Comprehensive analysis of the GALACTINOL SYNTHASE (GolS) gene family in citrus and the function of CsGolS6 in stress tolerance
Galactinol synthase (GolS) catalyzes the first and rate-limiting step in the synthesis of raffinose family of oligosaccharides (RFOs), which serve as storage and transport sugars, signal transducers, compatible solutes and antioxidants in higher plants. The present work aimed to assess the potential...
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Veröffentlicht in: | PloS one 2022-09, Vol.17 (9), p.e0274791-e0274791 |
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Zusammenfassung: | Galactinol synthase (GolS) catalyzes the first and rate-limiting step in the synthesis of raffinose family of oligosaccharides (RFOs), which serve as storage and transport sugars, signal transducers, compatible solutes and antioxidants in higher plants. The present work aimed to assess the potential functions of citrus GolS in mechanisms of stress response and tolerance. By homology searches, eight
GolS
genes were found in the genomes of
Citrus sinensis
and
C
.
clementina
. Phylogenetic analysis showed that there is a
GolS
ortholog in
C
.
clementina
for each
C
.
sinensis GolS
, which have evolved differently from those of
Arabidopsis thaliana
. Transcriptional analysis indicated that most
C
.
sinensis GolS
(
CsGolS
) genes show a low-level tissue-specific and stress-inducible expression in response to drought and salt stress treatments, as well as to ‘
Candidatus
Liberibacter asiaticus’ infection.
CsGolS6
overexpression resulted in improved tobacco tolerance to drought and salt stresses, contributing to an increased mesophyll cell expansion, photosynthesis and plant growth. Primary metabolite profiling revealed no significant changes in endogenous galactinol, but different extents of reduction of raffinose in the transgenic plants. On the other hand, a significant increase in the levels of metabolites with antioxidant properties, such as ascorbate, dehydroascorbate, alfa-tocopherol and spermidine, was observed in the transgenic plants. These results bring evidence that
CsGolS6
is a potential candidate for improving stress tolerance in citrus and other plants. |
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ISSN: | 1932-6203 1932-6203 |
DOI: | 10.1371/journal.pone.0274791 |