Tripp-Valdez, Miguel Angel; Bock, Christian; Lucassen, Magnus; Lluch-Cota, Salvador E; Sicard, M Teresa; Lannig, Gisela; Pörtner, Hans-Otto (2018): Whole-organism metabolic rate and cellular metabolic state of thermally challenged Haliotis fulgens juveniles under acute hypoxia and hypercapnia. Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven, PANGAEA, https://doi.org/10.1594/PANGAEA.894877, Supplement to: Tripp-Valdez, Miguel Angel; Lucassen, Magnus; Lluch-Cota, Salvador E; Sicard, M Teresa; Lannig, Gisela; Pörtner, Hans-Otto (2017): Metabolic response and thermal tolerance of green abalone juveniles (Haliotis fulgens: Gastropoda) under acute hypoxia and hypercapnia. Journal of Experimental Marine Biology and Ecology, 497, 11-18, https://doi.org/10.1016/j.jembe.2017.09.002
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Data derived from a study aimed to detect differences in thermal tolerance by investigating the underlying metabolic responses in the green abalone (Haliotis fulgens) under conditions of hypoxia and hypercapnia. Juvenile abalones were exposed to a temperature ramp (+3 °C day−1) under hypoxia (50% air saturation) and hypercapnia (~1000 μatm pCO2), both individually and in combination. Impacts on energy metabolism were assessed by analyzing whole animal respiration rates and metabolic profiles of gills and hepatopancreas via 1H NMR spectroscopy.
The experiments are depicted as warming (warming ramp under normoxic normocapnia), hypoxia (warming ramp under hypoxic normocapnia), hypercapnia (warming ramp under normoxic hypercapnia), and combined (warming ramp under hypoxic hypercapnia). Each experiment was accompanied by a Control group, which was exposed to the same water PO2 and PCO2 but at a stable temperature (18 °C).
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|1||File content||Content||Tripp-Valdez, Miguel Angel|
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|3||File name||File name||Tripp-Valdez, Miguel Angel|
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24 data points