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Ventolero, M.

Publications and source records attributed to Ventolero, M..

2 recordsLinked to original sources

Are known bacterial strains really present?

Known strains are widely used to study bacterial genomes in shotgun metagenomic samples and to understand drug resistance to bacterial infection. However, bacterial genomes constantly evolve, with mutations accumulated in the genomes over time. It is thus unclear whether the previously identified known bacterial strains are still helpful or even valid for understanding a current shotgun metagenomic sample. To address this question, here we revisited the known strains of the bacterial species S. aureus and S. epidermis identified in 68 atopic dermatitis shotgun metagenomic samples. We find that even the same tools cannot predict the previously reported known strains on the same samples, and most known strains identified by different tools are different. Moreover, the coverage in the pooled and individual samples supports none of the inferred known strain. Our study thus indicates the limitation of the known-strain-based studies, especially those on rapidly evolving bacterial species. Our study also called for de novo bacterial strain identification directly from shotgun metagenomic reads.

bioinformatics↗

A revisit to universal single-copy genes in bacterial genomes

Universal single-copy genes (USCGs) are widely used for species classification and taxonomic profiling. Despite many studies on USCGs, our understanding of USCGs in bacterial genomes might be out of date, especially how different the USCGs are in different studies, how well a set of USCGs can distinguish two bacterial species, whether USCGs can separate different strains of a bacterial species, to name a few. To fill the void, we studied USCGs in the most updated bacterial RefSeq genomes. We showed that different USCG sets are quite different while coming from highly similar functional categories. We also found that although USCGs occur once in almost all bacterial genomes, each USCG does occur multiple times in certain genomes. We demonstrated that USCGs are reliable markers to distinguish different species while they cannot distinguish different strains of most bacterial species. Our study shed new light on the usage and limitations of USCGs, which will facilitate their applications in evolutionary, phylogenomic, and metagenomic studies.

bioinformatics↗