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ST115高毒力菌株中质粒介导的大环内酯类-克林霉素-四环素耐药性的首次报告

First Report of Plasmid-Mediated Macrolide-Clindamycin-Tetracycline Resistance in a High Virulent Isolate of ST115.

作者信息

Rana Md Shohel, Kim Jungmin, Kim Shukho

机构信息

Department of Biomedical Sciences, The Graduate School, Kyungpook National University, Daegu 41944, Republic of Korea.

Department of Microbiology, School of Medicine, Kyungpook National University, Daegu 41944, Republic of Korea.

出版信息

Pathogens. 2023 Oct 27;12(11):1286. doi: 10.3390/pathogens12111286.

Abstract

, a prevalent skin commensal, has emerged as a significant global challenge due to its widespread antibiotic resistance. To investigate the antibiotic resistance mechanisms and clinical characterization of in Korea, we collected 22 clinical isolates from diverse patient specimens obtained from the National Culture Collection for Pathogens across Korea. Among the isolates, KB112 isolate was subjected to whole genome sequencing due to high resistance against clindamycin, erythromycin, tetracycline, doxycycline, and minocycline. The whole genome analysis of KB112 isolate revealed a circular chromosome of 2,534,481 base pair with an average G + C content of 60.2% with sequence type (ST) 115, harboring the potential virulent CAMP factor pore-forming toxin 2 (CAMP2), the multidrug resistance ABC transporter ATP-binding protein YknY, and the multidrug efflux protein YfmO. The genomic sequence also showed the existence of a plasmid (30,947 bp) containing the (50) and (W) gene, which confer resistance to macrolide-clindamycin and tetracycline, respectively. This study reports plasmid-mediated multi-drug resistance of for the first time in Korea.

摘要

作为一种常见的皮肤共生菌,由于其广泛的抗生素耐药性,已成为一项重大的全球挑战。为了研究韩国[具体菌种名称未给出]的抗生素耐药机制和临床特征,我们从韩国全国病原体培养保藏中心获取的不同患者标本中收集了22株临床分离株。在这些分离株中,KB112分离株因对克林霉素、红霉素、四环素、强力霉素和米诺环素具有高度耐药性而进行了全基因组测序。KB112分离株的全基因组分析显示,其环状染色体为2,534,481个碱基对,平均G + C含量为60.2%,序列类型为(ST)115,携带潜在的毒性CAMP因子成孔毒素2(CAMP2)、多药耐药ABC转运蛋白ATP结合蛋白YknY和多药外排蛋白YfmO。基因组序列还显示存在一个质粒(30,947 bp),其中包含分别赋予对大环内酯 - 克林霉素和四环素耐药性的具体基因名称未给出具体基因名称未给出基因。本研究首次报道了韩国[具体菌种名称未给出]的质粒介导的多药耐药性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b39/10674219/a2fec20eebc8/pathogens-12-01286-g001.jpg

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