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.

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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