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全基因组关联研究揭示了影响……中接合作用的宿主因素。 (注:原文句末不完整,缺少具体研究对象)

Genome-Wide Association Study Reveals Host Factors Affecting Conjugation in .

作者信息

Van Wonterghem Laetitia, De Chiara Matteo, Liti Gianni, Warringer Jonas, Farewell Anne, Verstraeten Natalie, Michiels Jan

机构信息

Centre of Microbial and Plant Genetics, KU Leuven, 3001 Leuven, Belgium.

Center for Microbiology, Flanders Institute for Biotechnology, 3001 Leuven, Belgium.

出版信息

Microorganisms. 2022 Mar 12;10(3):608. doi: 10.3390/microorganisms10030608.

Abstract

The emergence and dissemination of antibiotic resistance threaten the treatment of common bacterial infections. Resistance genes are often encoded on conjugative elements, which can be horizontally transferred to diverse bacteria. In order to delay conjugative transfer of resistance genes, more information is needed on the genetic determinants promoting conjugation. Here, we focus on which bacterial host factors in the donor assist transfer of conjugative plasmids. We introduced the broad-host-range plasmid pKJK10 into a diverse collection of 113 strains and measured by flow cytometry how effectively each strain transfers its plasmid to a fixed recipient. Differences in conjugation efficiency of up to 2.7 and 3.8 orders of magnitude were observed after mating for 24 h and 48 h, respectively. These differences were linked to the underlying donor strain genetic variants in genome-wide association studies, thereby identifying candidate genes involved in conjugation. We confirmed the role of , , and in the donor ability of conjugative elements by validating defects in the conjugation efficiency of the corresponding lab strain single-gene deletion mutants. Based on the known cellular functions of these genes, we suggest that the motility and the energy supply, the intracellular pH or salinity of the donor affect the efficiency of plasmid transfer. Overall, this work advances the search for targets for the development of conjugation inhibitors, which can be administered alongside antibiotics to more effectively treat bacterial infections.

摘要

抗生素耐药性的出现和传播威胁着常见细菌感染的治疗。耐药基因通常编码在接合元件上,这些元件可水平转移至多种细菌。为了延缓耐药基因的接合转移,需要更多关于促进接合的遗传决定因素的信息。在此,我们关注供体中的哪些细菌宿主因子有助于接合质粒的转移。我们将广宿主范围质粒pKJK10导入113株不同的菌株中,并通过流式细胞术测量每株菌株将其质粒转移至固定受体的效率。在交配24小时和48小时后,分别观察到接合效率的差异高达2.7和3.8个数量级。在全基因组关联研究中,这些差异与潜在的供体菌株遗传变异相关联,从而鉴定出参与接合的候选基因。我们通过验证相应实验室菌株单基因缺失突变体的接合效率缺陷,证实了 、 、 和 在接合元件供体能力中的作用。基于这些基因已知的细胞功能,我们认为供体的运动性和能量供应、细胞内pH值或盐度会影响质粒转移效率。总体而言,这项工作推动了对接合抑制剂开发靶点的探索,这些抑制剂可与抗生素联合使用,以更有效地治疗细菌感染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79f9/8954029/5b25606b48df/microorganisms-10-00608-g001.jpg

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