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Hemiselmis
University of Oklahoma
The Plankton Lifeform Extraction Tool: a Digital Tool to Increase The
Biovolumes and Size-Classes of Phytoplankton in the Baltic Sea
Phytoref: a Reference Database of the Plastidial 16S Rrna Gene of Photosynthetic Eukaryotes with Curated Taxonomy
HIGH-THROUGHPUT SEQUENCING REVEALS UNEXPECTED PHYTOPLANKTON PREY of an ESTUARINE COPEPOD a Thesis Submitted to the Faculty of Sa
Nanoplankton Protists from the Western Mediterranean Sea. II. Cryptomonads (Cryptophyceae = Cryptomonadea)*
Nuclear Genome Sequence of the Plastid-Lacking
Extensive Molecular Tinkering in the Evolution of the Membrane Attachment Mode of the Rheb Gtpase
Table of Contents
A Reference Database of the Plastidial 16S Rrna Gene of Photosynthetic
Nusuttodinium Aeruginosum/Acidotum As a Case Study
Protista (PDF)
Direct Evidence for Symbiont Sequestration in the Marine Red Tide Ciliate Mesodinium Rubrum
Marine Biological Laboratory) Data Are All from EST Analyses
Baffinellaceae Fam. Nov., Cryptophyceae) from Baffin Bay: Morphology, Pigment Profile, Phylogeny, and Growth Rate Response to Three Abiotic Factors1
Nuclear Genome Sequence of the Plastid
Extensive Horizontal Gene Transfer, Duplication, and Loss of Chlorophyll Synthesis Genes in the Algae Heather M Hunsperger, Tejinder Randhawa and Rose Ann Cattolico*
Protozoologica Special Issue: Marine Heterotrophic Protists Guest Editors: John R
Top View
Light Capture and Pigment Diversity in Marine and Freshwater Cryptophytes1
CRYPTOMONAD EVOLUTION: NUCLEAR 18S Rdna PHYLOGENY VERSUS CELL MORPHOLOGY and PIGMENTATION1
Phenotypic Response of Marine Cryptophytes to Varying Spectral Irradiance Kristin M
A Free-Living Protist That Lacks Canonical Eukaryotic DNA Replication and Segregation Systems
Complete Sequence and Analysis of the Mitochondrial Genome of Hemiselmis Andersenii CCMP644 (Cryptophyceae) Eunsoo Kim
Single-Residue Insertion Switches the Quaternary Structure and Exciton States of Cryptophyte Light-Harvesting Proteins
Complete Nucleomorph Genome Sequence of the Nonphotosynthetic Alga Cryptomonas Paramecium Reveals a Core Nucleomorph Gene Set
Primary Endosymbiosis and the Evolution of Light and Oxygen Sensing in Photosynthetic Eukaryotes
A Phylogenetic Analysis Using Heat Shock Protein 90
SYMBIOSIS and ITS IMPACT on EUKARYOTE EVOLUTION by Shannon J. Sibbald Submitted in Partial Fulfilment of the Requirements for Th
Observations of Several Cryptomonad Flagellates from China Sea by Scanning Electron Microscopy
One Alga to Rule Them All: Unrelated Mixotrophic Testate Amoebae (Amoebozoa, Rhizaria and Stramenopiles) Share the Same Symbiont (Trebouxiophyceae)
Diversification of Light Capture Ability Was Accompanied by the Evolution
Christopher Evans Lane
Specificity of Chroomonas (Cryptophyceae) As a Source of Kleptochloroplast for Nusuttodinium Aeruginosum Title (Dinophyceae)
Comparative Mitochondrial Genomics of Cryptophyte Algae: Gene Shuffling and Dynamic Mobile Genetic Elements
Fatty Acid Composition Profiles of 235 Strains of Three Microalgal Divisions Within the NIES Microbial Culture Collection
New Marine Members of the Genus Hemiselmis (Cryptomonadales, Cryptophyceae)1
Distribution and Population Dynamics of Cryptomonads in a Chinese Lake with Three Basins Varying in Their Trophic State
Hatena Arenicola Gen. Et Sp. Nov., a Katablepharid Undergoing Probable Plastid Acquisition
Dinoflagellates with Relic Endosymbiont Nuclei As Models for Elucidating Organellogenesis
Phylogenomic Analysis of Transcriptomic Sequences of Mitochondria and Chloroplasts of Essential Brown Algae (Phaeophyceae) in China
Pitfalls of Establishing DNA Barcoding Systems in Protists: the Cryptophyceae As a Test Case
Program, University of Maryland, College Park, MD, USA
Site Profile
Unraveling Algae.Pdf
A New Species of Cryptomonas (Cryptophyceae) from the Western Urals (Russia)
Complete Nucleomorph Genome Sequence of the Nonphotosynthetic Alga Cryptomonas Paramecium Reveals a Core Nucleomorph Gene Set
2008 – 2020) Note: Faculty Members (In Bold), Former Associates (Marked with *), Trainees (Underlined