Identification of the BcLEA Gene Family and Functional Analysis of the BcLEA73 Gene in Wucai (Brassica campestris L.)

Author:

Jiang Yueyue12,Zhang Shengnan12ORCID,Xu Hongcheng12,Tian Hong12,Zhang Mengyun12,Zhu Shidong123ORCID,Wang Chenggang123ORCID,Hou Jinfeng123,Chen Guohu123,Tang Xiaoyan123,Wang Wenjie12,Wu Jianqiang12,Huang Xingxue3,Zhang Jinlong4,Yuan Lingyun123ORCID

Affiliation:

1. Vegetable Genetics and Breeding Laboratory, College of Horticulture, Anhui Agricultural University, Hefei 230036, China

2. Anhui Provincial Engineering Laboratory of Horticultural Crop Breeding, Hefei 230036, China

3. Department of Vegetable Culture and Breeding, Wanjiang Vegetable Industrial Technology Institute, Maanshan 238200, China

4. Vegetable Industry Office, Agricultural and Rural Bureau of He County, Maanshan 238201, China

Abstract

Late embryogenesis abundant (LEA) proteins are important developmental proteins in the response of plants to abiotic stress. In our previous study, BcLEA73 was differentially expressed under low-temperature stress. Herein, we combined bioinformatics analysis, subcellular localization, expression assays, and stress experiments (including salt, drought, and osmotic stress) to identify and analyze the BcLEA gene family. Gene cloning and functional analysis of BcLEA73 were performed in tobacco and Arabidopsis. Based on the sequence homology and the available conservative motif, 82 BrLEA gene family members were identified and were divided into eight subfamilies in the genome-wide database of Chinese cabbage. The analysis showed that the BrLEA73 gene was located on chromosome A09 and belonged to the LEA_6 subfamily. Quantitative real-time PCR analysis indicated that the BcLEA genes were differentially expressed to varying degrees in the roots, stems, leaves, and petioles of Wucai. The overexpressed BcLEA73 transgenic plants exhibited no significant differences in root length and seed germination rates compared to the wild-type (WT) plants under control conditions. Under salt and osmotic stress treatment, the root length and seed germination rates of the BcLEA73-OE strain were significantly greater than those of WT plants. Under salt stress, the total antioxidant capacity (T-AOC) of the BcLEA73-OE lines increased significantly, and the relative conductivity, (REL), hydrogen peroxide (H2O2) content, and superoxide anion (O2−) production rate decreased significantly. Under drought treatment, the survival rate of the BcLEA73-OE lines was significantly higher than that of WT plants. These results showed that the BcLEA73 gene of Wucai functions in enhancing the tolerance of plants to salt, drought, and osmotic stress. This study provides a theoretical basis to explore the relevant functions of the BcLEA gene family members of Wucai.

Funder

Natural Science Foundation of China, General Projects

Anhui Provincial Natural Science Foundation

Anhui Natural Science Research Project of University

Publisher

MDPI AG

Subject

Genetics (clinical),Genetics

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