Genomic insights into the rapid emergence and evolution of MDR in Staphylococcus pseudintermedius

Alex J McCarthy1, Ewan M Harrison2, Kinga Stanczak-Mrozek1

  • 1Institute of Infection and Immunity, St George's, University of London, London, UK.

Abstract

Insights

Multi-drug resistant methicillin-resistant Staphylococcus pseudintermedius (MRSP) rapidly evolves in dogs. Genomic analysis reveals limited mobile genetic elements and mutations drive MRSP emergence, highlighting the need for comprehensive antimicrobial stewardship.

Area of Science:

  • Veterinary Microbiology
  • Genomics
  • Antimicrobial Resistance

Background:

  • Methicillin-resistant Staphylococcus pseudintermedius (MRSP) is a significant canine pathogen.
  • MRSP poses treatment challenges and public health concerns due to zoonotic potential.
  • Understanding the genetic basis of MRSP resistance is crucial.

Purpose of the Study:

  • To investigate the genomic basis of antimicrobial resistance in Staphylococcus pseudintermedius.
  • To identify genetic elements and mutations contributing to multi-drug resistance (MDR) in MRSP.

Main Methods:

  • Whole-genome sequencing of 12 Staphylococcus pseudintermedius isolates.
  • Analysis of isolates with diverse sequence types (STs) and resistance phenotypes.

Main Results:

  • Nine clonal lineages acquired staphylococcal cassette chromosome (SCC) mec and/or Tn5405-like elements, conferring resistance to multiple antimicrobials.
  • MDR MRSP clones (ST68, ST71) accumulated gyrA and grlA mutations for fluoroquinolone resistance.
  • High variability in mobile genetic element (MGE) carriage suggests frequent horizontal gene transfer.

Conclusions:

  • MDR MRSP evolves rapidly through acquisition of limited MGEs and mutations.
  • Widespread antimicrobial use may co-select for MDR and extensively drug-resistant (XDR) strains.
  • Comprehensive antimicrobial stewardship across human and veterinary medicine is essential to preserve drug efficacy.

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