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GABA signalling modulates stomatal opening to enhance plant water use efficiency and drought resilience.


ABSTRACT: The non-protein amino acid γ-aminobutyric acid (GABA) has been proposed to be an ancient messenger for cellular communication conserved across biological kingdoms. GABA has well-defined signalling roles in animals; however, whilst GABA accumulates in plants under stress it has not been determined if, how, where and when GABA acts as an endogenous plant signalling molecule. Here, we establish endogenous GABA as a bona fide plant signal, acting via a mechanism not found in animals. Using Arabidopsis thaliana, we show guard cell GABA production is necessary and sufficient to reduce stomatal opening and transpirational water loss, which improves water use efficiency and drought tolerance, via negative regulation of a stomatal guard cell tonoplast-localised anion transporter. We find GABA modulation of stomata occurs in multiple plants, including dicot and monocot crops. This study highlights a role for GABA metabolism in fine tuning physiology and opens alternative avenues for improving plant stress resilience.

SUBMITTER: Xu B 

PROVIDER: S-EPMC8007581 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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GABA signalling modulates stomatal opening to enhance plant water use efficiency and drought resilience.

Xu Bo B   Long Yu Y   Feng Xueying X   Zhu Xujun X   Sai Na N   Chirkova Larissa L   Betts Annette A   Herrmann Johannes J   Edwards Everard J EJ   Okamoto Mamoru M   Hedrich Rainer R   Gilliham Matthew M  

Nature communications 20210329 1


The non-protein amino acid γ-aminobutyric acid (GABA) has been proposed to be an ancient messenger for cellular communication conserved across biological kingdoms. GABA has well-defined signalling roles in animals; however, whilst GABA accumulates in plants under stress it has not been determined if, how, where and when GABA acts as an endogenous plant signalling molecule. Here, we establish endogenous GABA as a bona fide plant signal, acting via a mechanism not found in animals. Using Arabidops  ...[more]

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