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© Ce graphique présente, pour chaque date d'observation depuis 2018, le taux d'accès ouvert des publications scientifiques de l'Institut Pasteur, avec un DOI Crossref, parues durant l'année précédente.
Scientific Fields
Diseases
Organisms
Applications
Technique

Published in Nature Microbiology - 03 Jan 2024

Céline Loot, Gael A Millot, Egill Richard, Eloi Littner, Claire Vit, Frédéric Lemoine, Bertrand Néron, Jean Cury, Baptiste Darracq, Théophile Niault, Delphine Lapaillerie, Vincent Parissi, Eduardo P C Rocha, Didier Mazel

Link to Pubmed [PMID] – 38172619

Link to HAL – pasteur-04384854

Link to DOI – 10.1038/s41564-023-01548-y

Nature Microbiology, 2024, 9 (1), pp.228-240. ⟨10.1038/s41564-023-01548-y⟩

Integrons are genetic elements involved in bacterial adaptation which capture, shuffle and express genes encoding adaptive functions embedded in cassettes. These events are governed by the integron integrase through site-specific recombination between attC and attI integron sites. Using computational and molecular genetic approaches, here we demonstrate that the integrase also catalyses cassette integration into bacterial genomes outside of its known att sites. Once integrated, these cassettes can be expressed if located near bacterial promoters and can be excised at the integration point or outside, inducing chromosomal modifications in the latter case. Analysis of more than 5 × 10 5 independent integration events revealed a very large genomic integration landscape. We identified consensus recombination sequences, named attG sites, which differ greatly in sequence and structure from classical att sites. These results unveil an alternative route for dissemination of adaptive functions in bacteria and expand the role of integrons in bacterial evolution.