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Updated: Apr 19, 2026

Heuristic Mining of Hierarchical Genotypes and Accessory Genome Loci in Bacterial Populations
Published on: December 7, 2021
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.
Objectives:
MDR methicillin-resistant Staphylococcus pseudintermedius (MRSP) strains have emerged rapidly as major canine pathogens and present serious treatment issues and concerns to public health due to their, albeit low, zoonotic potential. A further understanding of the genetics of resistance arising from a broadly susceptible background of S. pseudintermedius is needed.
Methods:
We sequenced the genomes of 12 S. pseudintermedius isolates of varied STs and resistance phenotypes.
Results:
Nine distinct clonal lineages had acquired either staphylococcal cassette chromosome (SCC) mec elements and/or Tn5405-like elements carrying up to five resistance genes [aphA3, sat, aadE, erm(B), dfrG] to generate MRSP, MDR methicillin-susceptible S. pseudintermedius and MDR MRSP populations. The most successful and clinically problematic MDR MRSP clones, ST68 SCCmecV(T) and ST71 SCCmecII-III, have further accumulated mutations in gyrA and grlA conferring resistance to fluoroquinolones. The carriage of additional mobile genetic elements (MGEs) was highly variable, suggesting that horizontal gene transfer is frequent in S. pseudintermedius populations.
Conclusions:
Importantly, the data suggest that MDR MRSP evolved rapidly by the acquisition of a very limited number of MGEs and mutations, and that the use of many classes of antimicrobials may co-select for the spread and emergence of MDR and XDR strains. Antimicrobial stewardship will need to be comprehensive, encompassing human medicine and veterinary disciplines to successfully preserve antimicrobial efficacy.
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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