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PMID: 20122158 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

The Arabidopsis pop2-1 mutant reveals the involvement of GABA transaminase in salt stress tolerance.

BMC plant biology ·Vol. 10 ·2010-02-01 ·Pages 20

Renault H, Roussel V, El Amrani A, Arzel M, Renault D, Bouchereau A, Deleu C

Abstract

GABA (gamma-aminobutyric acid) is a non protein amino acid that has been reported to accumulate in a number of plant species when subjected to high salinity and many other environmental constraints. However, no experimental data are to date available on the molecular function of GABA and the involvement of its metabolism in salt stress tolerance in higher plants. Here, we investigated the regulation of GABA metabolism in Arabidopsis thaliana at the metabolite, enzymatic activity and gene transcription levels upon NaCl stress. We identified the GABA transaminase (GABA-T), the first step of GABA catabolism, as the most responsive to NaCl. We further performed a functional analysis of the corresponding gene POP2 and demonstrated that the previously isolated loss-of-function pop2-1 mutant was oversensitive to ionic stress but not to osmotic stress suggesting a specific role in salt tolerance. NaCl oversensitivity was not associated with overaccumulation of Na+ and Cl- but mutant showed a slight decrease in K+. To bring insights into POP2 function, a promoter-reporter gene strategy was used and showed that POP2 was mainly expressed in roots under control conditions and was induced in primary root apex and aerial parts of plants in response to NaCl. Additionally, GC-MS- and UPLC-based metabolite profiling revealed major changes in roots of pop2-1 mutant upon NaCl stress including accumulation of amino acids and decrease in carbohydrates content. GABA metabolism was overall up-regulated in response to NaCl in Arabidopsis. Particularly, GABA-T was found to play a pivotal function and impairment of this step was responsible for a decrease in salt tolerance indicating that GABA catabolism was a determinant of Arabidopsis salt tolerance. GABA-T would act in salt responses in linking N and C metabolisms in roots.

MeSH Terms
4-Aminobutyrate Transaminase/genetics,metabolism Arabidopsis/enzymology,genetics Arabidopsis Proteins/genetics,metabolism Gene Expression Regulation, Plant Mutation Plant Roots/enzymology,genetics Plants, Genetically Modified/enzymology,genetics RNA, Plant/genetics Salt-Tolerant Plants/enzymology,genetics Sodium Chloride/pharmacology Transaminases/genetics,metabolism Transcription, Genetic
Chemicals
Arabidopsis Proteins RNA, Plant Sodium Chloride Transaminases 4-Aminobutyrate Transaminase POP2 protein, Arabidopsis
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Renault Hugues
INRA-Agrocampus Ouest-Université de Rennes 1, UMR 118 Amélioration des Plantes et Biotechnologies Végétales, F-35653, Le Rheu cedex, France.
Roussel Valérie
El Amrani Abdelhak
Arzel Matthieu
Renault David
Bouchereau Alain
Deleu Carole
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Article Info
Journal
BMC plant biology
Abbr.
BMC Plant Biol
ISSN
1471-2229
Published
2010-02-01
Epub
2010-00-01
Pages
20
Language
English
Region
England
NLM ID
100967807
PMCID
PMC2825238
Subset
IM
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