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Subcutaneous Infection of Methicillin Resistant Staphylococcus Aureus MRSA
Published on: February 9, 2011
Range Expansion and the Origin of USA300 North American Epidemic Methicillin-Resistant Staphylococcus aureus
Lavanya Challagundla1, Xiao Luo1, Isabella A Tickler2
1Department of Microbiology and Immunology, University of Mississippi Medical Center, Jackson, Mississippi, USA.
Abstract:
The USA300 North American epidemic (USA300-NAE) clone of methicillin-resistant Staphylococcus aureus has caused a wave of severe skin and soft tissue infections in the United States since it emerged in the early 2000s, but its geographic origin is obscure. Here we use the population genomic signatures expected from the serial founder effects of a geographic range expansion to infer the origin of USA300-NAE and identify polymorphisms associated with its spread. Genome sequences from 357 isolates from 22 U.S. states and territories and seven other countries are compared. We observe two significant signatures of range expansion, including decreases in genetic diversity and increases in derived allele frequency with geographic distance from the Pennsylvania region. These signatures account for approximately half of the core nucleotide variation of this clone, occur genome wide, and are robust to heterogeneity in temporal sampling of isolates, human population density, and recombination detection methods. The potential for positive selection of a gyrA fluoroquinolone resistance allele and several intergenic regions, along with a 2.4 times higher recombination rate in a resistant subclade, is noted. These results are the first to show a pattern of genetic variation that is consistent with a range expansion of an epidemic bacterial clone, and they highlight a rarely considered but potentially common mechanism by which genetic drift may profoundly influence bacterial genetic variation.IMPORTANCE The process of geographic spread of an origin population by a series of smaller populations can result in distinctive patterns of genetic variation. We detect these patterns for the first time with an epidemic bacterial clone and use them to uncover the clone's geographic origin and variants associated with its spread. We study the USA300 clone of methicillin-resistant Staphylococcus aureus, which was first noticed in the early 2000s and subsequently became the leading cause of skin and soft tissue infections in the United States. The eastern United States is the most likely origin of epidemic USA300. Relatively few variants, which include an antibiotic resistance mutation, have persisted during this clone's spread. Our study suggests that an early chapter in the genetic history of this epidemic bacterial clone was greatly influenced by random subsampling of isolates during the clone's geographic spread.
Insights
The USA300 epidemic clone of methicillin-resistant Staphylococcus aureus likely originated in eastern Pennsylvania. Population genomic signatures reveal genetic diversity patterns consistent with geographic spread and identify key variants, including antibiotic resistance mutations, associated with its expansion.
Area of Science:
- Microbiology and Infectious Diseases
- Population Genomics
- Epidemiology
Background:
- The USA300-North American epidemic (USA300-NAE) clone of methicillin-resistant Staphylococcus aureus emerged in the early 2000s.
- USA300-NAE is a leading cause of severe skin and soft tissue infections in the United States.
- The geographic origin of the USA300-NAE clone remains undetermined.
Purpose of the Study:
- To infer the geographic origin of the USA300-NAE clone.
- To identify genetic polymorphisms associated with the spread of USA300-NAE.
- To investigate the role of population genomic signatures in bacterial range expansion.
Main Methods:
- Comparative genome sequencing of 357 USA300-NAE isolates from diverse geographic locations.
- Analysis of population genomic signatures indicative of serial founder effects during geographic range expansion.
- Assessment of genetic diversity, derived allele frequency, and recombination rates across the genome.
Main Results:
- Significant signatures of range expansion, including decreased genetic diversity and increased derived allele frequency, were observed with increasing distance from Pennsylvania.
- These signatures were genome-wide and robust to sampling variations and recombination.
- A fluoroquinolone resistance allele in gyrA and specific intergenic regions showed potential positive selection, with a resistant subclade exhibiting a higher recombination rate.
Conclusions:
- The eastern United States, specifically the Pennsylvania region, is the most probable origin of the epidemic USA300-NAE clone.
- Genetic drift, driven by serial founder effects during geographic spread, significantly shaped the genetic variation of this epidemic clone.
- A limited number of variants, including antibiotic resistance mutations, were selected or maintained during the clone's expansion.
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