Characterization of third-generation cephalosporin-resistant Escherichia coli from slaughter calves and fattening pigs: A pilot study for monitoring antimicrobial resistance by whole genome sequencing in Switzerland.

IF 0.8 4区 农林科学 Q3 VETERINARY SCIENCES Schweizer Archiv fur Tierheilkunde Pub Date : 2023-06-01 DOI:10.17236/sat00396
C B Aebi, J E Fernandez, S Kittl, M L Tresch, V Perreten, G Overesch
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Abstract

Introduction: Whole genome sequencing (WGS) was introduced into Swiss antimicrobial resistance monitoring in 2022 as an additional method to phenotypic antimicrobial susceptibility testing by broth microdilution to characterize presumptive third-generation cephalosporin-resistant (3GC-R) Escherichia coli. Caecal samples from Swiss slaughter calves and fattening pigs, as well as beef and pork meat from Swiss retail taken in 2021, were analyzed for the presence of 3GC-R E. coli according to European harmonized protocols. In 2021, 3GC-R E. coli was detected in 23,8 % of slaughter calves, 5,9 % of fattening pigs, and 0 % of meat. Comparative analysis of the antimicrobial resistance results obtained by phenotypic measurement and those obtained by the detection of corresponding underlying molecular mechanisms by WGS showed very high agreement (99 %). Resistance to third-generation cephalosporins (3GCs) was mainly associated with the presence of blaCTX-M-15 in E. coli isolates from calves and blaCTX-M-1 in E. coli isolates from pigs and mutations in the ampC-promoter (g.-42 C>T) in E. coli isolates from both animal species. Moreover, WGS data were used for phylogenetic analysis based on multi locus sequence types (MLST) and core genome MLST(cgMLST) revealing that 3GC-R E. coli isolated from Swiss slaughter calves and fattening pigs were genetically diverse. In this study, it was shown that using WGS alone to monitor antimicrobial resistance could detect trends in known molecular antimicrobial resistance mechanisms while also providing other valuable information about the isolates, such as genetic relatedness. However, only by combining phenotypic susceptibility testing and WGS early detection of previously unknown resistance mechanisms will be possible.

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屠宰小牛和育肥猪中对第三代头孢菌素耐药的大肠埃希菌的特征:瑞士通过全基因组测序监测抗菌药耐药性的试点研究。
导言:全基因组测序(WGS)于 2022 年被引入瑞士抗菌药耐药性监测,作为肉汤微量稀释法表型抗菌药敏感性检测的补充方法,用于鉴定推定的第三代头孢菌素耐药(3GC-R)大肠埃希菌。根据欧洲统一规程,对 2021 年瑞士屠宰的小牛和育肥猪的粪便样本以及瑞士零售的牛肉和猪肉样本进行了分析,以确定是否存在 3GC-R 大肠杆菌。2021 年,23.8% 的屠宰小牛、5.9% 的育肥猪和 0% 的肉类中检测到了 3GC-R 大肠杆菌。通过表型测量获得的抗菌药耐药性结果与通过 WGS 检测相应的潜在分子机制获得的结果进行比较分析,结果显示两者的一致性非常高(99%)。对第三代头孢菌素(3GCs)的耐药性主要与小牛大肠杆菌分离物中的 blaCTX-M-15 和猪大肠杆菌分离物中的 blaCTX-M-1 以及这两种动物的大肠杆菌分离物中的 ampC 启动子(g.-42 C>T)突变有关。此外,基于多位点序列类型(MLST)和核心基因组 MLST(cgMLST),利用 WGS 数据进行了系统发育分析,结果显示从瑞士屠宰小牛和育肥猪分离的 3GC-R 大肠杆菌具有遗传多样性。该研究表明,单独使用 WGS 监测抗菌药耐药性可检测出已知分子抗菌药耐药性机制的趋势,同时还能提供分离菌株的其他有价值信息,如遗传亲缘关系。不过,只有将表型药敏试验和 WGS 结合起来,才能及早发现以前未知的耐药性机制。
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来源期刊
Schweizer Archiv fur Tierheilkunde
Schweizer Archiv fur Tierheilkunde 农林科学-兽医学
CiteScore
1.50
自引率
14.30%
发文量
46
审稿时长
18-36 weeks
期刊介绍: Das Schweizer Archiv für Tierheilkunde ist die älteste veterinärmedizinische Zeitschrift der Welt (gegründet 1816). Es ist das wissenschaftliche und praxisbezogene offizielle Publikationsorgan der Gesellschaft Schweizer Tierärztinnen und Tierärzte.
期刊最新文献
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