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Metamonad

  • New Zealand's Genetic Diversity

    New Zealand's Genetic Diversity

  • The Oxymonad Genome Displays Canonical Eukaryotic Complexity in the Absence of a Mitochondrion Anna Karnkowska,*,1,2 Sebastian C

    The Oxymonad Genome Displays Canonical Eukaryotic Complexity in the Absence of a Mitochondrion Anna Karnkowska,*,1,2 Sebastian C

  • Multigene Eukaryote Phylogeny Reveals the Likely Protozoan Ancestors of Opis- Thokonts (Animals, Fungi, Choanozoans) and Amoebozoa

    Multigene Eukaryote Phylogeny Reveals the Likely Protozoan Ancestors of Opis- Thokonts (Animals, Fungi, Choanozoans) and Amoebozoa

  • Protist Phylogeny and the High-Level Classification of Protozoa

    Protist Phylogeny and the High-Level Classification of Protozoa

  • University of Copenhagen

    University of Copenhagen

  • Barthelonids Represent a Deep-Branching Metamonad Clade with Mitochondrion-Related Organelles Generating No

    Barthelonids Represent a Deep-Branching Metamonad Clade with Mitochondrion-Related Organelles Generating No

  • Trichonympha Cf

    Trichonympha Cf

  • A Free-Living Protist That Lacks Canonical Eukaryotic DNA Replication and Segregation Systems

    A Free-Living Protist That Lacks Canonical Eukaryotic DNA Replication and Segregation Systems

  • New Finding of Giardia Intestinalis (Eukaryote, Metamonad) in Old World Archaeological Site Using Immunofluorescence and Enzyme-Linked Immunosorbent Assays

    New Finding of Giardia Intestinalis (Eukaryote, Metamonad) in Old World Archaeological Site Using Immunofluorescence and Enzyme-Linked Immunosorbent Assays

  • Anaerobic Digestion Microbiology Biofilm Basics

    Anaerobic Digestion Microbiology Biofilm Basics

  • Phylogenomic Analyses Support the Monophyly of Excavata and Resolve Relationships Among Eukaryotic ‘‘Supergroups’’

    Phylogenomic Analyses Support the Monophyly of Excavata and Resolve Relationships Among Eukaryotic ‘‘Supergroups’’

  • Insights Into Microbial Evolution and Ecology from Genetic Analysis of Diverse Archaeological Materials

    Insights Into Microbial Evolution and Ecology from Genetic Analysis of Diverse Archaeological Materials

  • 1 Knowledge and Knowers of the Past: a Study in the Philosophy Of

    1 Knowledge and Knowers of the Past: a Study in the Philosophy Of

  • Ophirina Amphinema N. Gen., N. Sp., a New Deeply Branching Discobid

    Ophirina Amphinema N. Gen., N. Sp., a New Deeply Branching Discobid

  • Evolutionary Lessons from Species with Unique Kinetochores

    Evolutionary Lessons from Species with Unique Kinetochores

  • Placing Barthelonids in Evolutionary Context 23 September 2020

    Placing Barthelonids in Evolutionary Context 23 September 2020

  • New Contribution of Paleoparasitology in the Middle East and First Data on the Iranian Plateau Adjacent Area Masoud Nezamabadi

    New Contribution of Paleoparasitology in the Middle East and First Data on the Iranian Plateau Adjacent Area Masoud Nezamabadi

  • Parasite Findings in Archeological Remains: a Paleogeographic View 23

    Parasite Findings in Archeological Remains: a Paleogeographic View 23

Top View
  • A Single Tim Translocase in the Mitosomes of Giardia Intestinalis Illustrates Convergence of Protein Import Machines in Anaerobic Eukaryotes
  • Trichomonas in Wildlife
  • THÈSE DE DOCTORAT/Phd IBRAHIM HAMAD
  • Phylogeny of Parasitic Parabasalia and Free-Living Relatives Inferred from Conventional Markers Vs
  • Understanding the Evolution of the Membrane Trafficking System in Diverse Eukaryotes Through Comparative Genomics and Transcriptomics by Emily Katherine Herman
  • Studies on Protozoa in Ancient Remains - a Review
  • Repurposing of Synaptonemal Complex Proteins for Kinetochores in Kinetoplastida
  • Kingdom Chromista and Its Eight Phyla: a New Synthesis Emphasising Periplastid Protein Targeting, Cytoskeletal and Periplastid Evolution, and Ancient Divergences
  • Supplementary Information for New Organelles
  • Multiple Origins of Heliozoa from Flagellate Ancestors
  • New Finding of Giardia Intestinalis (Eukaryote, Metamonad) in Old World Archaeological Site Using Immunofluorescence and Enzyme-Linked Immunosorbent Assays
  • View a Copy of This Licence, Visit
  • Mitochondria and Hydrogenosomes Are Two Forms of the Same
  • Evolution of Mitochondrion-Related Organelles in Metamonada
  • Multigene Eukaryote Phylogeny Reveals the Likely Protozoan Ancestors of Opisthokonts (Animals, Fungi, Choanozoans) and Amoebozoa ⇑ Thomas Cavalier-Smith , Ema E
  • Diapositive 1
  • New Contribution of Paleoparasitology in the Middle East and First Data on the Iranian Plateau and Adjacent Areas


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