New ABA-hypersensitive Arabidopsis mutants are affected in loci mediating responses to water deficit and Dickeya dadantii infection.

On water deficit, abscisic acid (ABA) induces stomata closure to reduce water loss by transpiration. To identify Arabidopsis thaliana mutants which transpire less on drought, infrared thermal imaging of leaf temperature has been used to screen for suppressors of an ABA-deficient mutant (aba3-1) cold...

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Main Authors: Anne Plessis, Raphaël Cournol, Delphine Effroy, Viridiana Silva Pérez, Lucy Botran, Yvan Kraepiel, Anne Frey, Bruno Sotta, Gabriel Cornic, Jeffrey Leung, Jérôme Giraudat, Annie Marion-Poll, Helen M North
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3102102?pdf=render
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author Anne Plessis
Raphaël Cournol
Delphine Effroy
Viridiana Silva Pérez
Lucy Botran
Yvan Kraepiel
Anne Frey
Bruno Sotta
Gabriel Cornic
Jeffrey Leung
Jérôme Giraudat
Annie Marion-Poll
Helen M North
author_facet Anne Plessis
Raphaël Cournol
Delphine Effroy
Viridiana Silva Pérez
Lucy Botran
Yvan Kraepiel
Anne Frey
Bruno Sotta
Gabriel Cornic
Jeffrey Leung
Jérôme Giraudat
Annie Marion-Poll
Helen M North
author_sort Anne Plessis
collection DOAJ
description On water deficit, abscisic acid (ABA) induces stomata closure to reduce water loss by transpiration. To identify Arabidopsis thaliana mutants which transpire less on drought, infrared thermal imaging of leaf temperature has been used to screen for suppressors of an ABA-deficient mutant (aba3-1) cold-leaf phenotype. Three novel mutants, called hot ABA-deficiency suppressor (has), have been identified with hot-leaf phenotypes in the absence of the aba3 mutation. The defective genes imparted no apparent modification to ABA production on water deficit, were inherited recessively and enhanced ABA responses indicating that the proteins encoded are negative regulators of ABA signalling. All three mutants showed ABA-hypersensitive stomata closure and inhibition of root elongation with little modification of growth and development in non-stressed conditions. The has2 mutant also exhibited increased germination inhibition by ABA, while ABA-inducible gene expression was not modified on dehydration, indicating the mutated gene affects early ABA-signalling responses that do not modify transcript levels. In contrast, weak ABA-hypersensitivity relative to mutant developmental phenotypes suggests that HAS3 regulates drought responses by both ABA-dependent and independent pathways. has1 mutant phenotypes were only apparent on stress or ABA treatments, and included reduced water loss on rapid dehydration. The HAS1 locus thus has the required characteristics for a targeted approach to improving resistance to water deficit. In contrast to has2, has1 exhibited only minor changes in susceptibility to Dickeya dadantii despite similar ABA-hypersensitivity, indicating that crosstalk between ABA responses to this pathogen and drought stress can occur through more than one point in the signalling pathway.
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spelling doaj.art-ffe475ad4735437ba98e4b61a407c2d22022-12-21T17:45:38ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0165e2024310.1371/journal.pone.0020243New ABA-hypersensitive Arabidopsis mutants are affected in loci mediating responses to water deficit and Dickeya dadantii infection.Anne PlessisRaphaël CournolDelphine EffroyViridiana Silva PérezLucy BotranYvan KraepielAnne FreyBruno SottaGabriel CornicJeffrey LeungJérôme GiraudatAnnie Marion-PollHelen M NorthOn water deficit, abscisic acid (ABA) induces stomata closure to reduce water loss by transpiration. To identify Arabidopsis thaliana mutants which transpire less on drought, infrared thermal imaging of leaf temperature has been used to screen for suppressors of an ABA-deficient mutant (aba3-1) cold-leaf phenotype. Three novel mutants, called hot ABA-deficiency suppressor (has), have been identified with hot-leaf phenotypes in the absence of the aba3 mutation. The defective genes imparted no apparent modification to ABA production on water deficit, were inherited recessively and enhanced ABA responses indicating that the proteins encoded are negative regulators of ABA signalling. All three mutants showed ABA-hypersensitive stomata closure and inhibition of root elongation with little modification of growth and development in non-stressed conditions. The has2 mutant also exhibited increased germination inhibition by ABA, while ABA-inducible gene expression was not modified on dehydration, indicating the mutated gene affects early ABA-signalling responses that do not modify transcript levels. In contrast, weak ABA-hypersensitivity relative to mutant developmental phenotypes suggests that HAS3 regulates drought responses by both ABA-dependent and independent pathways. has1 mutant phenotypes were only apparent on stress or ABA treatments, and included reduced water loss on rapid dehydration. The HAS1 locus thus has the required characteristics for a targeted approach to improving resistance to water deficit. In contrast to has2, has1 exhibited only minor changes in susceptibility to Dickeya dadantii despite similar ABA-hypersensitivity, indicating that crosstalk between ABA responses to this pathogen and drought stress can occur through more than one point in the signalling pathway.http://europepmc.org/articles/PMC3102102?pdf=render
spellingShingle Anne Plessis
Raphaël Cournol
Delphine Effroy
Viridiana Silva Pérez
Lucy Botran
Yvan Kraepiel
Anne Frey
Bruno Sotta
Gabriel Cornic
Jeffrey Leung
Jérôme Giraudat
Annie Marion-Poll
Helen M North
New ABA-hypersensitive Arabidopsis mutants are affected in loci mediating responses to water deficit and Dickeya dadantii infection.
PLoS ONE
title New ABA-hypersensitive Arabidopsis mutants are affected in loci mediating responses to water deficit and Dickeya dadantii infection.
title_full New ABA-hypersensitive Arabidopsis mutants are affected in loci mediating responses to water deficit and Dickeya dadantii infection.
title_fullStr New ABA-hypersensitive Arabidopsis mutants are affected in loci mediating responses to water deficit and Dickeya dadantii infection.
title_full_unstemmed New ABA-hypersensitive Arabidopsis mutants are affected in loci mediating responses to water deficit and Dickeya dadantii infection.
title_short New ABA-hypersensitive Arabidopsis mutants are affected in loci mediating responses to water deficit and Dickeya dadantii infection.
title_sort new aba hypersensitive arabidopsis mutants are affected in loci mediating responses to water deficit and dickeya dadantii infection
url http://europepmc.org/articles/PMC3102102?pdf=render
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