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Chromera velia

  • University of Oklahoma

    University of Oklahoma

  • Chromera Velia Is Endosymbiotic in Larvae of the Reef Corals Acropora

    Chromera Velia Is Endosymbiotic in Larvae of the Reef Corals Acropora

  • Using Diatom and Apicomplexan Models to Study the Heme Pathway of Chromera Velia

    Using Diatom and Apicomplexan Models to Study the Heme Pathway of Chromera Velia

  • Single Cell Genomics of Uncultured Marine Alveolates Shows Paraphyly of Basal Dinoflagellates

    Single Cell Genomics of Uncultured Marine Alveolates Shows Paraphyly of Basal Dinoflagellates

  • The Organellar Genomes of Chromera and Vitrella, the Phototrophic

    The Organellar Genomes of Chromera and Vitrella, the Phototrophic

  • Light Harvesting Complexes of Chromera Velia, Photosynthetic Relative of Apicomplexan Parasites

    Light Harvesting Complexes of Chromera Velia, Photosynthetic Relative of Apicomplexan Parasites

  • Raman Micro-Spectroscopy of Chromera Velia, a Photosynthetic Alveolate Closely Related to Apicomplexan Parasites

    Raman Micro-Spectroscopy of Chromera Velia, a Photosynthetic Alveolate Closely Related to Apicomplexan Parasites

  • A Widespread Coral-Infecting Apicomplexan with Chlorophyll Biosynthesis Genes ­Waldan K

    A Widespread Coral-Infecting Apicomplexan with Chlorophyll Biosynthesis Genes ­Waldan K

  • Dinoflagellate Genome Evolution

    Dinoflagellate Genome Evolution

  • Dinoflagellate Plastids Waller and Koreny Revised

    Dinoflagellate Plastids Waller and Koreny Revised

  • Fatty Acid Biosynthesis in Chromerids

    Fatty Acid Biosynthesis in Chromerids

  • Life Cycle and Morphological Characterization of Colpodella

    Life Cycle and Morphological Characterization of Colpodella

  • 1 Transcriptional Profiling of Chromera Velia Under Diverse

    1 Transcriptional Profiling of Chromera Velia Under Diverse

  • Chromera Velia, Endosymbioses and the Rhodoplex Hypothesis—Plastid Evolution in Cryptophytes, Alveolates, Stramenopiles, and Haptophytes (CASH Lineages)

  • Toxoplasma Tgatg9 Is Critical for Autophagy and Long-Term

  • Apicomplexan-Like Parasites Are Polyphyletic and Widely but Selectively Dependent on Cryptic Plastid Organelles

  • Molecular Genotyping and Whole Genome Sequencing of Canadian Cyclospora Cayetanensis Specimens

    Molecular Genotyping and Whole Genome Sequencing of Canadian Cyclospora Cayetanensis Specimens

  • Extensive Gain and Loss of Photosystem I Subunits in Chromerid

    Extensive Gain and Loss of Photosystem I Subunits in Chromerid

Top View
  • Regulation of Expression and Evolution of Genes in Plastids of Rhodophytic Branch
  • Jeremy Szymczak Poster for ICHA 2018 21-26 OCTOBER NANTES
  • Major Transitions in Dinoflagellate Evolution Unveiled By
  • Final Dissertation for Graduate School
  • A Molecular Timescale for the Origin of Red Algal-Derived Plastids
  • Genomic Perspectives on the Birth and Spread of Plastids
  • Morphology and Ultrastructure of Multiple Life Cycle Stages of the Photosynthetic Relative of Apicomplexa, Chromera Velia
  • Supplementary Materials
  • S41467-021-22044-Z.Pdf
  • A Common Red Algal Origin of the Apicomplexan, Dinoflagellate, And
  • Nephromyces Represents a Diverse and Novel Lineage of the Apicomplexa That Has Retained Apicoplasts
  • Photosynthesis in Chromera Velia Represents a Simple System with High Efficiency
  • Genome Watch: How Apicomplexans Became Free-Riders
  • Transcriptomic Analysis Reveals the Roles of Detoxification Systems In
  • Factors Mediating Plastid Dependency and the Origins of Parasitism in Apicomplexans and Their Close Relatives
  • Comparative Analysis of Apicoplast Genomes of Babesia Infective To
  • Chromera Velia: Coral Symbiont Or Parasite?
  • Syndiniales), Parasites of Marine Dinoflagellates


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