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  5. Giant Marseillevirus highlights the role of amoebae as a melting pot in emergence of chimeric microorganisms

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Article
en
2009

Giant Marseillevirus highlights the role of amoebae as a melting pot in emergence of chimeric microorganisms

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en
2009
Vol 106 (51)
Vol. 106
DOI: 10.1073/pnas.0911354106

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Eugene V Koonin
Eugene V Koonin

National Center for Biotechnology Information

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Mickaël Boyer
Natalya Yutin
Isabelle Pagnier
+11 more

Abstract

Giant viruses such as Mimivirus isolated from amoeba found in aquatic habitats show biological sophistication comparable to that of simple cellular life forms and seem to evolve by similar mechanisms, including extensive gene duplication and horizontal gene transfer (HGT), possibly in part through a viral parasite, the virophage. We report here the isolation of “Marseille” virus, a previously uncharacterized giant virus of amoeba. The virions of Marseillevirus encompass a 368-kb genome, a minimum of 49 proteins, and some messenger RNAs. Phylogenetic analysis of core genes indicates that Marseillevirus is the prototype of a family of nucleocytoplasmic large DNA viruses (NCLDV) of eukaryotes. The genome repertoire of the virus is composed of typical NCLDV core genes and genes apparently obtained from eukaryotic hosts and their parasites or symbionts, both bacterial and viral. We propose that amoebae are “melting pots” of microbial evolution where diverse forms emerge, including giant viruses with complex gene repertoires of various origins.

How to cite this publication

Mickaël Boyer, Natalya Yutin, Isabelle Pagnier, Lina Barrassi, Ghislain Fournous, Léon Espinosa, Catherine Robert, Saı̈d Azza, Siyang Sun, Michael G. Rossmann, Marie Suzan‐Monti, Bernard La Scola, Eugene V Koonin, Didier Raoult (2009). Giant Marseillevirus highlights the role of amoebae as a melting pot in emergence of chimeric microorganisms. , 106(51), DOI: https://doi.org/10.1073/pnas.0911354106.

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Publication Details

Type

Article

Year

2009

Authors

14

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1073/pnas.0911354106

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