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Phylogenetic reconciliation: Making the most of genomes to understand microbial ecology and evolution

  • Tom Williams*
  • , Adrián A. Davín
  • , Lenard Szantho
  • , Alexandros Stamatakis
  • , Noah A. Wahl
  • , Ben J. Woodcroft
  • , Rochelle M. Soo
  • , Laura Eme
  • , Paul Sheridan
  • , Cécile Gubry-Rangin
  • , Anja Spang
  • , Philip Hugenholtz
  • , Gergely J. Szöllősi*
  • *Corresponding author for this work

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

24 Citations (Scopus)

Abstract

In recent years, phylogenetic reconciliation has emerged as a promising approach for studying microbial ecology and evolution. The core idea is to model how gene trees evolve along a species tree, and to explain differences between them via evolutionary events including gene duplications, transfers, and losses. Here, we describe how phylogenetic reconciliation provides a natural framework for studying genome evolution, and highlight recent applications including ancestral gene content inference, the rooting of species trees, and the insights into metabolic evolution and ecological transitions they yield. Reconciliation analyses have elucidated the evolution of diverse microbial lineages, from Chlamydiae to Asgard archaea, shedding light on ecological adaptation, host–microbe interactions, and symbiotic relationships. However, there are many opportunities for broader application of the approach in microbiology. Continuing improvements to make reconciliation models more realistic and scalable, and integration of ecological metadata such as habitat, pH, temperature and oxygen use, offer enormous potential for understanding the rich tapestry of microbial life.
Original languageEnglish
Article numberwrae129
Number of pages14
JournalISME Journal
Volume18
Issue number1
DOIs
Publication statusPublished - 13 Jul 2024

Bibliographical note

Publisher Copyright:
© The Author(s) 2024.

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