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PANGAEA tech-keyword 'deNBIorganicChem' (1 data sets)

Mostrando recursos 1 - 5 de 5

  1. Interactive effects of salinity and elevated CO2 levels on juvenile eastern oysters, Crassostrea virginica

    Dickinson, Gary H; Ivanina, Anna; Matoo, Omera B; Pörtner, Hans-Otto; Lannig, Gisela; Bock, C; Beniash, Elia; Sokolova, Inna M
    Rising levels of atmospheric CO2 lead to acidification of the ocean and alter seawater carbonate chemistry, which can negatively impact calcifying organisms, including mollusks. In estuaries, exposure to elevated CO2 levels often co-occurs with other stressors, such as reduced salinity, which enhances the acidification trend, affects ion and acid-base regulation of estuarine calcifiers and modifies their response to ocean acidification. We studied the interactive effects of salinity and partial pressure of CO2 (PCO2) on biomineralization and energy homeostasis in juveniles of the eastern oyster, Crassostrea virginica, a common estuarine bivalve. Juveniles were exposed for 11 weeks to one of two...
    (text/tab-separated-values, 9613 data points) - 13-feb-2017

  2. Interactive effects of salinity and elevated CO2 levels on juvenile eastern oysters, Crassostrea virginica

    Dickinson, Gary H; Ivanina, Anna; Matoo, Omera B; Pörtner, Hans-Otto; Lannig, Gisela; Bock, C; Beniash, Elia; Sokolova, Inna M
    Rising levels of atmospheric CO2 lead to acidification of the ocean and alter seawater carbonate chemistry, which can negatively impact calcifying organisms, including mollusks. In estuaries, exposure to elevated CO2 levels often co-occurs with other stressors, such as reduced salinity, which enhances the acidification trend, affects ion and acid-base regulation of estuarine calcifiers and modifies their response to ocean acidification. We studied the interactive effects of salinity and partial pressure of CO2 (PCO2) on biomineralization and energy homeostasis in juveniles of the eastern oyster, Crassostrea virginica, a common estuarine bivalve. Juveniles were exposed for 11 weeks to one of two...
    (text/tab-separated-values, 9613 data points) - 29-ago-2017

  3. Interactive effects of salinity and elevated CO2 levels on juvenile eastern oysters, Crassostrea virginica

    Dickinson, Gary H; Ivanina, Anna; Matoo, Omera B; Pörtner, Hans-Otto; Lannig, Gisela; Bock, C; Beniash, Elia; Sokolova, Inna M
    Rising levels of atmospheric CO2 lead to acidification of the ocean and alter seawater carbonate chemistry, which can negatively impact calcifying organisms, including mollusks. In estuaries, exposure to elevated CO2 levels often co-occurs with other stressors, such as reduced salinity, which enhances the acidification trend, affects ion and acid-base regulation of estuarine calcifiers and modifies their response to ocean acidification. We studied the interactive effects of salinity and partial pressure of CO2 (PCO2) on biomineralization and energy homeostasis in juveniles of the eastern oyster, Crassostrea virginica, a common estuarine bivalve. Juveniles were exposed for 11 weeks to one of two...
    (text/tab-separated-values, 9613 data points) - 01-oct-2017

  4. (Table 2) Quantitative PCR detection of mcrA genes and intact polar archaeol and hydroxyarchaeol in sample 1328-152.7 under different storage conditions and after incubation with methanol at room temperature

    Lin, Yu-Shih; Biddle, Jennifer F; Lipp, Julius S; Orcutt, Beth N; Holler, Thomas; Teske, Andreas P; Hinrichs, Kai-Uwe
    (text/tab-separated-values, 16 data points) - 12-abr-2017

  5. (Table 2) Quantitative PCR detection of mcrA genes and intact polar archaeol and hydroxyarchaeol in sample 1328-152.7 under different storage conditions and after incubation with methanol at room temperature

    Lin, Yu-Shih; Biddle, Jennifer F; Lipp, Julius S; Orcutt, Beth N; Holler, Thomas; Teske, Andreas P; Hinrichs, Kai-Uwe
    (text/tab-separated-values, 16 data points) - 29-ago-2017

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