Article Synopsis

  • Scientists are exploring the unclear origins of eukaryotes, potentially linked to a group of archaea called 'Asgard' archaea.
  • A newly isolated archaeon from deep marine sediment, named 'Candidatus Prometheoarchaeum syntrophicum,' is anaerobic and grows very slowly while degrading amino acids, but lacks visible organelles.
  • The research leads to a proposed model for the evolution of eukaryotes called the entangle-engulf-endogenize (E) model, based on cultivation and genomic data.

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Article Abstract

The origin of eukaryotes remains unclear. Current data suggest that eukaryotes may have emerged from an archaeal lineage known as 'Asgard' archaea. Despite the eukaryote-like genomic features that are found in these archaea, the evolutionary transition from archaea to eukaryotes remains unclear, owing to the lack of cultured representatives and corresponding physiological insights. Here we report the decade-long isolation of an Asgard archaeon related to Lokiarchaeota from deep marine sediment. The archaeon-'Candidatus Prometheoarchaeum syntrophicum' strain MK-D1-is an anaerobic, extremely slow-growing, small coccus (around 550 nm in diameter) that degrades amino acids through syntrophy. Although eukaryote-like intracellular complexes have been proposed for Asgard archaea, the isolate has no visible organelle-like structure. Instead, Ca. P. syntrophicum is morphologically complex and has unique protrusions that are long and often branching. On the basis of the available data obtained from cultivation and genomics, and reasoned interpretations of the existing literature, we propose a hypothetical model for eukaryogenesis, termed the entangle-engulf-endogenize (also known as E) model.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7015854PMC
http://dx.doi.org/10.1038/s41586-019-1916-6DOI Listing

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