Tammy J. Schmidt, Sophie Aurich, Franziska Unger, Tobias Eisenberg, Christa Ewers
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引用次数: 0
摘要
肺炎克雷伯氏菌 ST307 克隆发现于 20 世纪 90 年代中期,现已成为全球抗菌素耐药(AMR)高风险克隆,大大加剧了肺炎克雷伯氏菌其他 AMR 菌系对全球健康的挑战。携带 blaCTX-M-15 的质粒的获得促进了它的广泛传播。2014 年,在欧洲主要的活体动物运输枢纽法兰克福机场,德国边境管制人员对一批 20 只活豹纹陆龟进行了采样。系统发育分析(MLST)确定了肺炎克氏菌 ST307 株,从而引发了进一步的调查。我们的分析表明,该菌株存在一个约 193 kb 的质粒,其中携带多种 AMR 基因,包括 blaCTX-M-15、blaTEM-1B、blaOXA-1、aac(3)-IIa、aac(6′)-Ib-cr、aph(3″)-Ib、aph(6)-Id 和 qnrB1。此外,在gyrA(S83I)和parC(S80I)的喹诺酮抗性决定区也检测到了突变。表型测试表明,该分离株对人类和兽医中最常用的抗菌药物均有耐药性;但碳青霉烯类和较新的β-内酰胺酶抑制剂组合除外。由于进口的外来动物在传播 AMR 基因方面的作用在很大程度上还不够充分,因此本研究填补了广谱 β-内酰胺酶(ESBL)产生肠杆菌全貌中缺失的马赛克片段。
Genomic and Functional Characterization of CTX-M-15-Producing Klebsiella pneumoniae ST307 Isolated from Imported Leopard Tortoises in Germany
The Klebsiella pneumoniae ST307 clone, identified in the mid-1990s, has emerged as a global antimicrobial-resistant (AMR) high-risk clone, significantly contributing to the global health challenge also posed by other AMR K. pneumoniae lineages. The acquisition of a blaCTX-M-15-carrying plasmid has facilitated its widespread dissemination. At Europe’s major transport hub for the movement of live animals, Frankfurt Airport, a shipment of 20 live leopard tortoises was sampled during German border control in 2014. Phylogenetic analysis (MLST) identified a K. pneumoniae ST307 strain, prompting further investigation. Our analysis revealed the presence of a ~193 kb plasmid carrying a broad range of AMR genes, including blaCTX-M-15, blaTEM-1B, blaOXA-1, aac(3)-IIa, aac(6′)-Ib-cr, aph(3″)-Ib, aph(6)-Id, and qnrB1. Additionally, mutations in the quinolone resistance-determining region in gyrA (S83I) and parC (S80I) were detected. Phenotypic testing demonstrated resistance of the isolate to the most common antimicrobials used in both human and veterinary medicine; exceptions included carbapenems and newer β-lactamase inhibitor combinations. Because the role of imported exotic animals in the dissemination of AMR genes is largely deficient, the present study fills yet missing mosaic pieces in the complete picture of extended-spectrum β-lactamase (ESBL)-producing Enterobacterales.