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Korarchaeota

  • A Korarchaeal Genome Reveals Insights Into the Evolution of the Archaea

    A Korarchaeal Genome Reveals Insights Into the Evolution of the Archaea

  • The Two-Domain Tree of Life Is Linked to a New Root for the Archaea

    The Two-Domain Tree of Life Is Linked to a New Root for the Archaea

  • Archaea and the Origin of Eukaryotes

    Archaea and the Origin of Eukaryotes

  • Life in Extreme Heat

    Life in Extreme Heat

  • Chapter 4: PROKARYOTIC DIVERSITY

    Chapter 4: PROKARYOTIC DIVERSITY

  • Coral-Associated Archaea

    Coral-Associated Archaea

  • Variations in the Two Last Steps of the Purine Biosynthetic Pathway in Prokaryotes

    Variations in the Two Last Steps of the Purine Biosynthetic Pathway in Prokaryotes

  • Systema Naturae. the Classification of Living Organisms

    Systema Naturae. the Classification of Living Organisms

  • Appl. Environ. Microbiol. 62:1171–1177

    Appl. Environ. Microbiol. 62:1171–1177

  • A Higher Level Classification of All Living Organisms

    A Higher Level Classification of All Living Organisms

  • Mean and SD Archaea Bacteria Genome Size (Mb)

    Mean and SD Archaea Bacteria Genome Size (Mb)

  • And Iron-Reducing Thaumarchaeote from a Terrestrial Acidic Hot Spring

    And Iron-Reducing Thaumarchaeote from a Terrestrial Acidic Hot Spring

  • Community Analysis of Plant Biomass-Degrading Microorganisms from Obsidian Pool, Yellowstone National Park

    Community Analysis of Plant Biomass-Degrading Microorganisms from Obsidian Pool, Yellowstone National Park

  • Revealing the Active Microbiome Connected with the Rhizosphere Soil of Maize Plants in Ventersdorp, South Africa

    Revealing the Active Microbiome Connected with the Rhizosphere Soil of Maize Plants in Ventersdorp, South Africa

  • CGB Newsletter 2010-1

    CGB Newsletter 2010-1

  • CLASSIFICATION • Two Kingdom Classification of Organisms Was Proposed by Carolus Linnaeus in the Year 1758

    CLASSIFICATION • Two Kingdom Classification of Organisms Was Proposed by Carolus Linnaeus in the Year 1758

  • Downloaded (July 2018) and Aligned Using Msaprobs V0.9.7 (16)

    Downloaded (July 2018) and Aligned Using Msaprobs V0.9.7 (16)

  • Genera of the World: an Overview and Estimates Based on the March 2020 Release of the Interim Register of Marine and Nonmarine Genera (IRMNG)

    Genera of the World: an Overview and Estimates Based on the March 2020 Release of the Interim Register of Marine and Nonmarine Genera (IRMNG)

Top View
  • The Archaeal Legacy of Eukaryotes: a Phylogenomic Perspective
  • Diversity, Biogeography, and Geochemical Habitat of Korarchaeota in Continental Hot Springs
  • A New Candidate Phylum in the Archaea from High-Temperature Acidic Iron Mats in Yellowstone National Park
  • Metagenomics of Kamchatkan Hot Spring Filaments Reveal Two New
  • Microbiome and Ecology of a Hot Spring-Microbialite System on The
  • Genomic Inference of the Metabolism and Evolution of the Archaeal Phylum Aigarchaeota
  • Prokaryota – Archaea
  • Battistuzzi2009chap06.Pdf
  • Bio192: General Biology Laborat0ry (2 Units)
  • Zopfi, J. on the Hunt for Mesophilic Korarchaeota
  • A Korarchaeal Genome Reveals Insights Into The
  • Classification of Living Things Heather Spalding: University of Hawaii-Manoa GK-12 Program
  • Diversity and Abundance of Korarchaeota in Terrestrial Hot Springs of Iceland and Kamchatka
  • Eubacteria Archaea Ca
  • Expanding Diversity of Asgard Archaea and the Elusive Ancestry of Eukaryotes
  • Insights Into the Phylogeny and Coding Potential of Microbial Dark Matter
  • Phylogenetic Diversity of Archaea in Shallow Hydrothermal Vents of Eolian Islands, Italy
  • Expanding Metabolic Diversity of Two Archaeal Phyla: Nanoarchaeota and Korarchaeota


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