对从一只泌尿道感染的猫体内分离出的首个耐多药 ESBL 生产型高风险克雷伯氏肺炎克雷伯菌 ST147 进行基因组分析。

IF 1.8 3区 农林科学 Q2 VETERINARY SCIENCES
Veterinary Research Communications Pub Date : 2024-08-01 Epub Date: 2024-05-10 DOI:10.1007/s11259-024-10396-y
Victoria T S Sakauchi, Amanda Haisi, João P Araújo Júnior, José S Ferreira Neto, Marcos B Heinemann, Natália C Gaeta
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引用次数: 0

摘要

尿路感染(UTI)在人类和兽医中普遍存在,尤其影响伴侣动物。这些感染经常导致抗生素处方的使用,从而导致抗菌细菌的增加。从一只患有UTI的猫身上分离出的高风险克隆、广谱头孢菌素耐药的肺炎克氏菌ST147菌株(编号USP-275675)的出现凸显了这种日益严重的问题。该菌株具有多重耐药(MDR)特征,全基因组测序发现了多个抗菌药耐药基因,特别是 blaCTX-M-15、blaTEM-1B、blaSHV-11 和 blaOXA-1。ST147 是公认的高风险克隆,历史上曾在全球范围内传播,并经常与碳青霉烯酶和广谱β-内酰胺酶相关联。值得注意的是,从尿液样本中分离出的肺炎克菌 ST147 菌株的核心基因组系统发育揭示了 USP-276575 菌株的独特之处。与同类菌株不同的是,它没有与其他分离菌株聚集在一起。然而,通过对来自人类和动物的菌株进行更广泛的研究,发现 USP-276575 与来自鸡肉的葡萄牙菌株之间存在联系。这两株菌株都属于一个更大的 ST147 菌株群,跨越不同的地理位置和样本类型,具有诸如 IncFIB 或 IncR 质粒等共性。这阐明了携带这些质粒的大范围肺炎克氏菌 ST147 菌株固有的 MDR 特征,突出了它们在传播抗菌药耐药性 (AMR) 方面的关键作用。最后,在巴西一只患有UTI的家猫体内发现高风险克隆肺炎克氏菌ST147,凸显了通过 "一体健康 "方法进行全面AMR监测的迫切需要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Genomic analysis of the first multidrug-resistant ESBL-producing high-risk clonal lineage Klebsiella pneumoniae ST147 isolated from a cat with urinary tract infection.

Genomic analysis of the first multidrug-resistant ESBL-producing high-risk clonal lineage Klebsiella pneumoniae ST147 isolated from a cat with urinary tract infection.

Urinary tract infections (UTIs) are pervasive in human and veterinary medicine, notably affecting companion animals. These infections frequently lead to the prescription of antibiotics, contributing to the rise of antimicrobial-resistant bacteria. This escalating concern is underscored by the emergence of a previously undocumented case: a high-risk clone, broad-spectrum cephalosporin-resistant K. pneumoniae ST147 strain, denoted USP-275675, isolated from a cat with UTI. Characterized by a multidrug-resistant (MDR) profile, whole genome sequencing exposed several antimicrobial-resistance genes, notably blaCTX-M-15, blaTEM-1B, blaSHV-11, and blaOXA-1. ST147, recognized as a high-risk clone, has historically disseminated globally and is frequently associated with carbapenemases and extended-spectrum β-lactamases. Notably, the core-genome phylogeny of K. pneumoniae ST147 strains isolated from urine samples revealed a unique aspect of the USP-276575 strain. Unlike its counterparts, it did not cluster with other isolates. However, a broader examination incorporating strains from both human and animal sources unveiled a connection between USP-276575 and a Portuguese strain from chicken meat. Both were part of a larger cluster of ST147 strains spanning various geographic locations and sample types, sharing commonalities such as IncFIB or IncR plasmids. This elucidates the MDR signature inherent in widespread K. pneumoniae ST147 strains carrying these plasmids, highlighting their pivotal role in disseminating antimicrobial resistance (AMR). Finally, discovering the high-risk clone K. pneumoniae ST147 in a domestic feline with a UTI in Brazil highlights the urgent need for thorough AMR surveillance through a One Health approach.

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来源期刊
Veterinary Research Communications
Veterinary Research Communications 农林科学-兽医学
CiteScore
2.50
自引率
0.00%
发文量
173
审稿时长
3 months
期刊介绍: Veterinary Research Communications publishes fully refereed research articles and topical reviews on all aspects of the veterinary sciences. Interdisciplinary articles are particularly encouraged, as are well argued reviews, even if they are somewhat controversial. The journal is an appropriate medium in which to publish new methods, newly described diseases and new pathological findings, as these are applied to animals. The material should be of international rather than local interest. As it deliberately seeks a wide coverage, Veterinary Research Communications provides its readers with a means of keeping abreast of current developments in the entire field of veterinary science.
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