Percorrer por autor "Manson, Abigail"
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- Novelty, diversity, and genetic dark matter in enterococci of invertebratesPublication . Sgardioli, Bruna; Phillips, Matthew; Miklos, Arjun; Fleiszig-Evans, Kailey; Manson, Abigail; Mello, Suelen; Shea, Terrance; Urhan, Aysun; Whipple, Ryan; Salamzade, Rauf; Sanders, Jasper; Borges, P.A.V.; Dapkevicius, Maria de Lurdes; Earl, Ashlee; Gilmore, MichaelABSTRACT: Enterococci appear to have originated in the guts of early terrestrializing arthropods and invertebrates over 425 million years ago—hosts that are now highly diverse and widespread in nature today. Yet most knowledge of the genus comes from human infection-associated lineages with genomes swollen by the recent accretion of foreign DNA conveyed by mobile elements. Because invertebrates dominate terrestrial animal diversity and biomass, they would be predicted to constitute a major but little-explored reservoir of enterococcal diversity. We therefore systematically examined Enterococcus association and species diversification in invertebrate hosts of the comparatively natural, isolated, but well-characterized environment of the Azorean island of Terceira. Over 100 invertebrate specimens were examined for associated enterococci, which were taxonomically classified by whole-genome sequencing. Supporting the existence of a large pool of uncharacterized enterococci and Enterococcus-adapted genes, 40% (eight of 20) of the Enterococcus species identified were either undescribed, including four candidate new species described here, or very recently discovered. In contrast, control isolates from vertebrates were exclusively of known species typical of sampling elsewhere, discounting geographic isolation as a main driver of the novelty observed. Further, because of the abundance of E. casseliflavus and E. flavescens in this collection, we obtained the resolution necessary to quantify the divergence and decipher the drivers of speciation in the controversial division between these naturally vancomycin-resistant species. These findings provide robust support for the existence of a large pool of new species and unexplored adaptive traits in invertebrate-associated enterococci—diverse environmental survival traits optimized for expression in an enterococcal background, and well positioned for transmission into human-associated enterococcal strains.
