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A rooted phylogeny resolves early bacterial evolution

Gareth A. Coleman, Adrián Davín, Tara Mahendrarajah, Lénárd L. Szánthó, Anja Spang, Philip Hugenholtz, Gergely J. Szöllősi, Tom A. Williams

2021Science284 citationsDOIOpen Access PDF

Abstract

A rooted bacterial tree is necessary to understand early evolution, but the position of the root is contested. Here, we model the evolution of 11,272 gene families to identify the root, extent of horizontal gene transfer (HGT), and the nature of the last bacterial common ancestor (LBCA). Our analyses root the tree between the major clades Terrabacteria and Gracilicutes and suggest that LBCA was a free-living flagellated, rod-shaped double-membraned organism. Contrary to recent proposals, our analyses reject a basal placement of the Candidate Phyla Radiation, which instead branches sister to Chloroflexota within Terrabacteria. While most gene families (92%) have evidence of HGT, overall, two-thirds of gene transmissions have been vertical, suggesting that a rooted tree provides a meaningful frame of reference for interpreting bacterial evolution.

Topics & Concepts

Horizontal gene transferTree of life (biology)BiologyCladePhylogeneticsPhylumMost recent common ancestorEvolutionary biologyPhylogenetic treeSister groupTree (set theory)GeneAncestorRoot (linguistics)GeneticsGeographyMathematical analysisMathematicsPhilosophyArchaeologyLinguisticsGenomics and Phylogenetic StudiesMicrobial Community Ecology and PhysiologyProtist diversity and phylogeny
A rooted phylogeny resolves early bacterial evolution | Litcius