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Trieu Le

@trieule.bsky.social
20 followers 45 following 3 posts

PhD candidate at Bath Bacterial genomics

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Trieu Le @trieule.bsky.social · 14/09/2026
I was delighted to present my research on plasmid evolution in E.coli at the International Symposium on Plasmid Biology in Berlin It was a great opportunity to share our work and discuss ideas with researchers working across bacterial genomics, plasmid biology, and antimicrobial resistance.
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Reposted by Trieu Le
Josie Bryant @josiebryant.bsky.social · 10/09/2026
New work from our lab by @trieule.bsky.social during his MPhil: we discovered novel M. abs plasmids and found that plasmid carriage remained remarkably stable over years of chronic infection www.microbiologyresearch.org/content/jour... @microbiologysociety.org @sangerinstitute.bsky.social
microbiologyresearch.org
Phylogenetic distribution and longitudinal persistence of plasmids in Mycobacterium abscessus
Mycobacterium abscessus, a non-tuberculous mycobacterium, is a cause of severe respiratory infections, notably in individuals with underlying lung conditions. Its high levels of intrinsic and acquired antimicrobial resistance make it particularly difficult to treat and horizontally acquired genetic elements may facilitate the spread of resistance. A small number of plasmids have been identified in this species, but their distribution, transmission dynamics across subspecies and clonal lineages remain poorly characterized. We analysed short-read genomic data from 3,060 M. abscessus isolates, including longitudinal samples, to characterize plasmid diversity and dynamics. Using a graph-based pan-genome approach, we identified 28 plasmids, including 15 previously unreported plasmids, mapped their distribution onto the species phylogeny and assessed their functional potential. Overall, 23.1% of isolates carried at least one plasmid, with higher prevalence in dominant circulating clones (DCCs) compared with non-DCCs. Plasmid carriage varied across subspecies and clonal backgrounds, and plasmids encoded numerous genes which may be linked to bacterial adaptation. Several plasmids persisted across multiple time points within individual patients, suggesting they can be highly stable over the course of a chronic infection.
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