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Updated: Aug 9, 2025

Methodology for the Study of Horizontal Gene Transfer in Staphylococcus aureus
Published on: March 10, 2017
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.
Abstract:
Methicillin-resistant Staphylococcus aureus (MRSA) clonal-complex 398 (CC398) is the dominant livestock-associated (LA) MRSA lineage in European livestock and an increasing cause of difficult-to-treat human disease. LA-CC398 MRSA evolved from a diverse human-associated methicillin-sensitive population, and this transition from humans to livestock was associated with three mobile genetic elements (MGEs). In this study, we apply transposon-directed insertion site sequencing (TraDIS), a high-throughput transposon mutagenesis approach, to investigate genetic signatures that contribute to LA-CC398 causing disease in humans. We identified 26 genes associated with LA-CC398 survival in human blood and 47 genes in porcine blood. We carried out phylogenetic reconstruction on 1,180 CC398 isolates to investigate the genetic context of all identified genes. We found that all genes associated with survival in human blood were part of the CC398 core genome, while 2/47 genes essential for survival in porcine blood were located on MGEs. Gene SAPIG0966 was located on the previously identified Tn916 transposon carrying a tetracycline resistance gene, which has been shown to be stably inherited within LA-CC398. Gene SAPIG1525 was carried on a phage element, which in part, matched phiSa2wa_st1, a previously identified bacteriophage carrying the Panton-Valentine leucocidin (PVL) virulence factor. Gene deletion mutants constructed in two LA-CC398 strains confirmed that the SAPIG0966 carrying Tn916 and SAPIG1525 were important for CC398 survival in porcine blood. Our study shows that MGEs that carry antimicrobial resistance and virulence genes could have a secondary function in bacterial survival in blood and may be important for host adaptation. IMPORTANCE CC398 is the dominant type of methicillin-resistant Staphylococcus aureus (MRSA) in European livestock and a growing cause of human infections. Previous studies have suggested MRSA CC398 evolved from human-associated methicillin-sensitive Staphylococcus aureus and is capable of rapidly readapting to human hosts while maintaining antibiotic resistance. Using high-throughput transposon mutagenesis, our study identified 26 and 47 genes important for MRSA CC398 survival in human and porcine blood, respectively. Two of the genes important for MRSA CC398 survival in porcine blood were located on mobile genetic elements (MGEs) carrying resistance or virulence genes. Our study shows that these MGEs carrying antimicrobial resistance and virulence genes could have a secondary function in bacterial survival in blood and may be important for blood infection and host adaptation.
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.
Related Concept Videos
Mutations in Microorganisms
Transduction
Mismatch Repair
Antibiotic Selection
Development of Antibiotic Resistance
Transformation

