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Cryptophyceae

  • Biology and Systematics of Heterokont and Haptophyte Algae1

    Biology and Systematics of Heterokont and Haptophyte Algae1

  • Chloroplast Structure of the Cryptophyceae

    Chloroplast Structure of the Cryptophyceae

  • Algal Toxic Compounds and Their Aeroterrestrial, Airborne and Other Extremophilic Producers with Attention to Soil and Plant Contamination: a Review

    Algal Toxic Compounds and Their Aeroterrestrial, Airborne and Other Extremophilic Producers with Attention to Soil and Plant Contamination: a Review

  • Cryptophyceae)

    Cryptophyceae)

  • Mitosis in the Cryptophyceae

    Mitosis in the Cryptophyceae "

  • Nanoplankton Protists from the Western Mediterranean Sea. II. Cryptomonads (Cryptophyceae = Cryptomonadea)*

    Nanoplankton Protists from the Western Mediterranean Sea. II. Cryptomonads (Cryptophyceae = Cryptomonadea)*

  • Sequestration, Performance, and Functional Control of Cryptophyte Plastids in the Ciliate Myrionecta Rubra (Ciliophora)1

    Sequestration, Performance, and Functional Control of Cryptophyte Plastids in the Ciliate Myrionecta Rubra (Ciliophora)1

  • Nuclear Genome Sequence of the Plastid-Lacking

    Nuclear Genome Sequence of the Plastid-Lacking

  • From Algae to Flowering Plants

    From Algae to Flowering Plants

  • EBS 566/555 Lecture 14: Phytoplankton Functional

    EBS 566/555 Lecture 14: Phytoplankton Functional

  • J. Phycol. 56-3 730-746.Pdf

    J. Phycol. 56-3 730-746.Pdf

  • Protista (PDF)

    Protista (PDF)

  • Cryptophyceae) Populations in the Eutrophic Lake Hira, Japan, Using Single-Cell PCR

    Cryptophyceae) Populations in the Eutrophic Lake Hira, Japan, Using Single-Cell PCR

  • A New Species of Cryptomonas (Cryptophyceae) from the Western Urals (Russia)

    A New Species of Cryptomonas (Cryptophyceae) from the Western Urals (Russia)

  • Growth and Grazing Responses of Two Chloroplast-Retaining Dinoflagellates: Effect of Irradiance and Prey Species

    Growth and Grazing Responses of Two Chloroplast-Retaining Dinoflagellates: Effect of Irradiance and Prey Species

  • Microbial Metagenomes and Metatranscriptomes During a Coastal Phytoplankton Bloom

    Microbial Metagenomes and Metatranscriptomes During a Coastal Phytoplankton Bloom

  • Fatty Acids of Marine Mollusks: Impact of Diet, Bacterial Symbiosis and Biosynthetic Potential

    Fatty Acids of Marine Mollusks: Impact of Diet, Bacterial Symbiosis and Biosynthetic Potential

  • The Characteristic Pattern of Multiple Colored Layers in Coastal Stratified

    The Characteristic Pattern of Multiple Colored Layers in Coastal Stratified

Top View
  • CRYPTOMONAD EVOLUTION: NUCLEAR 18S Rdna PHYLOGENY VERSUS CELL MORPHOLOGY and PIGMENTATION1
  • See the Article As a PDF
  • Kleptoplasty in an Antarctic Dinoflagellate
  • Revisions to the Classification, Nomenclature, and Diversity of Eukaryotes
  • Chapter - 3 Plant Kingdom
  • Morphostasis in Alveolate Evolution
  • Siba-Ese.Unisalento.It
  • Taxonomic Studies of Cryptomonas Lundii Clade (Cryptophyta: Cryptophyceae) with Description of a New Species from Vietnam
  • Gaillard Et Al 2020 TIP-Meso 2
  • Of Pyrenomonas Salina (Cryptophyceae)
  • Aquatic Microbial Ecology 71:165
  • Phytoplankton Distribution in Mar Menor Coastal Lagoon (SE Spain) During 2017
  • New Marine Members of the Genus Hemiselmis (Cryptomonadales, Cryptophyceae)1
  • Light and Temperature Acclimation of Rhodomonas Salina (Cryptophyceae): Photosynthetic Performance
  • Evolution and Diversity of Plant Cell Walls: from Algae to Flowering Plants
  • Seasonal Succession of Ciliate Mesodinium Spp. with Red, Green, Or
  • Distribution and Population Dynamics of Cryptomonads in a Chinese Lake with Three Basins Varying in Their Trophic State
  • Structural Characteristics and Driving Factors of the Planktonic Eukaryotic Community in the Danjiangkou Reservoir, China


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