Landscape of mobile genetic elements and their antibiotic resistance cargo in prokaryotic genomes

Abstract Prokaryotic Mobile Genetic Elements (MGEs) such as transposons, integrons, phages and plasmids, play important roles in prokaryotic evolution and in the dispersal of cargo functions like antibiotic resistance. However, each of these MGE types is usually annotated and analysed individually,...

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Veröffentlicht in:Nucleic acids research 2022-04, Vol.50 (6), p.3155-3168
Hauptverfasser: Khedkar, Supriya, Smyshlyaev, Georgy, Letunic, Ivica, Maistrenko, Oleksandr M, Coelho, Luis Pedro, Orakov, Askarbek, Forslund, Sofia K, Hildebrand, Falk, Luetge, Mechthild, Schmidt, Thomas S B, Barabas, Orsolya, Bork, Peer
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Sprache:eng
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Zusammenfassung:Abstract Prokaryotic Mobile Genetic Elements (MGEs) such as transposons, integrons, phages and plasmids, play important roles in prokaryotic evolution and in the dispersal of cargo functions like antibiotic resistance. However, each of these MGE types is usually annotated and analysed individually, hampering a global understanding of phylogenetic and environmental patterns of MGE dispersal. We thus developed a computational framework that captures diverse MGE types, their cargos and MGE-mediated horizontal transfer events, using recombinases as ubiquitous MGE marker genes and pangenome information for MGE boundary estimation. Applied to ∼84k genomes with habitat annotation, we mapped 2.8 million MGE-specific recombinases to six operational MGE types, which together contain on average 13% of all the genes in a genome. Transposable elements (TEs) dominated across all taxa (∼1.7 million occurrences), outnumbering phages and phage-like elements (
ISSN:0305-1048
1362-4962
DOI:10.1093/nar/gkac163