通过表达文库筛选策略探索紫花苜蓿耐盐耐旱基因

Zhihua Li, Yue Zou, Yanpeng Li, Cancan Sun, Yu Liu, Liwen Cui, Jun Liu, Zhimin Yang, Yu Chen
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引用次数: 2

摘要

盐胁迫和干旱胁迫是影响紫花苜蓿生长和产量的主要非生物胁迫。探索紫花苜蓿耐盐碱和干旱胁迫的基因将有助于靶向分子育种和抗性牧草的开发。本研究采用高效酵母FOX狩猎系统对紫花苜蓿耐盐耐旱基因进行鉴定。基于Gateway-compatible vector system,构建了一个高质量的表达库,包含1.3 × 107个克隆,平均大小为1.44 kb。通过将混合文库质粒异源转化到盐敏感或干旱敏感酵母突变体中,筛选出单克隆抗性菌株,并获得耐药基因。获得了18个参与多种途径的耐盐基因,包括GRAS和锌指转录因子、PP2A相互作用模块、ERVT囊泡转运蛋白和LETM跨膜蛋白。共分离出12个抗旱基因,包括ERF和SCL转录因子、CIPK和BSK蛋白激酶、tgl型连接酶、cPGM和cPDL蛋白酶。通过定量PCR检测,这些耐受基因的mRNA转录水平在盐胁迫和干旱胁迫条件下分别为诱导型和抑制型。此外,ERVT和CIPK11的异源转化可以提高拟南芥对盐和干旱胁迫的耐受性,这表明筛选基因在酵母和拟南芥中具有保守功能。这些候选基因的获得将为今后植物耐盐性和耐旱性的研究提供新的思路。引用本文:李忠,邹勇,李勇,孙超,刘勇等。2021。通过表达文库筛选策略探索紫花苜蓿耐盐干旱基因。草研究1:11 https://doi.org/10.48130/GR-2021-0011
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring the salt- and drought-tolerant genes of alfalfa through expression library screening strategy
Salinity and drought stress are major abiotic stresses negatively affecting the growth and productivity of alfalfa (Medicago sativa L.). Exploration of genes exhibiting superior tolerance to salinity and drought stress in alfalfa will help aid target molecular breeding and developing tolerant forages. In this study, we adopted a high-efficient yeast FOX hunting system for the identification of salinity and drought tolerant genes in alfalfa. Based on the Gateway-compatible vector system, a high-quality expression library was constructed, containing 1.3 × 107 clones with an average size of 1.44 kb. Through heterologous transformation of mixed library plasmid into salt or drought sensitive yeast mutants, monoclonal resistant strains were screened and tolerant genes were captured. Eighteen salinity-tolerance genes were obtained which were involved in several pathways, containing GRAS and zinc finger transcriptional factors, PP2A interaction module, ERVT vesicle transporter and LETM transmembrane protein. Twelve drought tolerance genes were separated, including ERF and SCL transcriptional factors, CIPK and BSK protein kinases, TGL-type ligase, cPGM and cPDL protease. The mRNA transcription levels of these tolerant genes were inducible or suppressible for response to salt or drought stress conditions following quantitative PCR detection, respectively. Furthermore, heterologous transformation of ERVT and CIPK11 can improve the salt and drought stress tolerance in Arabidopsis, which indicates the conservative function of the screening gene in yeast and Arabidopsis. Obtaining these candidate genes can provide new insights for future research with respect to plant salt and drought tolerance. Citation: Li Z, Zou Y, Li Y, Sun C, Liu Y, et al. 2021. Exploring the saltand drought-tolerant genes of alfalfa through expression library screening strategy. Grass Research 1: 11 https://doi.org/10.48130/GR-2021-0011
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