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来自编码β-内酰胺酶且能够转移卡那霉素抗性Col样质粒的[具体来源1]和[具体来源2]的接合质粒的基因组比较

Genomic Comparison of Conjugative Plasmids from and Encoding Beta-Lactamases and Capable of Mobilizing Kanamycin Resistance Col-like Plasmids.

作者信息

McMillan Elizabeth A, Nguyen Ly-Huong T, Hiott Lari M, Sharma Poonam, Jackson Charlene R, Frye Jonathan G, Chen Chin-Yi

机构信息

U.S. Department of Agriculture, Agricultural Research Service, U.S. National Poultry Research Center, Bacterial Epidemiology and Antimicrobial Resistance Research Unit, Athens, GA 30605, USA.

U.S. Department of Agriculture, Agricultural Research Service, Eastern Regional Research Center, Molecular Characterization of Foodborne Pathogens Research Unit, Wyndmoor, PA 19038, USA.

出版信息

Microorganisms. 2021 Oct 23;9(11):2205. doi: 10.3390/microorganisms9112205.

Abstract

and are important human pathogens that frequently contain plasmids, both large and small, carrying antibiotic resistance genes. Large conjugative plasmids are known to mobilize small Col plasmids, but less is known about the specificity of mobilization. In the current study, six and four strains containing large plasmids were tested for their ability to mobilize three different kanamycin resistance Col plasmids (KanR plasmids). Large conjugative plasmids from five isolates, four and one , were able to mobilize KanR plasmids of various types. Plasmids capable of mobilizing the KanR plasmids were either IncI1 or IncX, while IncI1 and IncX plasmids with no evidence of conjugation had disrupted transfer regions. Conjugative plasmids of similar types mobilized similar KanR plasmids, but not all conjugative plasmid types were capable of mobilizing all of the KanR plasmids. These data describe some of the complexities and specificities of individual small plasmid mobilization.

摘要

[细菌名称1]和[细菌名称2]是重要的人类病原体,通常含有携带抗生素抗性基因的大小质粒。已知大型接合质粒可移动小型Col质粒,但对移动的特异性了解较少。在本研究中,测试了六株含有大型质粒的[细菌名称1]菌株和四株含有大型质粒的[细菌名称2]菌株动员三种不同卡那霉素抗性Col质粒(KanR质粒)的能力。来自五个分离株的大型接合质粒,四个[细菌名称1]和一个[细菌名称2],能够移动各种类型的KanR质粒。能够移动KanR质粒的质粒要么是IncI1要么是IncX,而没有接合证据的IncI1和IncX质粒有破坏的转移区域。相似类型的接合质粒移动相似的KanR质粒,但并非所有接合质粒类型都能够移动所有的KanR质粒。这些数据描述了单个小质粒移动的一些复杂性和特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52a4/8623487/6da2f119e532/microorganisms-09-02205-g001.jpg

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