Description of Antimicrobial-Resistant Escherichia coli and Their Dissemination Mechanisms on Dairy Farms

Author:

Massé Jonathan123ORCID,Vanier Ghyslaine24,Fairbrother John M.234,de Lagarde Maud123,Arsenault Julie3ORCID,Francoz David15ORCID,Dufour Simon13ORCID,Archambault Marie123

Affiliation:

1. Regroupement FRQNT Op+lait, Saint-Hyacinthe, QC J2S 2M2, Canada

2. Groupe de Recherche sur les Maladies Infectieuses en Production Animale (GREMIP), Saint-Hyacinthe, QC J2S 2M2, Canada

3. Department of Pathology and Microbiology, Faculty of Veterinary Medicine, Université de Montréal, Saint-Hyacinthe, QC J2S 2M2, Canada

4. WOAH Reference Laboratory for Escherichia coli, Faculty of Veterinary Medicine, Université de Montréal, Saint-Hyacinthe, QC J2S 2M2, Canada

5. Department of Clinical Sciences, Faculty of Veterinary Medicine, Université de Montréal, Saint-Hyacinthe, QC J2S 2M2, Canada

Abstract

Despite its importance in veterinary medicine, there is little information about antimicrobial resistance (AMR) and its transmission in dairy cattle. The aim of this work is to compare AMR phenotypes and genotypes in resistant Escherichia coli and to determine how the resistance genes spread among the E. coli population on dairy farms in Québec, Canada. From an existing culture collection of E. coli isolated from dairy manure, a convenient selection of the most resistant isolates (a high level of multidrug resistance or resistance to broad-spectrum β-lactams or fluoroquinolones) was analyzed (n = 118). An AMR phenotype profile was obtained for each isolate. Whole genome sequencing was used to determine the presence of resistance genes, point mutations, and mobile genetic elements. In addition, a subset of isolates from 86 farms was taken to investigate the phylogenetic relationship and geographic distribution of the isolates. The average agreement between AMR phenotypes and genotypes was 95%. A third-generation cephalosporin resistance gene (blaCTX-M-15), a resistance gene conferring reduced susceptibility to fluoroquinolones (qnrS1), and an insertion sequence (ISKpn19) were detected in the vicinity of each other on the genome. These genes were harbored in one triplet of clonal isolates from three farms located >100 km apart. Our study reveals the dissemination of resistant E. coli clones between dairy farms. Furthermore, these clones are resistant to broad-spectrum β-lactam and fluoroquinolone antimicrobials.

Publisher

MDPI AG

Subject

General Veterinary

Reference57 articles.

1. WHO (2023, February 08). Antibiotic Resistance—Facts Sheet, Available online: https://www.who.int/news-room/fact-sheets/detail/antibiotic-resistance.

2. WHO (2019). Critically Important Antimicrobials for Human Medicine.

3. Occurrence of extended-spectrum β-lactamase and AmpC-producing Escherichia coli in retail meat products from the Maritime Provinces, Canada;Awosile;Can. J. Microbiol.,2021

4. Molecular Epidemiology of Dairy Cattle-Associated Escherichia coli Carrying bla(CTX-M) Genes in Washington State;Afema;Appl. Environ. Microbiol.,2018

5. Whole-Genome Sequence Analysis of CTX-M Containing Escherichia coli Isolates from Retail Meats and Cattle in the United States;Tadesse;Microb. Drug Resist.,2018

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