Pan-Genome and Comparative Genome Analyses of Propionibacterium acnes Reveal Its Genomic Diversity in the Healthy and Diseased Human Skin Microbiome
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Open Access
- 1 July 2013
- journal article
- research article
- Published by American Society for Microbiology in mBio
- Vol. 4 (3) , e00003-13-13
- https://doi.org/10.1128/mbio.00003-13
Abstract
Propionibacterium acnes constitutes a major part of the skin microbiome and contributes to human health. However, it has also been implicated as a pathogenic factor in several diseases, including acne, one of the most common skin diseases. Its pathogenic role, however, remains elusive. To better understand the genetic landscape and diversity of the organism and its role in human health and disease, we performed a comparative genome analysis of 82 P. acnes strains, 69 of which were sequenced by our group. This collection covers all known P. acnes lineages, including types IA, IB, II, and III. Our analysis demonstrated that although the P. acnes pan-genome is open, it is relatively small and expands slowly. The core regions, shared by all the sequenced genomes, accounted for 88% of the average genome. Comparative genome analysis showed that within each lineage, the strains isolated from the same individuals were more closely related than the ones isolated from different individuals, suggesting that clonal expansions occurred within each individual microbiome. We also identified the genetic elements specific to each lineage. Differences in harboring these elements may explain the phenotypic and functional differences of P. acnes in functioning as a commensal in healthy skin and as a pathogen in diseases. Our findings of the differences among P. acnes strains at the genome level underscore the importance of identifying the human microbiome variations at the strain level in understanding its association with diseases and provide insight into novel and personalized therapeutic approaches for P. acnes-related diseases.Keywords
This publication has 43 references indexed in Scilit:
- Structure, function and diversity of the healthy human microbiomeNature, 2012
- A framework for human microbiome researchNature, 2012
- A novel multilocus sequence typing scheme for the opportunistic pathogen Propionibacterium acnes and characterization of type I cell surface-associated antigensMicrobiology, 2011
- MEGA5: Molecular Evolutionary Genetics Analysis Using Maximum Likelihood, Evolutionary Distance, and Maximum Parsimony MethodsMolecular Biology and Evolution, 2011
- The skin microbiomeNature Reviews Microbiology, 2011
- The Origin of the Haitian Cholera Outbreak StrainNew England Journal of Medicine, 2011
- CRISPR/Cas, the Immune System of Bacteria and ArchaeaScience, 2010
- Waves of resistance: Staphylococcus aureus in the antibiotic eraNature Reviews Microbiology, 2009
- Velvet: Algorithms for de novo short read assembly using de Bruijn graphsGenome Research, 2008
- CRISPRFinder: a web tool to identify clustered regularly interspaced short palindromic repeatsNucleic Acids Research, 2007