Open Access
Research (Published online: 18-06-2022)
14. Characterization of plasmid-mediated quinolone resistance genes and extended-spectrum beta-lactamases in non-typhoidal Salmonella enterica isolated from broiler chickens
Esraa Razzaq Hassan, Abdullah O. Alhatami, Husam Muhsen Abdulwahab and Bradly S. Schneider
Veterinary World, 15(6): 1515-1522

Esraa Razzaq Hassan: Department of Microbiology, Faculty of Veterinary Medicine, University of Kufa, Kufa, Iraq.
Abdullah O. Alhatami: Department of Public Health, Faculty of Veterinary Medicine, University of Kufa, Kufa, Iraq.
Husam Muhsen Abdulwahab: Department of Pathology, Faculty of Veterinary Medicine, University of Kufa, Kufa, Iraq.
Bradly S. Schneider: Etiologic, San Francisco, California, United States.

doi: www.doi.org/10.14202/vetworld.2022.1515-1522

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Article history: Received: 17-02-2022, Accepted: 08-05-2022, Published online: 18-06-2022

Corresponding author: Abdullah O. Alhatami

E-mail: abdullaho.mansour@uokufa.edu.iq

Citation: Hassan ER, Alhatami AO, Abdulwahab HM, Schneider BS (2022) Characterization of plasmid-mediated quinolone resistance genes and extended-spectrum beta-lactamases in non-typhoidal Salmonella enterica isolated from broiler chickens, Veterinary World, 15(6): 1515–1522.
Abstract

Background and Aim: Antibiotic-resistant Salmonella is a public health concern. Fluoroquinolones and extended-spectrum beta-lactams are widely used for the treatment of Salmonella infections. This study focused on the detection of plasmid-mediated quinolone resistance (PMQR) and extended-spectrum beta-lactamase (ESBL) genes among multidrug-resistant (MDR) Salmonella enterica isolated from broilers.

Materials and Methods: A total of 40 non-typhoidal S. enterica isolates were collected from 28 broiler chicken farms in four Iraqi Governorates. These isolates were examined for their susceptibility to 10 antimicrobial agents by disk-diffusion method followed by polymerase chain reaction assay for the detection of PMQR determinants and ESBLs genes.

Results: Salmonella strains revealed high levels of resistance to the following antibiotics: Nalidixic acid 100%, levofloxacin (LEV) 97.5%, amoxicillin-clavulanic acid 95.0%, tetracycline 92.5%, and nitrofurantoin 80.0%. Otherwise, all isolates were susceptible to cefotaxime and ceftriaxone. All isolates were MDR, with 15 different profiles observed. Among 38 amoxicillin/clavulanic acid-resistant Salmonella isolates, 20 (52.6%) had the blaTEM gene, while blaSHV, blaCTX-M, and blaOXA genes were not detected. Only 5 (12.8%) out of 39 LEV-resistant isolates were positive for qnrB, three of which had blaTEM. No qnrC or qnrD, qnrS, aac(6')-Ib-cr, qunA, and oqxAB genes were found in any of the tested isolates.

Conclusion: This study demonstrates that broiler chickens may be considered a potential source for spreading MDR non-typhoidal Salmonella and ESBL traits in poultry production. Therefore, it is important to continuously monitor ESBL and PMQR genes to avoid the spread of resistant strains in the food chain and impact public health.

Keywords: antimicrobial resistance, extended-spectrum β-lactamases, food-borne pathogen, multidrug-resistant, poultry, qnr, Salmonella.