Antibiotic Resistance Patterns and Detection of bla DHA-1 in Salmonella Species Isolates from Chicken Farms in South Korea

Author:

Rayamajhi Nabin1,Jung Byeong Yeal2,Cha Seung Bin1,Shin Min Kyung1,Kim Aeran3,Kang Min Su3,Lee Kang Mu3,Yoo Han Sang1

Affiliation:

1. Department of Infectious Diseases, College of Veterinary Medicine, KRF Zoonotic Disease Priority Research Institute, Brain Korea 21 for Veterinary Science, Seoul National University, Seoul 151-742, South Korea

2. Animal Disease Diagnostic Center

3. Avian Disease Division, National Veterinary Research and Quarantine Service, Anyang 430-016, Kyunggi, South Korea

Abstract

ABSTRACT Fifteen nonrepetitive ampicillin-resistant Salmonella spp. were identified among 91 Salmonella sp. isolates during nationwide surveillance of Salmonella in waste from 131 chicken farms during 2006 and 2007. Additional phenotyping and genetic characterization of these 15 isolates by using indicator cephalosporins demonstrated that resistance to ampicillin and reduced susceptibility to cefoxitin in three isolates was caused by TEM-1 and DHA-1 β-lactamases. Plasmid profiling and Southern blot analysis of these three DHA-1-positive Salmonella serovar Indiana isolates and previously reported unrelated clinical isolates of DHA-1-positive Salmonella serovar Montevideo, Klebsiella pneumoniae , and Escherichia coli from humans and swine indicated the involvement of the large-size plasmid. Restriction enzyme digestion of the plasmids from the transconjugants showed variable restriction patterns except for the two S almonella serovar Indiana isolates identified in this study. To the best of our knowledge, this is the first report of the presence of the DHA-1 gene among Salmonella spp. of animal origin.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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