GhVIM28, a negative regulator identified from VIM family genes to depredate protein systematically in cotton under salt stress

Author:

Yang Zhining1,Lu Xuke1,Wang Ning2,Mei Zhengding3,Fan Yapeng1,Zhang Menghao1,Wang Lidong1,Sun Yuping1,Chen Xiao1,Huang Hui1,Meng Yuan1,Liu Mengyue1,Han Mingge1,Chen Wenhua1,Zhang Xinrui1,Yu Xin1,Chen Xiugui1,Wang Shuai1,Wang Junjuan1,Zhao Lanjie1,Guo Lixue1,Peng Fanjia3,Feng Keyun2,Gao Wenwei4,Ye Wuwei1

Affiliation:

1. Institute of Cotton Research of Chinese Academy of Agricultural Sciences / Zhengzhou Research Base, Zhengzhou University

2. Gansu Academy of Agricultural Sciences

3. Hunan Institute of Cotton Science

4. Engineering Research Centre of Cotton, Ministry of Education / College of Agriculture, Xinjiang Agricultural University

Abstract

Abstract The VIM gene family plays a vital role in the growth, development, and stress responses of plants, while the molecular mechanism of VIM genes in responding to salt stress is remain unclear. This study analyzed the phylogenetic relationships, chromosomal localization, conserved motifs, gene structure, cis-acting elements, and gene expression patterns of the VIM gene family in four cotton varieties. A total of 29, 29, 17, and 14 members were identified in Gossypium hirsutum (G.hirsutum), Gossypium barbadense(G.barbadense), Gossypium arboreum (G.arboreum), and Gossypium raimondii (G. raimondii), respectively. Chromosomal localization indicated the maturity and evolution of this gene family. Analysis of gene structure and conserved motifs revealed a conserved pattern among GhVIMs genes. Furthermore, cis-acting element analysis demonstrated the presence of stress-responsive elements, hormone-responsive elements, and growth-related elements in the promoter region of GhVIMs genes, highlighting their significant role in plant growth and stress response. Additionally, gene expression analysis revealed different expression patterns and tissue specificity of GhVIMs genes under abiotic stress. To better understand the functional role of GhVIM28, GhVIM28 gene was silenced using virus-induced gene silencing, and the results indicated that GhVIM28 acts as a salt-tolerant negative regulator.

Publisher

Research Square Platform LLC

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