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The BIG protein distinguishes the process of CO (2)‐induced stomatal closure from the inhibition of stomatal opening by CO (2)

We conducted an infrared thermal imaging‐based genetic screen to identify Arabidopsis mutants displaying aberrant stomatal behavior in response to elevated concentrations of CO (2). This approach resulted in the isolation of a novel allele of the Arabidopsis BIG locus (At3g02260) that we have called...

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Autores principales: He, Jingjing, Zhang, Ruo‐Xi, Peng, Kai, Tagliavia, Cecilia, Li, Siwen, Xue, Shaowu, Liu, Amy, Hu, Honghong, Zhang, Jingbo, Hubbard, Katharine E., Held, Katrin, McAinsh, Martin R., Gray, Julie E., Kudla, Jörg, Schroeder, Julian I., Liang, Yun‐Kuan, Hetherington, Alistair M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5887946/
https://www.ncbi.nlm.nih.gov/pubmed/29292834
http://dx.doi.org/10.1111/nph.14957
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author He, Jingjing
Zhang, Ruo‐Xi
Peng, Kai
Tagliavia, Cecilia
Li, Siwen
Xue, Shaowu
Liu, Amy
Hu, Honghong
Zhang, Jingbo
Hubbard, Katharine E.
Held, Katrin
McAinsh, Martin R.
Gray, Julie E.
Kudla, Jörg
Schroeder, Julian I.
Liang, Yun‐Kuan
Hetherington, Alistair M.
author_facet He, Jingjing
Zhang, Ruo‐Xi
Peng, Kai
Tagliavia, Cecilia
Li, Siwen
Xue, Shaowu
Liu, Amy
Hu, Honghong
Zhang, Jingbo
Hubbard, Katharine E.
Held, Katrin
McAinsh, Martin R.
Gray, Julie E.
Kudla, Jörg
Schroeder, Julian I.
Liang, Yun‐Kuan
Hetherington, Alistair M.
author_sort He, Jingjing
collection PubMed
description We conducted an infrared thermal imaging‐based genetic screen to identify Arabidopsis mutants displaying aberrant stomatal behavior in response to elevated concentrations of CO (2). This approach resulted in the isolation of a novel allele of the Arabidopsis BIG locus (At3g02260) that we have called CO (2) insensitive 1 (cis1). BIG mutants are compromised in elevated CO (2)‐induced stomatal closure and bicarbonate activation of S‐type anion channel currents. In contrast with the wild‐type, they fail to exhibit reductions in stomatal density and index when grown in elevated CO (2). However, like the wild‐type, BIG mutants display inhibition of stomatal opening when exposed to elevated CO (2). BIG mutants also display wild‐type stomatal aperture responses to the closure‐inducing stimulus abscisic acid (ABA). Our results indicate that BIG is a signaling component involved in the elevated CO (2)‐mediated control of stomatal development. In the control of stomatal aperture by CO (2), BIG is only required in elevated CO (2)‐induced closure and not in the inhibition of stomatal opening by this environmental signal. These data show that, at the molecular level, the CO (2)‐mediated inhibition of opening and promotion of stomatal closure signaling pathways are separable and BIG represents a distinguishing element in these two CO (2)‐mediated responses.
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spelling pubmed-58879462018-04-12 The BIG protein distinguishes the process of CO (2)‐induced stomatal closure from the inhibition of stomatal opening by CO (2) He, Jingjing Zhang, Ruo‐Xi Peng, Kai Tagliavia, Cecilia Li, Siwen Xue, Shaowu Liu, Amy Hu, Honghong Zhang, Jingbo Hubbard, Katharine E. Held, Katrin McAinsh, Martin R. Gray, Julie E. Kudla, Jörg Schroeder, Julian I. Liang, Yun‐Kuan Hetherington, Alistair M. New Phytol Research We conducted an infrared thermal imaging‐based genetic screen to identify Arabidopsis mutants displaying aberrant stomatal behavior in response to elevated concentrations of CO (2). This approach resulted in the isolation of a novel allele of the Arabidopsis BIG locus (At3g02260) that we have called CO (2) insensitive 1 (cis1). BIG mutants are compromised in elevated CO (2)‐induced stomatal closure and bicarbonate activation of S‐type anion channel currents. In contrast with the wild‐type, they fail to exhibit reductions in stomatal density and index when grown in elevated CO (2). However, like the wild‐type, BIG mutants display inhibition of stomatal opening when exposed to elevated CO (2). BIG mutants also display wild‐type stomatal aperture responses to the closure‐inducing stimulus abscisic acid (ABA). Our results indicate that BIG is a signaling component involved in the elevated CO (2)‐mediated control of stomatal development. In the control of stomatal aperture by CO (2), BIG is only required in elevated CO (2)‐induced closure and not in the inhibition of stomatal opening by this environmental signal. These data show that, at the molecular level, the CO (2)‐mediated inhibition of opening and promotion of stomatal closure signaling pathways are separable and BIG represents a distinguishing element in these two CO (2)‐mediated responses. John Wiley and Sons Inc. 2018-01-02 2018-04 /pmc/articles/PMC5887946/ /pubmed/29292834 http://dx.doi.org/10.1111/nph.14957 Text en © 2018 The Authors. New Phytologist © 2018 New Phytologist Trust This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
He, Jingjing
Zhang, Ruo‐Xi
Peng, Kai
Tagliavia, Cecilia
Li, Siwen
Xue, Shaowu
Liu, Amy
Hu, Honghong
Zhang, Jingbo
Hubbard, Katharine E.
Held, Katrin
McAinsh, Martin R.
Gray, Julie E.
Kudla, Jörg
Schroeder, Julian I.
Liang, Yun‐Kuan
Hetherington, Alistair M.
The BIG protein distinguishes the process of CO (2)‐induced stomatal closure from the inhibition of stomatal opening by CO (2)
title The BIG protein distinguishes the process of CO (2)‐induced stomatal closure from the inhibition of stomatal opening by CO (2)
title_full The BIG protein distinguishes the process of CO (2)‐induced stomatal closure from the inhibition of stomatal opening by CO (2)
title_fullStr The BIG protein distinguishes the process of CO (2)‐induced stomatal closure from the inhibition of stomatal opening by CO (2)
title_full_unstemmed The BIG protein distinguishes the process of CO (2)‐induced stomatal closure from the inhibition of stomatal opening by CO (2)
title_short The BIG protein distinguishes the process of CO (2)‐induced stomatal closure from the inhibition of stomatal opening by CO (2)
title_sort big protein distinguishes the process of co (2)‐induced stomatal closure from the inhibition of stomatal opening by co (2)
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5887946/
https://www.ncbi.nlm.nih.gov/pubmed/29292834
http://dx.doi.org/10.1111/nph.14957
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