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Intense Transpositional Activity of Insertion Sequences in an Ancient Obligate Endosymbiont

The streamlined genomes of ancient obligate endosymbionts generally lack transposable elements, such as insertion sequences (IS). Yet, the genome of Wolbachia, one of the most abundant bacterial endosymbionts on Earth, is littered with IS. Such a paradox raises the question as to why there are so ma...

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Autores principales: Cordaux, Richard, Pichon, Samuel, Ling, Alison, Pérez, Philippe, Delaunay, Carine, Vavre, Fabrice, Bouchon, Didier, Grève, Pierre
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2515875/
https://www.ncbi.nlm.nih.gov/pubmed/18562339
http://dx.doi.org/10.1093/molbev/msn134
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author Cordaux, Richard
Pichon, Samuel
Ling, Alison
Pérez, Philippe
Delaunay, Carine
Vavre, Fabrice
Bouchon, Didier
Grève, Pierre
author_facet Cordaux, Richard
Pichon, Samuel
Ling, Alison
Pérez, Philippe
Delaunay, Carine
Vavre, Fabrice
Bouchon, Didier
Grève, Pierre
author_sort Cordaux, Richard
collection PubMed
description The streamlined genomes of ancient obligate endosymbionts generally lack transposable elements, such as insertion sequences (IS). Yet, the genome of Wolbachia, one of the most abundant bacterial endosymbionts on Earth, is littered with IS. Such a paradox raises the question as to why there are so many ISs in the genome of this ancient endosymbiont. To address this question, we investigated IS transpositional activity in the unculturable Wolbachia by tracking the evolutionary dynamics and history of ISWpi1 elements. We show that 1) ISWpi1 is widespread in Wolbachia, being present in at least 55% of the 40 sampled strains, 2) ISWpi1 copies exhibit virtually identical nucleotide sequences both within and among Wolbachia genomes and possess an intact transposase gene, 3) individual ISWpi1 copies are differentially inserted among Wolbachia genomes, and 4) ISWpi1 occurs at variable copy numbers among Wolbachia genomes. Collectively, our results provide compelling evidence for intense ISWpi1 transpositional activity and frequent ISWpi1 horizontal transmission among strains during recent Wolbachia evolution. Thus, the genomes of ancient obligate endosymbionts can carry high loads of functional and transpositionally active transposable elements. Our results also indicate that Wolbachia genomes have experienced multiple and temporally distinct ISWpi1 invasions during their evolutionary history. Such recurrent exposition to new IS invasions may explain, at least partly, the unusually high density of transposable elements found in the genomes of Wolbachia endosymbionts.
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spelling pubmed-25158752009-02-25 Intense Transpositional Activity of Insertion Sequences in an Ancient Obligate Endosymbiont Cordaux, Richard Pichon, Samuel Ling, Alison Pérez, Philippe Delaunay, Carine Vavre, Fabrice Bouchon, Didier Grève, Pierre Mol Biol Evol Research Articles The streamlined genomes of ancient obligate endosymbionts generally lack transposable elements, such as insertion sequences (IS). Yet, the genome of Wolbachia, one of the most abundant bacterial endosymbionts on Earth, is littered with IS. Such a paradox raises the question as to why there are so many ISs in the genome of this ancient endosymbiont. To address this question, we investigated IS transpositional activity in the unculturable Wolbachia by tracking the evolutionary dynamics and history of ISWpi1 elements. We show that 1) ISWpi1 is widespread in Wolbachia, being present in at least 55% of the 40 sampled strains, 2) ISWpi1 copies exhibit virtually identical nucleotide sequences both within and among Wolbachia genomes and possess an intact transposase gene, 3) individual ISWpi1 copies are differentially inserted among Wolbachia genomes, and 4) ISWpi1 occurs at variable copy numbers among Wolbachia genomes. Collectively, our results provide compelling evidence for intense ISWpi1 transpositional activity and frequent ISWpi1 horizontal transmission among strains during recent Wolbachia evolution. Thus, the genomes of ancient obligate endosymbionts can carry high loads of functional and transpositionally active transposable elements. Our results also indicate that Wolbachia genomes have experienced multiple and temporally distinct ISWpi1 invasions during their evolutionary history. Such recurrent exposition to new IS invasions may explain, at least partly, the unusually high density of transposable elements found in the genomes of Wolbachia endosymbionts. Oxford University Press 2008-09 2008-06-17 /pmc/articles/PMC2515875/ /pubmed/18562339 http://dx.doi.org/10.1093/molbev/msn134 Text en © 2008 The Authors This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.0/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Cordaux, Richard
Pichon, Samuel
Ling, Alison
Pérez, Philippe
Delaunay, Carine
Vavre, Fabrice
Bouchon, Didier
Grève, Pierre
Intense Transpositional Activity of Insertion Sequences in an Ancient Obligate Endosymbiont
title Intense Transpositional Activity of Insertion Sequences in an Ancient Obligate Endosymbiont
title_full Intense Transpositional Activity of Insertion Sequences in an Ancient Obligate Endosymbiont
title_fullStr Intense Transpositional Activity of Insertion Sequences in an Ancient Obligate Endosymbiont
title_full_unstemmed Intense Transpositional Activity of Insertion Sequences in an Ancient Obligate Endosymbiont
title_short Intense Transpositional Activity of Insertion Sequences in an Ancient Obligate Endosymbiont
title_sort intense transpositional activity of insertion sequences in an ancient obligate endosymbiont
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2515875/
https://www.ncbi.nlm.nih.gov/pubmed/18562339
http://dx.doi.org/10.1093/molbev/msn134
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