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Published on: March 3, 2023
Mobile Colistin Resistance (mcr) Gene-Containing Organisms in Poultry Sector in Low- and Middle-Income Countries:
Madubuike Umunna Anyanwu1, Ishmael Festus Jaja1, Charles Odilichukwu R Okpala2,3
1Department of Livestock and Pasture Science, University of Fort Hare, Alice 5700, South Africa.
Abstract:
Mobile colistin resistance (mcr) genes (mcr-1 to mcr-10) are plasmid-encoded genes that threaten the clinical utility of colistin (COL), one of the highest-priority critically important antibiotics (HP-CIAs) used to treat infections caused by multidrug-resistant and extensively drug-resistant bacteria in humans and animals. For more than six decades, COL has been used largely unregulated in the poultry sector in low- and middle-income countries (LMICs), and this has led to the development/spread of mcr gene-containing bacteria (MGCB). The prevalence rates of mcr-positive organisms from the poultry sector in LMICs between January 1970 and May 2023 range between 0.51% and 58.8%. Through horizontal gene transfer, conjugative plasmids possessing insertion sequences (ISs) (especially ISApl1), transposons (predominantly Tn6330), and integrons have enhanced the spread of mcr-1, mcr-2, mcr-3, mcr-4, mcr-5, mcr-7, mcr-8, mcr-9, and mcr-10 in the poultry sector in LMICs. These genes are harboured by Escherichia, Klebsiella, Proteus, Salmonella, Cronobacter, Citrobacter, Enterobacter, Shigella, Providencia, Aeromonas, Raoultella, Pseudomonas, and Acinetobacter species, belonging to diverse clones. The mcr-1, mcr-3, and mcr-10 genes have also been integrated into the chromosomes of these bacteria and are mobilizable by ISs and integrative conjugative elements. These bacteria often coexpress mcr with virulence genes and other genes conferring resistance to HP-CIAs, such as extended-spectrum cephalosporins, carbapenems, fosfomycin, fluoroquinolone, and tigecycline. The transmission routes and dynamics of MGCB from the poultry sector in LMICs within the One Health triad include contact with poultry birds, feed/drinking water, manure, poultry farmers and their farm workwear, farming equipment, the consumption and sale of contaminated poultry meat/egg and associated products, etc. The use of pre/probiotics and other non-antimicrobial alternatives in the raising of birds, the judicious use of non-critically important antibiotics for therapy, the banning of nontherapeutic COL use, improved vaccination, biosecurity, hand hygiene and sanitization, the development of rapid diagnostic test kits, and the intensified surveillance of mcr genes, among others, could effectively control the spread of MGCB from the poultry sector in LMICs.
Insights
Mobile colistin resistance (mcr) genes spread widely in poultry from low- and middle-income countries, threatening antibiotic efficacy. Controlling this requires banning non-therapeutic colistin use and enhancing biosecurity measures.
Area of Science:
- Microbiology and Infectious Diseases
- Antimicrobial Resistance
- One Health
Background:
- Mobile colistin resistance (mcr) genes (mcr-1 to mcr-10) confer resistance to colistin (COL), a critical antibiotic for multidrug-resistant infections.
- Unregulated COL use in poultry in low- and middle-income countries (LMICs) has driven the emergence and spread of mcr-harboring bacteria (MGCB).
- Prevalence of mcr-positive organisms in LMIC poultry ranges from 0.51% to 58.8% (1970-2023).
Purpose of the Study:
- To review the prevalence, spread, and transmission dynamics of mcr genes in the poultry sector of LMICs.
- To identify key factors contributing to the dissemination of MGCB within the One Health framework.
- To propose strategies for controlling the spread of MGCB originating from poultry.
Main Methods:
- Literature review of studies on mcr gene prevalence in poultry from LMICs (1970-2023).
- Analysis of horizontal gene transfer mechanisms (plasmids, insertion sequences, transposons, integrons) facilitating mcr gene spread.
- Identification of bacterial hosts and co-resistance patterns associated with mcr genes.
Main Results:
- Multiple mcr genes (mcr-1 to mcr-10) are prevalent in diverse bacterial species within LMIC poultry.
- Horizontal gene transfer via mobile genetic elements, particularly ISApl1 and Tn6330, significantly enhances mcr gene dissemination.
- MGCB frequently co-express mcr genes with resistance determinants to other critical antibiotics and virulence factors.
- Transmission routes involve direct contact, contaminated feed/water, manure, and consumption of poultry products.
Conclusions:
- The poultry sector in LMICs is a significant reservoir and source for the spread of mcr genes.
- Effective control requires a multi-faceted approach including banning non-therapeutic COL use, promoting judicious antibiotic stewardship, and enhancing biosecurity.
- Intensified surveillance and development of rapid diagnostics are crucial for managing MGCB transmission within the One Health context.
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