High-Throughput Mutagenesis Reveals a Role for Antimicrobial Resistance- and Virulence-Associated Mobile Genetic

Xiaoliang Ba1, Marta Matuszewska1,2, Lajos Kalmar1

  • 1Department of Veterinary Medicine, University of Cambridge, Cambridge, United Kingdom.

Microbiology Spectrum
|February 23, 2023
PubMed

Insights

Livestock-associated methicillin-resistant Staphylococcus aureus CC398 (LA-MRSA CC398) adapts to human hosts. Mobile genetic elements carrying resistance and virulence genes also aid bacterial survival in blood, facilitating host adaptation.

Area of Science:

  • Microbiology
  • Genetics
  • Infectious Diseases

Background:

  • Livestock-associated methicillin-resistant Staphylococcus aureus (LA-MRSA) CC398 is prevalent in European livestock.
  • LA-MRSA CC398 poses a growing threat of difficult-to-treat human infections.
  • This lineage evolved from human-associated methicillin-sensitive strains, acquiring mobile genetic elements (MGEs).

Purpose of the Study:

  • Investigate genetic factors enabling LA-MRSA CC398 survival in human and porcine blood.
  • Identify specific genes and MGEs crucial for host adaptation and disease in CC398.

Main Methods:

  • Applied transposon-directed insertion site sequencing (TraDIS) for high-throughput mutagenesis.
  • Conducted phylogenetic reconstruction on 1,180 CC398 isolates.
  • Constructed gene deletion mutants to confirm gene function in survival assays.

Main Results:

  • Identified 26 genes essential for survival in human blood and 47 in porcine blood.
  • Two genes critical for porcine blood survival (SAPIG0966 and SAPIG1525) were located on MGEs (Tn916 and a phage, respectively).
  • Confirmed the role of Tn916 and SAPIG1525 in CC398 survival in porcine blood via mutant analysis.

Conclusions:

  • MGEs carrying antimicrobial resistance and virulence genes can play a dual role in bacterial survival.
  • These MGEs may be critical for host adaptation and the emergence of MRSA CC398 in human infections.
  • Understanding these genetic elements is key to controlling LA-MRSA CC398 transmission and pathogenesis.

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