Genome-Wide Identification of CHYR Gene Family in Sophora alopecuroides and Functional Analysis of SaCHYR4 in Response to Abiotic Stress

Author:

Zhu Youcheng12,Wang Ying2,Ma Zhipeng2,Wang Di2,Yan Fan2ORCID,Liu Yajing2,Li Jingwen2,Yang Xuguang2,Gao Ziwei2,Liu Xu2,Wang Le2ORCID,Wang Qingyu2ORCID

Affiliation:

1. College of Biological and Agricultural Engineering, Jilin University, Changchun 130022, China

2. College of Plant Science, Jilin University, Changchun 130062, China

Abstract

Sophora alopecuroides has important uses in medicine, wind breaking, and sand fixation. The CHY-zinc-finger and RING-finger (CHYR) proteins are crucial for plant growth, development, and environmental adaptation; however, genetic data regarding the CHYR family remain scarce. We aimed to investigate the CHYR gene family in S. alopecuroides and its response to abiotic stress, and identified 18 new SaCHYR genes from S. alopecuroides whole-genome data, categorized into 3 subclasses through a phylogenetic analysis. Gene structure, protein domains, and conserved motifs analyses revealed an exon–intron structure and conserved domain similarities. A chromosome localization analysis showed distribution across 12 chromosomes. A promoter analysis revealed abiotic stress-, light-, and hormone-responsive elements. An RNA-sequencing expression pattern analysis revealed positive responses of SaCHYR genes to salt, alkali, and drought stress. SaCHYR4 overexpression considerably enhanced alkali and drought tolerance in Arabidopsis thaliana. These findings shed light on SaCHYR’s function and the resistance mechanisms of S. alopecuroides, presenting new genetic resources for crop resistance breeding.

Funder

Key R&D projects during the 14th Five Year Plan period

National Natural Science Foundation of China

National Science Foundation of Jilin Province

Graduate Innovation Fund of Jilin University

2023 Soybean New National Advantage Characteristic Industry Cluster Project

Publisher

MDPI AG

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