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Molecular epidemiology reveals distinct lineages and genomic profiles of avian pathogenic and commensal Escherichia coli in broiler flocks

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Le résumé fourni par la source

Escherichia coli is predominantly an intestinal commensal; however, avian pathogenic E. coli (APEC) causes colibacillosis in poultry. The APEC pathotype lacks a clear genetic definition, further complicated by its opportunistic nature. To compare the genomic characteristics of avian pathogenic and commensal E. coli , isolates from diseased and healthy broiler flocks in Sweden were analysed, collected between 2022 and 2024. Clinical isolates ( n =202) were collected at necropsy from 40 flocks during colibacillosis outbreaks, and non-clinical isolates ( n =109) were obtained from litter using sock sampling in 60 unaffected flocks. Whole-genome sequencing was performed to determine sequence types (STs), serotypes, phylogroups, virulence-associated genes (VAGs) and to identify ColV plasmids. A five-gene APEC marker panel targeting plasmid-associated virulence genes ( iutA, hlyF, iss, iroN and ompT ) was used to classify isolates as APEC or non-APEC, and high-risk clones were identified according to the APECtyper scheme. Clinical isolates comprised 22 STs and 25 serotypes and were dominated (59%) by the ST23 O78:H4 clone within phylogroup C. Non-clinical isolates were more diverse (44 STs, 67 serotypes), primarily within phylogroups A (48%) and B1 (33%), with no clone predominating. Clinical isolates carried significantly more VAGs ( P <0.001). Overall, 97% of clinical isolates were identified as APEC, all of which carried a ColV plasmid. Among non-clinical isolates, 28% were APEC, of which 80% were ColV-positive. However, clinical APEC isolates carried significantly more ColV-associated virulence gene clusters than non-clinical APEC isolates ( P <0.001). Only 5% of non-APEC isolates were ColV-positive. High-risk clones were restricted to clinical APEC isolates (63%). These findings indicate that colibacillosis in Swedish broilers was largely driven by a dominant APEC clone during the study period, highlighting the need for coordinated surveillance and targeted control of high-risk clones. The presence of VAG reservoirs among isolates from unaffected flocks, together with the limitations of marker-based APEC typing, supports integrated frameworks combining lineage, VAG profiles and plasmid content for more reliable APEC identification and pathogenicity assessment.

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DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Molecular epidemiology reveals distinct lineages and genomic profiles of avian pathogenic and commensal Escherichia coli in broiler flocks
Date Crossref
23/07/2026
Éditeur
Microbiology Society
Type
journal-article

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Les sujets associés

Escherichia coli research studiesAntibiotic Resistance in BacteriaYersinia bacterium, plague, ectoparasites research

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