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Showing 1 to 7 of 7 for “"Eukaryotic microbes"”.

  1. Eukaryotic Microbes in the Deep Sea: Abundance, Diversity, and the Effect of Pressure

    … instead increasing in its proportion of the eukaryotic population in deeper waters. Lastly, I found that eukaryotic microbes, typified by two heterotrophic flagellate species which appear to be ubiquitous in the world's oceans, can survive and even grow despite long-term exposure to the cold, …

    odu Repository record for Eukaryotic Microbes in the Deep Sea: Abundance, Diversity, and the Effect of Pressure (opens in a new tab)

  2. Using PCR Amplification and Genetic Sequence Analysis of 18S rRNA Genes to Survey the Microbial Diversity and Distribution of Eukaryotic Microbes Inhabiting Two Thermo-acidic Streams in Yellowstone National Park, Wyoming

    … to explore the diversity and distribution of eukaryotic microbes inhabiting algal mats in two acidic geothermal streams in Yellowstone National Park. The objectives were to: (1) clarify the identity of mat forming algae in Nymph Creek (2) survey microbial species in the Nymph Creek mat over …

    uno Repository record for Using PCR Amplification and Genetic Sequence Analysis of 18S rRNA Genes to Survey the Microbial Diversity and Distribution of Eukaryotic Microbes Inhabiting Two Thermo-acidic Streams in Yellowstone National Park, Wyoming (opens in a new tab)

  3. Comparison of Two Separation Methods for Biological Particles: Field-Flow Fractionation (FFF) and Sucrose Density Gradients

    … Both techniques worked well in separating eukaryotic from prokaryotic microbes, with the preferred method depending on the type and relative abundance of organisms to be separated. Minicells were separated from mother cells in transformed <em>Escherichia coli</em> cultures, heterotrophic …

    odu Repository record for Comparison of Two Separation Methods for Biological Particles: Field-Flow Fractionation (FFF) and Sucrose Density Gradients (opens in a new tab)

  4. Essential Glycosyltransferases in Schizosaccharomyces Pombe

    … a target for selective inhibitors of pathogenic eukaryotic microbes.

    uiuc Repository record for Essential Glycosyltransferases in Schizosaccharomyces Pombe (opens in a new tab)

  5. Eukaryotic Parasites of Toxic and Bloom-forming Diatoms: Molecular insights in their diversity and physiology

    … of evidence acknowledges the importance of eukaryotic microbes in aquatic food webs, human / wildlife health, climate and biogeochemical cycles; their diversity is still widely underinvestigated. This statement is particularly truthful in the case of heterotrophic protists, more difficult to …

    uhi-uk Repository record for Eukaryotic Parasites of Toxic and Bloom-forming Diatoms: Molecular insights in their diversity and physiology (opens in a new tab)

  6. Metagenomic amplicon sequencing as a rapid and high-throughput tool for aquatic biodiversity surveys

    … three distinctive taxonomic groups: vertebrates, eukaryotic microbes, and bacteria. The methods developed throughout provide critical advances for environmental monitoring organisations, including governmental departments, shipping, fishing and aquaculture industries, and water quality …

    adelaide Repository record for Metagenomic amplicon sequencing as a rapid and high-throughput tool for aquatic biodiversity surveys (opens in a new tab)

  7. Understanding the Evolution of Aggregative Multicellularity: A Molecular Phylogenetic Study of the Cellular Slime Mold Genera Sorodiplophrys and Pocheina

    <p>Cellular slime molds are amoeboid protists that have a unicellular trophic phase and multicellular dispersal stage formed through the aggregation of individuals in their life cycles. These organisms were once thought to form a monophyletic group in the Mycetozoa. After careful morphological, …

    arkansas Repository record for Understanding the Evolution of Aggregative Multicellularity: A Molecular Phylogenetic Study of the Cellular Slime Mold Genera Sorodiplophrys and Pocheina (opens in a new tab)