First study on virulence genes, antimicrobial resistance, and integrons in Escherichia coli isolated from cage, free-range, and organic commercial eggs in Phayao Province, Thailand
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Published:2022-09-25
Issue:
Volume:
Page:2293-2301
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ISSN:2231-0916
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Container-title:Veterinary World
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language:en
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Short-container-title:Vet World
Author:
Siriphap Achiraya1ORCID, Suwancharoen Chittakun1ORCID, Laenoi Watchara2ORCID, Kraivuttinun Parinya3ORCID, Suthienkul Orasa4ORCID, Prapasawat Watsawan5ORCID
Affiliation:
1. Division of Microbiology and Parasitology, School of Medical Sciences, University of Phayao, Phayao 56000, Thailand. 2. Division of Animal Science, School of Agriculture and Natural Resources, University of Phayao, Phayao 56000, Thailand. 3. Program in Environment, Faculty of Science and Technology, Uttaradit Rajabhat University, Uttaradit 53000, Thailand. 4. Faculty of Public Health, Mahidol University, Bangkok 10400, Thailand. 5. Department of Clinic, Faculty of Veterinary Medicine, Mahanakorn University of Technology, Bangkok 10530, Thailand.
Abstract
Background and Aim: Antimicrobial resistance (AMR) is a global problem that affects human and animal health, and eggs can act as a vehicle for pathogenic and non-pathogenic resistant bacteria in the food chain. Escherichia coli is an indicator of food contamination with fecal materials as well as the occurrence and levels of AMR. This study aimed to investigate the presence of AMR, integrons, and virulence genes in E. coli isolated from eggshell samples of three egg production systems, from supermarkets in Thailand.
Materials and Methods: A total of 750 hen's egg samples were purchased from supermarkets in Phayao Province: Cage eggs (250), free-range eggs (250), and organic eggs (250). Each sample was soaked in buffered peptone water (BPW), and the BPW samples were incubated at 37°C for 18–24 h. All samples were tested for E. coli by the standard conventional culture method. Then, all identified E. coli were tested for antimicrobial susceptibility to 15 antimicrobial agents by the agar disk diffusion method. All E. coli strains were subsequently found to have virulence genes and Classes 1 and 2 integrons by polymerase chain reaction.
Results: Among the eggshell samples, 91 samples were identified as having E. coli (cage eggs, 24 strains; free-range eggs, 27 strains; and organic eggs, 40 strains). Then, among the E. coli strains, 47 (51.6%) were positive for at least one virulence gene. The proportion of AMR in the eggshell samples was 91.2% (83/91), and streptomycin (STR), ampicillin (AMP), and tetracycline (TET) had a high degree of resistance. Among the E. coli strains, 27 (29.7%) strains were positive for class 1 or 2 integrons, and integron-positive strains were commonly found in STR-, AMP-, and TET-resistant strains. Multidrug resistance (MDR) was detected in 57.1% (52/91) of the E. coli strains, with STR-AMP-TET (5.5%) as the most frequent pattern. The proportion of MDR in cage eggs was 75.0% (18/24), which was higher than in both free-range and organic eggs. On the other hand, 53.2% (25/47) of E. coli carrying virulence genes had MDR, distributed across the production systems as follows: Cage eggs, 76.9% (10/13); free-range eggs, 63.6% (7/11); and organic eggs, 34.8% (8/23).
Conclusion: Escherichia coli was detected in eggshell samples from all three egg production systems. The high level of virulence genes, AMR, and integrons indicated the possibility of dissemination of AMR among pathogenic and commensal E. coli through eggshells. These findings could be a major concern to farmers, food handlers, and consumers, especially regarding raw egg consumption.
Funder
University of Phayao Mahanakorn University of Technology
Publisher
Veterinary World
Subject
General Veterinary
Reference47 articles.
1. World Health Organization. (2019) Salmonella (Non-Typhoidal). World Health Organization, Geneva. 2. Founou, L.L., Founou, R.C. and Essack, S.Y. (2016) Antibiotic resistance in the food chain: A developing country perspective. Front. Microbiol., 7: 1881. 3. Office of Agricultural Economics. (2022) Egg Balance Measure. Office of Agricultural Economics, Thailand. 4. Economou, V. and Gousia, P. (2015) Agriculture and food animals as a source of antimicrobial resistant bacteria. Infect. Drug Resist., 8: 49–61. 5. Clements, A., Young, J.C., Constantinou, N. and Frankel, G. (2012) Infection strategies of enteric pathogenic Escherichia coli. Gut. Microbes, 3(2): 71–87.
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