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Gene Acquisitions from Bacteria at the Origins of Major Archaeal Clades Are Vastly Overestimated

Molecular Biology and Evolution, 2016, Vol. 33(2), pp.305-310 [Peer Reviewed Journal]

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Phylogenetic trees and functional domain composition of LGT candidates in Blastocystis sp. ST1.

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Phylogénomique des structures multiprotéiques eucaryotes impliquées dans le cycle cellulaire et contribution à la phylogénie des eucaryotes
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Phylogénomique des structures multiprotéiques eucaryotes impliquées dans le cycle cellulaire et contribution à la phylogénie des eucaryotes

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The phylogenomic analysis of the anaphase promoting complex and its targets points to complex and modern-like control of the cell cycle in the last common ancestor of eukaryotes

BMC Evolutionary Biology, 2011, Vol.11, p.265 [Peer Reviewed Journal]

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Non-universal ancient eukaryote genes

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Transcriptome assemblies of Hemimastigophora

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Symbiosis in the microbial world: from ecology to genome evolution

Biology Open, 01 February 2018, Vol.7(2) [Peer Reviewed Journal]

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Origins of major archaeal clades do not correspond to gene acquisitions from bacteria

BioRxiv, May 27, 2015

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Asgard archaea are the closest prokaryotic relatives of eukaryotes

PLoS Genetics, 2018, Vol.14(3) [Peer Reviewed Journal]

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Microbial eukaryotes have adapted to hypoxia by horizontal acquisitions of a gene involved in rhodoquinone biosynthesis

eLife, 2018 [Peer Reviewed Journal]

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