Fluoroquinolones are frequently used antimicrobials for the treatment of avian pathogenic Escherichia coli (APEC) infections. However, rapid development and selection of resistance to this class of antimicrobial drugs is a significant problem. The aim of this study was to investigate the occurrence and mechanisms of antimicrobial resistance against enrofloxacin (ENRO) in APEC strains in Flanders, Belgium. One hundred and twenty-five APEC strains from broilers with clinical colibacillosis were collected in Flanders from November 2017 to June 2018. The minimum inhibitory concentration (MIC) of all strains and the mutant prevention concentration (MPC) of a sample of sensitive isolates were determined using a commercial gradient strip test and via the agar dilution method, respectively. Non-wild type (NWT) isolates were further characterized using polymerase chain reaction (PCR), gel electrophoresis and gene sequencing. Forty percent of the APEC strains were NWT according to the epidemiological cut-off (ECOFF) measure (MIC > 0.125 mu g/mL). With respect to clinical breakpoints, 21% were clinically intermediate (0.5 <= MIC <= 1 mu g/mL) and 10% were clinically resistant (MIC >= 2). The MPC values of the tested strains ranged from 0.064 to 1 mu g/mL, resulting in MPC/MIC ratios varying from 4 to 32. The majority (92%) of the NWT strains carried one or two mutations in gyrA. Less than a quarter (22%) manifested amino acid substitutions in the topoisomerase IV parC subunit. Only three of the NWT strains carried a mutation in parE. Plasmid mediated quinolone resistance (PMQR) associated genes were detected in 18% of the NWT strains. In contrast to the relatively large number of NWT strains, only a small percentage of APEC isolates was considered clinically resistant. The most common MPC value for sensitive strains was 0.125 mu g/mL. Some isolates showed higher values, producing wide mutant selection windows (MSW). Chromosomal mutations in DNA gyrase and topoisomerase IV were confirmed as the main source of decreased antimicrobial fluoroquinolone susceptibility, de-emphasizing the role of PMQR mechanisms.
机构:
Penn State Univ, Dept Food Sci, University Pk, PA USA
Penn State Univ, Escherichia coli Reference Ctr, University Pk, PA USANatl Univ Sci & Technol, Atta Ur Rahman Sch Appl Biosci, Islamabad, Pakistan
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Samhwa GPS Breeding Agri Inc, Qual Management Dept, Hongseong Gun 32291, Chung Nam, South KoreaSamhwa GPS Breeding Agri Inc, Qual Management Dept, Hongseong Gun 32291, Chung Nam, South Korea
Yoon, Mi Young
Kim, Yeong Bin
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Kyungpook Natl Univ, Coll Vet Med, Daegu 41566, South Korea
Kyungpook Natl Univ, Zoonoses Res Inst, Daegu 41566, South KoreaSamhwa GPS Breeding Agri Inc, Qual Management Dept, Hongseong Gun 32291, Chung Nam, South Korea
Kim, Yeong Bin
Ha, Jong Su
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Samhwa GPS Breeding Agri Inc, Qual Management Dept, Hongseong Gun 32291, Chung Nam, South KoreaSamhwa GPS Breeding Agri Inc, Qual Management Dept, Hongseong Gun 32291, Chung Nam, South Korea
Ha, Jong Su
Seo, Kwang Won
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Mississippi State Univ, Coll Vet Med, Dept Basic Sci, Mississippi State, MS 39762 USASamhwa GPS Breeding Agri Inc, Qual Management Dept, Hongseong Gun 32291, Chung Nam, South Korea
Seo, Kwang Won
Noh, Eun Bi
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Kyungpook Natl Univ, Coll Vet Med, Daegu 41566, South Korea
Kyungpook Natl Univ, Zoonoses Res Inst, Daegu 41566, South KoreaSamhwa GPS Breeding Agri Inc, Qual Management Dept, Hongseong Gun 32291, Chung Nam, South Korea
Noh, Eun Bi
Son, Se Hyun
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Kyungpook Natl Univ, Coll Vet Med, Daegu 41566, South Korea
Kyungpook Natl Univ, Zoonoses Res Inst, Daegu 41566, South KoreaSamhwa GPS Breeding Agri Inc, Qual Management Dept, Hongseong Gun 32291, Chung Nam, South Korea
Son, Se Hyun
Lee, Young Ju
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Kyungpook Natl Univ, Coll Vet Med, Daegu 41566, South Korea
Kyungpook Natl Univ, Zoonoses Res Inst, Daegu 41566, South KoreaSamhwa GPS Breeding Agri Inc, Qual Management Dept, Hongseong Gun 32291, Chung Nam, South Korea