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Unique mobile elements and scalable gene flow at the prokaryote–eukaryote boundary revealed by circularized Asgard archaea genomes

Nature Microbiology, ISSN: 2058-5276, Vol: 7, Issue: 2, Page: 200-212
2022
  • 37
    Citations
  • 0
    Usage
  • 106
    Captures
  • 7
    Mentions
  • 75
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    37
  • Captures
    106
  • Mentions
    7
    • References
      7
      • Wikipedia
        7
  • Social Media
    75
    • Shares, Likes & Comments
      75
      • Facebook
        75

Article Description

Eukaryotic genomes are known to have garnered innovations from both archaeal and bacterial domains but the sequence of events that led to the complex gene repertoire of eukaryotes is largely unresolved. Here, through the enrichment of hydrothermal vent microorganisms, we recovered two circularized genomes of Heimdallarchaeum species that belong to an Asgard archaea clade phylogenetically closest to eukaryotes. These genomes reveal diverse mobile elements, including an integrative viral genome that bidirectionally replicates in a circular form and aloposons, transposons that encode the 5,000 amino acid-sized proteins Otus and Ephialtes. Heimdallaechaeal mobile elements have garnered various genes from bacteria and bacteriophages, likely playing a role in shuffling functions across domains. The number of archaea- and bacteria-related genes follow strikingly different scaling laws in Asgard archaea, exhibiting a genome size-dependent ratio and a functional division resembling the bacteria- and archaea-derived gene repertoire across eukaryotes. Bacterial gene import has thus likely been a continuous process unaltered by eukaryogenesis and scaled up through genome expansion. Our data further highlight the importance of viewing eukaryogenesis in a pan-Asgard context, which led to the proposal of a conceptual framework, that is, the Heimdall nucleation–decentralized innovation–hierarchical import model that accounts for the emergence of eukaryotic complexity.

Bibliographic Details

Wu, Fabai; Speth, Daan R; Philosof, Alon; Crémière, Antoine; Narayanan, Aditi; Barco, Roman A; Connon, Stephanie A; Amend, Jan P; Antoshechkin, Igor A; Orphan, Victoria J

Springer Science and Business Media LLC

Immunology and Microbiology; Biochemistry, Genetics and Molecular Biology; Medicine

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