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Analysis of Germin-like protein genes family in Vitis vinifera (VvGLPs) using various in silico approaches

Authors :
M. Ilyas
A. Rahman
N. H. Khan
M. Haroon
H. Hussain
L. Rehman
M. Alam
A. Rauf
D. S. Waggas
S. Bawazeer
Source :
Brazilian Journal of Biology, Vol 84 (2022)
Publication Year :
2022
Publisher :
Instituto Internacional de Ecologia, 2022.

Abstract

Abstract Germin-like proteins (GLPs) play an important role against various stresses. Vitis vinifera L. genome contains 7 GLPs; many of them are functionally unexplored. However, the computational analysis may provide important new insight into their function. Currently, physicochemical properties, subcellular localization, domain architectures, 3D structures, N-glycosylation & phosphorylation sites, and phylogeney of the VvGLPs were investigated using the latest computational tools. Their functions were predicted using the Search tool for the retrieval of interacting genes/proteins (STRING) and Blast2Go servers. Most of the VvGLPs were extracellular (43%) in nature but also showed periplasmic (29%), plasma membrane (14%), and mitochondrial- or chloroplast-specific (14%) expression. The functional analysis predicted unique enzymatic activities for these proteins including terpene synthase, isoprenoid synthase, lipoxygenase, phosphate permease, receptor kinase, and hydrolases generally mediated by Mn+ cation. VvGLPs showed similarity in the overall structure, shape, and position of the cupin domain. Functionally, VvGLPs control and regulate the production of secondary metabolites to cope with various stresses. Phylogenetically VvGLP1, -3, -4, -5, and VvGLP7 showed greater similarity due to duplication while VvGLP2 and VvGLP6 revealed a distant relationship. Promoter analysis revealed the presence of diverse cis-regulatory elements among which CAAT box, MYB, MYC, unnamed-4 were common to all of them. The analysis will help to utilize VvGLPs and their promoters in future food programs by developing resistant cultivars against various biotic (Erysiphe necator and in Powdery Mildew etc.) and abiotic (Salt, drought, heat, dehydration, etc.) stresses.

Details

Language :
English
ISSN :
16784375 and 15196984
Volume :
84
Database :
Directory of Open Access Journals
Journal :
Brazilian Journal of Biology
Publication Type :
Academic Journal
Accession number :
edsdoj.211e526b194addaa919b9f72a6f22a
Document Type :
article
Full Text :
https://doi.org/10.1590/1519-6984.256732