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A rooted phylogeny resolves early bacterial evolution

  • Gareth Coleman
  • , Adrián A. Davín
  • , Tara Mahendrarajah
  • , Lenard Szantho
  • , Anja Spang
  • , Philip Hugenholtz*
  • , Gergely J. Szöllősi*
  • , Tom Williams*
  • *Corresponding author for this work

Research output: Contribution to journalArticle (Academic Journal)peer-review

196 Citations (Scopus)
945 Downloads (Pure)

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.
Original languageEnglish
Article numbereabe0511
JournalScience
Volume372
Issue number6542
DOIs
Publication statusPublished - 7 May 2021

Bibliographical note

Publisher Copyright:
© 2021 American Association for the Advancement of Science. All rights reserved.

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