Phylogenomics of 10,575 genomes reveals evolutionary proximity between domains Bacteria and Archaea

Author:

Zhu QiyunORCID,Mai Uyen,Pfeiffer Wayne,Janssen StefanORCID,Asnicar FrancescoORCID,Sanders Jon G.ORCID,Belda-Ferre PedroORCID,Al-Ghalith Gabriel A.ORCID,Kopylova Evguenia,McDonald Daniel,Kosciolek TomaszORCID,Yin John B.,Huang Shi,Salam Nimaichand,Jiao Jian-Yu,Wu Zijun,Xu Zhenjiang Z.,Cantrell Kalen,Yang YimengORCID,Sayyari Erfan,Rabiee Maryam,Morton James T.,Podell SheilaORCID,Knights Dan,Li Wen-JunORCID,Huttenhower CurtisORCID,Segata NicolaORCID,Smarr Larry,Mirarab SiavashORCID,Knight RobORCID

Abstract

AbstractRapid growth of genome data provides opportunities for updating microbial evolutionary relationships, but this is challenged by the discordant evolution of individual genes. Here we build a reference phylogeny of 10,575 evenly-sampled bacterial and archaeal genomes, based on a comprehensive set of 381 markers, using multiple strategies. Our trees indicate remarkably closer evolutionary proximity between Archaea and Bacteria than previous estimates that were limited to fewer “core” genes, such as the ribosomal proteins. The robustness of the results was tested with respect to several variables, including taxon and site sampling, amino acid substitution heterogeneity and saturation, non-vertical evolution, and the impact of exclusion of candidate phyla radiation (CPR) taxa. Our results provide an updated view of domain-level relationships.

Funder

National Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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