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Molecular Epidemiological Survey of Prophages in MRSA Isolates in Taiwan
Lee-Chung Lin1, Mao-Cheng Ge1, Tsui-Ping Liu1
1Department of Laboratory Medicine, Chang Gung Memorial Hospital, Taoyuan, Taiwan.
Introduction:
The prevalence of methicillin-resistant Staphylococcus aureus (MRSA) type SCCmec IV or V is increasing in Taiwan. It has been suggested that the surface protein SasX is responsible for their transmission. However, the sasX gene was not detected in our SCCmec IV or V isolates. Since sasX was originally found in S. epidermidis and believed to be transferred to S. aureus by a prophage, studies were conducted to detect and type this prophage in our clinical isolates.
Materials And Methods:
A total of 1192 MRSA isolates collected from 2006 to 2014 were examined. Multiplex PCRs were performed to determine SCCmec, sasX, and prophage types.
Results:
The prevalence of SCCmec IV and V isolates was increased in recent years (from 2006 to 2014). The sasX gene was present in most SCCmec III isolates but was absent in SCCmec IV or V isolates. The Sa5 prophage was found only in SCCmec IV and SCCmec V (or Vt) isolates, and the Sa6 prophage was mainly present in SCCmec III isolates. MRSA isolates harboring prophage combinations Sa1, Sa2, and Sa3; Sa2 and Sa3; Sa2, Sa3, and Sa7; or Sa2 and Sa7 were mainly of SCCmec II, and those that harbored prophage combinations Sa3 and Sa6; Sa3, Sa6, and Sa7; or Sa3 and Sa7 were mostly of SCCmec III. The numbers of SCCmec II isolates containing prophages Sa2, Sa3, and Sa7 and those of SCCmec III isolates containing prophages Sa3 and Sa6 or Sa3, Sa6, and Sa7 were decreased from 2010 to 2014. The number of SCCmec IV isolates with prophage Sa3 or prophages Sa3 and Sa5 was decreased, but that of those with prophage Sa6 or prophages Sa2 and Sa3 was increased from 2010 to 2014.
Conclusion:
The sasX gene was found to play no role in clonal selection of MRSA. The finding that different SCCmec types of MRSA harbored different types of prophages suggests that these prophages may affect the survival and clonal expansion of certain types of MRSA.
Insights
The surface protein SasX does not play a role in methicillin-resistant Staphylococcus aureus (MRSA) transmission. Different SCCmec types of MRSA harbor distinct prophages, influencing their survival and spread.
Area of Science:
- Microbiology
- Genetics
- Epidemiology
Background:
- Increasing prevalence of methicillin-resistant Staphylococcus aureus (MRSA) with SCCmec types IV or V in Taiwan.
- The surface protein SasX was hypothesized to be involved in MRSA transmission, but was not detected in prevalent SCCmec IV or V isolates.
- SasX, originally found in S. epidermidis, is believed to transfer to S. aureus via prophages.
Purpose of the Study:
- To investigate the role of the sasX gene in MRSA clonal selection.
- To detect and characterize prophages in clinical MRSA isolates from Taiwan.
- To understand the association between SCCmec types and prophage carriage in MRSA.
Main Methods:
- Analysis of 1192 MRSA isolates collected between 2006 and 2014.
- Utilized multiplex PCR to determine SCCmec types, presence of the sasX gene, and prophage types.
- Examined temporal trends in SCCmec and prophage prevalence.
Main Results:
- The sasX gene was absent in SCCmec IV and V MRSA isolates, despite their increasing prevalence.
- The Sa5 prophage was exclusively found in SCCmec IV and V isolates, while Sa6 was mainly in SCCmec III.
- Distinct prophage profiles were associated with different SCCmec types (II, III, IV, V), with some showing significant temporal changes from 2010-2014.
Conclusions:
- The sasX gene is not implicated in the clonal selection of MRSA.
- The presence of specific prophages is strongly correlated with particular SCCmec types of MRSA.
- Prophages likely play a role in the survival and clonal expansion of specific MRSA lineages.
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