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

Author:

McCarthy Alex J.1,Harrison Ewan M.2,Stanczak-Mrozek Kinga1,Leggett Bernadette3,Waller Andrew4,Holmes Mark A.2,Lloyd David H.5,Lindsay Jodi A.1,Loeffler Anette5

Affiliation:

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

2. 2  Department of Veterinary Medicine, University of Cambridge, Cambridge, UK

3. 3  Pathobiology Unit, University Veterinary Hospital, School of Veterinary Medicine, University College Dublin, Dublin, Ireland

4. 4  Centre of Preventive Medicine, Animal Health Trust, Newmarket, UK

5. 5  Veterinary Clinical Sciences and Services, Royal Veterinary College, Hawkshead Campus, University of London, London, UK

Abstract

Abstract 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.

Publisher

Oxford University Press (OUP)

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology,Microbiology (medical)

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