Identification of GH17 gene family in Vitis vinifera and expression analysis of GH17 under various adversities
Glycoside hydrolase (GH, EC 3.2.1) is a group of enzymes that hydrolyzes glycosidic bonds and play a role in the hydrolysis and synthesis of sugars in living organisms. Vitis vinifera is an important fruit crop and it harbors GH17 gene family however, their function in grapes has not been systematic...
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Veröffentlicht in: | Physiology and molecular biology of plants 2021-07, Vol.27 (7), p.1423-1436 |
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Sprache: | eng |
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Zusammenfassung: | Glycoside hydrolase (GH, EC 3.2.1) is a group of enzymes that hydrolyzes glycosidic bonds and play a role in the hydrolysis and synthesis of sugars in living organisms.
Vitis vinifera
is an important fruit crop and it harbors
GH17
gene family however, their function in grapes has not been systematically investigated. In this study, a total of 870
GH17
genes were identified from 14 plant species and their structural domain, sequence alignment, phylogenetic tree, collinear analysis, with the expression profiles of
VviGH17
gene family was performed. The promoter analysis of
VviGH17
gene showed the presence of
cis
-acting elements, which are responsive to plant growth and development. In addition, elements for plant hormones were found that are triggered in response to abiotic/biological stress. Transcriptomic data led to the identification of several
VviGH17
genes, which are associated with bud dormancy and in response to abiotic stress. Transcript analysis was carried out for some of the selected
VviGH17
genes RT-qPCR.
VviGH17-16
and
VviGH17-30
genes were differentially expressed during bud dormancy, fruit development and different abiotic stresses. Moreover,
VviGH17-37
and
VviGH17-44
were differentially expressed at fruit development, in response to abiotic stress. In addition, subcellular localization predicts that the
VviGH17-16
,
VviGH17-30
, and
VviGH17-37
genes were located in the cell membrane, while
VviGH17-44
gene was located in the vacuole. In conclusion, our study led to the identification of several
GH17s
and their probable role in development and stress. |
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ISSN: | 0971-5894 0974-0430 |
DOI: | 10.1007/s12298-021-01014-1 |