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Showing 1 to 8 of 8 for “"Amphidinium"”.

  1. The Assimilation of Glucose by Phytoplankton: A Potentially Common Adaptation Under Multiple Irradiance and Field Conditions

    … rates. Cultures of the dinoflagellate Amphidinium carterae and natural samples collected from sites in the North Inlet-Winyah Bay Estuary System were grown with either 14C-sodium bicarbonate or 14C-glucose. HPLC with in-line flow scintillation counting was used to measure the …

    south-carolina Repository record for The Assimilation of Glucose by Phytoplankton: A Potentially Common Adaptation Under Multiple Irradiance and Field Conditions (opens in a new tab)

  2. THE ORIGIN OF THE DINOFLAGELLATE PLASTID

    … <i>Lingulodinium polyedra</i> and <i>Amphidinium carterae</i>. From these genes, thirty typically plastid-encoded genes were found, including eight otherwise known only from plastid genomes. Based on poly-A tails, gene families, and leader sequences these genes appear to be …

    maryland Repository record for THE ORIGIN OF THE DINOFLAGELLATE PLASTID (opens in a new tab)

  3. Quantum Physics of Photosynthetic Light -Harvesting

    … protein of the dinoflagellate Amphidinium carterae. The electronic excitations of carotenoids and BChls have been described by means of semi-empirical self-consistent-field configuration interaction calculations. The electronic coupling between the various electronic excitations …

    uiuc Repository record for Quantum Physics of Photosynthetic Light -Harvesting (opens in a new tab)

  4. Quantum physics of photosynthetic light-harvesting

    … protein of the dinoflagellate Amphidinium carterae. The electronic excitations of carotenoids and BChls have been described by means of semi-empirical self-consistent-field configuration interaction calculations. The electronic coupling between the various electronic excitations …

    uiuc Repository record for Quantum physics of photosynthetic light-harvesting (opens in a new tab)

  5. Coevolution of plastid genomes and transcript processing pathways in photosynthetic alveolates

    … transcripts in plastids of the dinoflagellate Amphidinium carterae, including the first evidence for antisense transcripts in an algal plastid. Antisense transcripts in dinoflagellate plastids do not receive poly(U) tails, suggesting that poly(U) tail addition may play a role in strand …

    cambridge Repository record for Coevolution of plastid genomes and transcript processing pathways in photosynthetic alveolates (opens in a new tab)

  6. Diversidad, abundancia y distribución de dinoflagelados epífitos en la zona intermareal rocosa del Área Natural Protegida Complejo Los Cóbanos, El Salvador

    En la presente investigación se caracterizó la diversidad y abundancia de dinoflagelados epífitos en dos sitios del Área Natural Protegida Complejo Los Cóbanos, en la Playa El Faro y Playa La Privada. La abundancia de dinoflagelados no presentó diferencia significativa entre los dos sitios de …

    u-elsalvador Repository record for Diversidad, abundancia y distribución de dinoflagelados epífitos en la zona intermareal rocosa del Área Natural Protegida Complejo Los Cóbanos, El Salvador (opens in a new tab)

  7. Iodate Transformation By Marine Phytoplankton

    … costatum, Dunaliella tertiolecta, Amphidinium carterae, Tetraselmis levis, Emiliania huxleyi, and Synechococcus sp.</em> , have been examined for their ability to take up and reduce iodate under a reduced nitrate environment. In both natural and elevated iodate environments, all …

    odu Repository record for Iodate Transformation By Marine Phytoplankton (opens in a new tab)

  8. Production and Decomposition of Hydrogen Peroxide by Marine Phytoplankton

    … > Isochrysis galbana > Thalassiosira oceanica > Amphidinium carterae > Pleurochrysis carterae ></em> Emiliania huxleyi > Dunaliella tertiolecta. Coccoid or unialgal cells showed a tendency to produce H<sub>2</sub>0<sub>2</sub>, whereas diatoms in chains were more likely to decompose …

    odu Repository record for Production and Decomposition of Hydrogen Peroxide by Marine Phytoplankton (opens in a new tab)