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GhVIM28, a negative regulator identified from VIM family genes, positively responds to salt stress in cotton.

Authors :
Yang, Zhining
Lu, Xuke
Wang, Ning
Mei, Zhengding
Fan, Yapeng
Zhang, Menghao
Wang, Lidong
Sun, Yuping
Chen, Xiao
Huang, Hui
Meng, Yuan
Liu, Mengyue
Han, Mingge
Chen, Wenhua
Zhang, Xinrui
Yu, Xin
Chen, Xiugui
Wang, Shuai
Wang, Junjuan
Zhao, Lanjie
Source :
BMC Plant Biology. 5/21/2024, Vol. 24 Issue 1, p1-16. 16p.
Publication Year :
2024

Abstract

The VIM (belonged to E3 ubiquitin ligase) gene family is crucial for plant growth, development, and stress responses, yet their role in salt stress remains unclear. We analyzed phylogenetic relationships, chromosomal localization, conserved motifs, gene structure, cis-acting elements, and gene expression patterns of the VIM gene family in four cotton varieties. Our findings reveal 29, 29, 17, and 14 members in Gossypium hirsutum (G.hirsutum), Gossypium barbadense (G.barbadense), Gossypium arboreum (G.arboreum), and Gossypium raimondii (G. raimondii), respectively, indicating the maturity and evolution of this gene family. motifs among GhVIMs genes were observed, along with the presence of stress-responsive, hormone-responsive, and growth-related elements in their promoter regions. Gene expression analysis showed varying patterns and tissue specificity of GhVIMs genes under abiotic stress. Silencing GhVIM28 via virus-induced gene silencing revealed its role as a salt-tolerant negative regulator. This work reveals a mechanism by which the VIM gene family in response to salt stress in cotton, identifying a potential negative regulator, GhVIM28, which could be targeted for enhancing salt tolerance in cotton. The objective of this study was to explore the evolutionary relationship of the VIM gene family and its potential function in salt stress tolerance, and provide important genetic resources for salt tolerance breeding of cotton. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14712229
Volume :
24
Issue :
1
Database :
Academic Search Index
Journal :
BMC Plant Biology
Publication Type :
Academic Journal
Accession number :
177392684
Full Text :
https://doi.org/10.1186/s12870-024-05156-8