生物技术通报 ›› 2023, Vol. 39 ›› Issue (7): 131-142.doi: 10.13560/j.cnki.biotech.bull.1985.2023-0015

• 研究报告 • 上一篇    下一篇

大豆GmHMGR基因响应外源激素及非生物胁迫功能研究

王帅1(), 冯宇梅2, 白苗1, 杜维俊1, 岳爱琴1()   

  1. 1.山西农业大学农学院,太谷 030801
    2.山西农业大学林学院,太谷 030801
  • 收稿日期:2023-01-09 出版日期:2023-07-26 发布日期:2023-08-17
  • 通讯作者: 岳爱琴,女,博士,教授,研究方向:大豆遗传与种质创新;E-mail: yueaiqinnd@126.com
  • 作者简介:王帅,男,硕士研究生,研究方向:大豆遗传与种质创新;E-mail: 15234570975@163.com
  • 基金资助:
    山西省科技成果转化引导专项计划(202104021301038);山西省专利转化专项计划(202202035);山西省自然科学基金面上项目(201901D111225);中央引导地方科技发展资金(YDZJSX2022A035)

Functional Analysis of Soybean Gene GmHMGR Responding to Exogenous Hormones and Abiotic Stresses

WANG Shuai1(), FENG Yu-mei2, BAI Miao1, DU Wei-jun1, YUE Ai-qin1()   

  1. 1. College of Agriculture, Shanxi Agricultural University, Taigu 030801
    2. College of Forestry, Shanxi Agricultural University, Taigu 030801
  • Received:2023-01-09 Published:2023-07-26 Online:2023-08-17

摘要:

GmHMGR基因是大豆甲羟戊酸途径的关键酶基因之一,在大豆逆境胁迫调控方面具有重要的作用。探究GmHMGR基因在逆境胁迫中的功能,为大豆抗氧化、抗盐机制解析和分子育种提供依据。采用实时荧光定量PCR、酵母转化、拟南芥遗传转化等技术,分析GmHMGR基因在响应外源激素和非生物胁迫中发挥的功能。结果显示,GmHMGR基因对PEG6000、NaCl、H2O2胁迫以及MeJA、ABA外源激素处理均有响应;过量表达GmHMGR1GmHMGR3GmHMGR5GmHMGR6GmHMGR7可以提高酵母的抗盐、抗氧化能力;过量表达GmHMGR4GmHMGR6的拟南芥上调了萜类代谢相关酶基因(AtDXRAtSQS1AtSQS2AtCAS)的表达水平,改善了拟南芥在氧化及盐胁迫下的表型。GmHMGR基因可能参与大豆抗氧化、抗盐胁迫的应答。

关键词: 大豆, GmHMGR, 异源表达, 氧化胁迫, 盐胁迫, 外源激素

Abstract:

GmHMGR gene is one of the key enzyme genes in the mevalonate pathway of soybean(Glycine max L.), and plays an important role in the stress regulation. Exploring the function of the GmHMGR gene in soybean stress resistance will serve as a foundation for the analysis of soybean antioxidant, salt resistance mechanisms, and molecular breeding. The function of the GmHMGR gene under abiotic stress and hormone treatments was analyzed using real-time quantitative PCR, yeast transformation, and A. thaliana genetic transformation. The results showed that the GmHMGR gene responded to PEG6000, NaCl, H2O2, MeJA and ABA treatments. Overexpressing GmHMGR1, GmHMGR3, GmHMGR5, GmHMGR6 and GmHMGR7 genes improved yeast's salt resistance and antioxidant capacity. Overexpressing GmHMGR4 and GmHMGR6 genes in A. thaliana upregulated the expression levels of terpenoids metabolism-related enzymes genes(including AtDXR, AtSQS1, AtSQS2 and AtCAS), and improved its resistance capacity under oxidative and salt stress. GmHMGR gene may be involved in response to oxidative and salt stresses in soybean.

Key words: soybean, GmHMGR, heterologous expression, oxidative stress, salt stress, exogenous hormones