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GsCML27, a Gene Encoding a Calcium-Binding Ef-Hand Protein from Glycine soja, Plays Differential Roles in Plant Responses to Bicarbonate, Salt and Osmotic Stresses

Calcium, as the most widely accepted messenger, plays an important role in plant stress responses through calcium-dependent signaling pathways. The calmodulin-like family genes (CMLs) encode Ca(2+) sensors and function in signaling transduction in response to environmental stimuli. However, until no...

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Autores principales: Chen, Chao, Sun, Xiaoli, Duanmu, Huizi, Zhu, Dan, Yu, Yang, Cao, Lei, Liu, Ailin, Jia, Bowei, Xiao, Jialei, Zhu, Yanming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4638360/
https://www.ncbi.nlm.nih.gov/pubmed/26550992
http://dx.doi.org/10.1371/journal.pone.0141888
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author Chen, Chao
Sun, Xiaoli
Duanmu, Huizi
Zhu, Dan
Yu, Yang
Cao, Lei
Liu, Ailin
Jia, Bowei
Xiao, Jialei
Zhu, Yanming
author_facet Chen, Chao
Sun, Xiaoli
Duanmu, Huizi
Zhu, Dan
Yu, Yang
Cao, Lei
Liu, Ailin
Jia, Bowei
Xiao, Jialei
Zhu, Yanming
author_sort Chen, Chao
collection PubMed
description Calcium, as the most widely accepted messenger, plays an important role in plant stress responses through calcium-dependent signaling pathways. The calmodulin-like family genes (CMLs) encode Ca(2+) sensors and function in signaling transduction in response to environmental stimuli. However, until now, the function of plant CML proteins, especially soybean CMLs, is largely unknown. Here, we isolated a Glycine soja CML protein GsCML27, with four conserved EF-hands domains, and identified it as a calcium-binding protein through far-UV CD spectroscopy. We further found that expression of GsCML27 was induced by bicarbonate, salt and osmotic stresses. Interestingly, ectopic expression of GsCML27 in Arabidopsis enhanced plant tolerance to bicarbonate stress, but decreased the salt and osmotic tolerance during the seed germination and early growth stages. Furthermore, we found that ectopic expression of GsCML27 decreases salt tolerance through modifying both the cellular ionic (Na(+), K(+)) content and the osmotic stress regulation. GsCML27 ectopic expression also decreased the expression levels of osmotic stress-responsive genes. Moreover, we also showed that GsCML27 localized in the whole cell, including cytoplasm, plasma membrane and nucleus in Arabidopsis protoplasts and onion epidermal cells, and displayed high expression in roots and embryos. Together, these data present evidence that GsCML27 as a Ca(2+)-binding EF-hand protein plays a role in plant responses to bicarbonate, salt and osmotic stresses.
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spelling pubmed-46383602015-11-13 GsCML27, a Gene Encoding a Calcium-Binding Ef-Hand Protein from Glycine soja, Plays Differential Roles in Plant Responses to Bicarbonate, Salt and Osmotic Stresses Chen, Chao Sun, Xiaoli Duanmu, Huizi Zhu, Dan Yu, Yang Cao, Lei Liu, Ailin Jia, Bowei Xiao, Jialei Zhu, Yanming PLoS One Research Article Calcium, as the most widely accepted messenger, plays an important role in plant stress responses through calcium-dependent signaling pathways. The calmodulin-like family genes (CMLs) encode Ca(2+) sensors and function in signaling transduction in response to environmental stimuli. However, until now, the function of plant CML proteins, especially soybean CMLs, is largely unknown. Here, we isolated a Glycine soja CML protein GsCML27, with four conserved EF-hands domains, and identified it as a calcium-binding protein through far-UV CD spectroscopy. We further found that expression of GsCML27 was induced by bicarbonate, salt and osmotic stresses. Interestingly, ectopic expression of GsCML27 in Arabidopsis enhanced plant tolerance to bicarbonate stress, but decreased the salt and osmotic tolerance during the seed germination and early growth stages. Furthermore, we found that ectopic expression of GsCML27 decreases salt tolerance through modifying both the cellular ionic (Na(+), K(+)) content and the osmotic stress regulation. GsCML27 ectopic expression also decreased the expression levels of osmotic stress-responsive genes. Moreover, we also showed that GsCML27 localized in the whole cell, including cytoplasm, plasma membrane and nucleus in Arabidopsis protoplasts and onion epidermal cells, and displayed high expression in roots and embryos. Together, these data present evidence that GsCML27 as a Ca(2+)-binding EF-hand protein plays a role in plant responses to bicarbonate, salt and osmotic stresses. Public Library of Science 2015-11-09 /pmc/articles/PMC4638360/ /pubmed/26550992 http://dx.doi.org/10.1371/journal.pone.0141888 Text en © 2015 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, Chao
Sun, Xiaoli
Duanmu, Huizi
Zhu, Dan
Yu, Yang
Cao, Lei
Liu, Ailin
Jia, Bowei
Xiao, Jialei
Zhu, Yanming
GsCML27, a Gene Encoding a Calcium-Binding Ef-Hand Protein from Glycine soja, Plays Differential Roles in Plant Responses to Bicarbonate, Salt and Osmotic Stresses
title GsCML27, a Gene Encoding a Calcium-Binding Ef-Hand Protein from Glycine soja, Plays Differential Roles in Plant Responses to Bicarbonate, Salt and Osmotic Stresses
title_full GsCML27, a Gene Encoding a Calcium-Binding Ef-Hand Protein from Glycine soja, Plays Differential Roles in Plant Responses to Bicarbonate, Salt and Osmotic Stresses
title_fullStr GsCML27, a Gene Encoding a Calcium-Binding Ef-Hand Protein from Glycine soja, Plays Differential Roles in Plant Responses to Bicarbonate, Salt and Osmotic Stresses
title_full_unstemmed GsCML27, a Gene Encoding a Calcium-Binding Ef-Hand Protein from Glycine soja, Plays Differential Roles in Plant Responses to Bicarbonate, Salt and Osmotic Stresses
title_short GsCML27, a Gene Encoding a Calcium-Binding Ef-Hand Protein from Glycine soja, Plays Differential Roles in Plant Responses to Bicarbonate, Salt and Osmotic Stresses
title_sort gscml27, a gene encoding a calcium-binding ef-hand protein from glycine soja, plays differential roles in plant responses to bicarbonate, salt and osmotic stresses
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4638360/
https://www.ncbi.nlm.nih.gov/pubmed/26550992
http://dx.doi.org/10.1371/journal.pone.0141888
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