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Chlamydial contribution to anaerobic metabolism during eukaryotic evolution

  • Courtney W. Stairs
  • , Jennah E. Dharamshi
  • , Daniel Tamarit Chuliá
  • , Laura Eme
  • , Steffen L. Jorgensen
  • , Anja Spang
  • , Thijs J. G. Ettema

Publikation: Bidrag till tidskriftArtikel i vetenskaplig tidskriftPeer review

Sammanfattning

The origin of eukaryotes is a major open question in evolutionary biology. Multiple hypotheses posit that eukaryotes likely evolved from a syntrophic relationship between an archaeon and an alphaproteobacterium based on H-2 exchange. However, there are no strong indications that modern eukaryotic H-2 metabolism originated from archaea or alphaproteobacteria. Here, we present evidence for the origin of H-2 metabolism genes in eukaryotes from an ancestor of the Anoxychlamydiales-a group of anaerobic chlamydiae, newly described here, from marine sediments. Among Chlamydiae, these bacteria uniquely encode genes for H-2 metabolism and other anaerobiosis-associated pathways. Phylogenetic analyses of several components of H-2 metabolism reveal that Anoxychlamydiales homologs are the closest relatives to eukaryotic sequences. We propose that an ancestor of the Anoxychlamydiales contributed these key genes during the evolution of eukaryotes, supporting a mosaic evolutionary origin of eukaryotic metabolism.
OriginalspråkEngelska
Artikelnummereabb7258
Antal sidor8
TidskriftScience Advances
Volym6
Nummer35
DOI
StatusPublicerad - 2020

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