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Genome Biology|March 9, 2004
Archaeal phylogeny based on proteins of the transcription and translation machineries: tackling the Methanopyrus kandleri paradoxCéline Brochier, Patrick Forterre, Simonetta GribaldoGenome Biology|June 18, 2009
A hidden reservoir of integrative elements is the major source of recently acquired foreign genes and ORFans in archaeal and bacterial genomesDiego Cortez, Patrick Forterre, Simonetta GribaldoBMC Evolutionary Biology|June 4, 2005
An emerging phylogenetic core of Archaea: phylogenies of transcription and translation machineries converge following addition of new genome sequencesCéline Brochier, Patrick Forterre, Simonetta GribaldoMedecine Sciences : M/S|October 4, 2005
[Luca: the last universal common ancestor]Patrick Forterre, Simonetta Gribaldo, Céline BrochierBiology Direct|December 25, 2008
A DNA topoisomerase IB in Thaumarchaeota testifies for the presence of this enzyme in the last common ancestor of Archaea and EucaryaCéline Brochier-Armanet, Simonetta Gribaldo, Patrick ForterreCurrent Opinion in Microbiology|June 3, 2011
Phylogeny and evolution of the Archaea: one hundred genomes laterCeline Brochier-Armanet, Patrick Forterre, Simonetta GribaldoJournal of Biology|February 17, 2009
Happy together: genomic insights into the unique Nanoarchaeum/Ignicoccus associationPatrick Forterre, Simonetta Gribaldo, Céline Brochier-ArmanetNature Reviews. Microbiology|February 16, 2008
Mesophilic Crenarchaeota: proposal for a third archaeal phylum, the ThaumarchaeotaCéline Brochier-Armanet, Bastien Boussau, Simonetta Gribaldo, et al.Genome Biology and Evolution|January 9, 2014
Global phylogenomic analysis disentangles the complex evolutionary history of DNA replication in archaeaKasie Raymann, Patrick Forterre, Céline Brochier-Armanet, et al.Pageof 29