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《……中转座子诱变方法的优化》 (原文中“in.”后面内容缺失,所以译文不太完整)

Optimization of Transposon Mutagenesis Methods in .

作者信息

Kim Sangha, Lee Changhan

机构信息

Department of Biological Sciences, Ajou University, Suwon 16499, Republic of Korea.

出版信息

Microorganisms. 2023 Jan 1;11(1):118. doi: 10.3390/microorganisms11010118.

Abstract

is a widespread genus in various host and environmental niches. exists even in extremely cold environments such as Antarctica. is a psychrophilic bacterium isolated from Antarctica. is also known to produce antimicrobial substances. Although can provide insight into how bacteria have adapted to low temperatures and has significant potential for developing novel antimicrobial substances, progress in genetic and molecular studies has not been achieved. Transposon mutagenesis is a useful tool to screen genes of interest in bacteria. Therefore, we attempted for the first time in to generate transposon insertion mutants using the transfer of a conjugational plasmid encoding a transposon. To increase the yield of transposon insertion mutants, we optimized the methods, in terms of temperature for conjugation, the ratio of donor and recipient during conjugation, and the concentration of antibiotics. Here, we describe the optimized methods to successfully generate transposon insertion mutants in .

摘要

是一个广泛存在于各种宿主和环境生态位中的属。甚至存在于南极洲等极端寒冷的环境中。是一种从南极洲分离出的嗜冷细菌。已知其还能产生抗菌物质。尽管它能为细菌如何适应低温提供见解,并且在开发新型抗菌物质方面具有巨大潜力,但在遗传和分子研究方面尚未取得进展。转座子诱变是筛选细菌中感兴趣基因的有用工具。因此,我们首次尝试在中使用编码转座子的接合质粒转移来产生转座子插入突变体。为了提高转座子插入突变体的产量,我们在接合温度、接合过程中供体和受体的比例以及抗生素浓度方面优化了方法。在此,我们描述了在中成功产生转座子插入突变体的优化方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dba2/9864612/9df49800a90b/microorganisms-11-00118-g001.jpg

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