.org/10.3389/fpls.2016.00115
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