生物技术通报 ›› 2026, Vol. 42 ›› Issue (2): 239-249.doi: 10.13560/j.cnki.biotech.bull.1985.2025-0844

• 研究报告 • 上一篇    下一篇

紫花苜蓿酵母表达文库的构建及候选耐盐基因的筛选与鉴定

张驰昊1(), 刘晋囡1, 董家乐2, 晁跃辉1()   

  1. 1.北京林业大学草业与草原学院,北京 100083
    2.四川锦江电子医疗器械科技股份有限公司,成都 610045
  • 收稿日期:2025-08-04 出版日期:2026-02-26 发布日期:2026-03-17
  • 通讯作者: 晁跃辉,男,博士,教授,研究方向 :草类植物遗传育种;E-mail: chaoyuehui@bjfu.edu.cn
  • 作者简介:张驰昊,男,硕士研究生,研究方向 :草类植物遗传育种;E-mail: zzzch0127@126.com
  • 基金资助:
    内蒙古自治区科技重大专项项目(2022JBGS00160302)

Construction of Alfalfa Yeast Expression Library and Screening and Identification of Salt-tolerance Genes

ZHANG Chi-hao1(), LIU Jin-nan1, DONG Jia-le2, CHAO Yue-hui1()   

  1. 1.School of Grassland Science, Beijing Forestry University, Beijing 100083
    2.Sichuan Jinjiang Electronic Medical Device Technology Co. , Ltd. , Chengdu 610045
  • Received:2025-08-04 Published:2026-02-26 Online:2026-03-17

摘要:

目的 构建紫花苜蓿(Medicago sativa)盐诱导基因表达文库,筛选候选耐盐基因并进行验证。 方法 使用1% NaCl处理紫花苜蓿幼苗,收集植物材料并提取总RNA,反转录后构建基因表达酵母文库。将文库质粒与空白质粒(pYES2-NTB)转入酵母菌株,确定用于文库筛选的NaCl浓度及候选耐盐基因。挑选196个单克隆菌落进行耐盐性分析,并进行PCR鉴定和测序分析。选择其中4个候选基因进行转基因功能分析。 结果 获得高质量RNA,并成功建立紫花苜蓿盐诱导基因表达文库,文库库容为7.68×107 CFU/mL,总克隆数为1.536×108 CFU。文库菌液在SG/-Ura+1.5 mol/L NaCl条件下仍有单克隆酵母菌落存活,而对照组则在1.3 mol/L NaCl培养基上已无法存活。测序结果经序列比对后,鉴定出75个不同基因。筛选并获得4个候选耐盐基因Msa1025270、Msa0320180、Msa0819320、Msa0859120,通过NCBI网站查询得这4个基因的功能与脱落酸受体、ABA反应、脱落酸和环境胁迫诱导、脱水早期反应等蛋白有关。转基因功能鉴定结果显示,4个候选基因表达能够显著提高植物对NaCl的抵抗能力。 结论 文库菌液具有良好的耐盐抗性,候选耐盐基因转基因植株验证结果表明,Msa1025270、Msa0320180、Msa0819320、Msa0859120 4个基因具有耐盐相关功能。

关键词: 紫花苜蓿, 酵母表达文库, NaCl浓度筛选, 耐盐基因, 转基因功能, 烟草, 基因注释, 农杆菌转化

Abstract:

Objective To construct a cDNA library of salt-induced genes in alfalfa (Medicago sativa ), screen the candidate salt-tolerant genes and verify it. Method Alfalfa seedlings were treated with 1% NaCl, after which plant materials were collected and total RNA was extracted. Following reverse transcription, a yeast cDNA expression library was constructed. The library plasmids and the empty plasmids (pYES2-NTB) were transformed into yeast strains to determine the NaCl concentration for library screening and to identify candidate salt-tolerant genes. A total of 196 single yeast colonies were selected for salt-tolerance assays, followed by PCR identification and sequencing analysis. Four of the candidate genes were chosen for transgenic functional analysis. Result High-quality RNA was obtained, and a cDNA library of salt-induced gene expression in alfalfa was successfully established. The library capacity was 7.68×107 CFU/mL and the total number of clones is 1.536×108 CFU. The cDNA library and blank plasmid were transferred into the yeast strain INVSC1. The monoclonal yeast colonies still survived in the library culture medium under SG/-Ura+1.5 mol/L NaCl, while that in the control group no longer survived on 1.3 mol/L NaCl culture medium. After sequence alignment, 75 different genes were identified, the four candidate salt-tolerant genes were screened out, Msa1025270, Msa0320180, Msa0819320, and Msa0859120. Through the NCBI website, it was found that the functions of these four genes were related to proteins such as abscisic acid receptors, response to ABA, abscisic acid and environmental stress induction, and early dehydration response. The results of transgenic functional identification showed that the expressions of the four candidate genes significantly enhanced the resistance of plants to NaCl. Conclusion The library bacterial liquid has good salt resistance, and the verified results of salt-tolerant gene transgenic plants show that the four gene Msa1025270, Msa0320180, Msa0819320, and Msa0859120 have the function related to salt-tolerance.

Key words: Medicago sativa L., yeast expression library, NaCl concentration screening, salt-tolerant gene, transgenic verification, tobacco, gene annotation, Agrobacterium transformation