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  • Acid-base regulation; Alkalinity, total; Animalia; Aragonite saturation state; Behaviour; Bicarbonate; Bicarbonate ion; BIOACID; Biological Impacts of Ocean Acidification; Calcite saturation state; Calculated; Calculated using CO2SYS; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Carbon dioxide, partial pressure; Coast and continental shelf; Containers and aquaria (20-1000 L or 〈 1 m**2); EPOCA; EUR-OCEANS; European network of excellence for Ocean Ecosystems Analysis; European Project on Ocean Acidification; Experimental treatment; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Incubation duration; Laboratory experiment; Measured; Mollusca; Nekton; North Atlantic; OA-ICC; Ocean Acidification International Coordination Centre; Optical sensor (HPS-OIW); Optical sensor (PS1, PreSens); Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Pelagos; pH; Salinity; Sepia officinalis; Sepia officinalis, haemolymph, bicarbonate, standard deviation; Sepia officinalis, haemolymph, bicarbonate ion; Sepia officinalis, haemolymph O2; Sepia officinalis, haemolymph O2, standard deviation; Sepia officinalis, haemolymph pCO2; Sepia officinalis, haemolymph pCO2, standard deviation; Sepia officinalis, haemolymph pH; Sepia officinalis, haemolymph pH, standard deviation; Sepia officinalis, pH, intracellular; Sepia officinalis, pH, intracellular, standard deviation; Sepia officinalis, phosphate, inorganic/phospho-L-arginine ratio; Sepia officinalis, phosphate, inorganic/phospho-L-arginine ratio, standard de; Sepia officinalis, ventilation frequency, changes; Sepia officinalis, ventilation frequency, changes, standard deviation; Single species; Temperate; Temperature, water  (1)
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    In:  Supplement to: Gutowska, Magdalena A; Melzner, Frank; Langenbuch, M; Bock, C; Claireaux, Guy; Pörtner, Hans-Otto (2010): Acid–base regulatory ability of the cephalopod (Sepia officinalis) in response to environmental hypercapnia. Journal of Comparative Physiology B-Biochemical Systemic and Environmentalphysiology, 180(3), 323-335, https://doi.org/10.1007/s00360-009-0412-y
    Publication Date: 2024-03-15
    Description: Acidification of ocean surface waters by anthropogenic carbon dioxide (CO2) emissions is a currently developing scenario that warrants a broadening of research foci in the study of acid-base physiology. Recent studies working with environmentally relevant CO2 levels, indicate that some echinoderms and molluscs reduce metabolic rates, soft tissue growth and calcification during hypercapnic exposure. In contrast to all prior invertebrate species studied so far, growth trials with the cuttlefish Sepia officinalis found no indication of reduced growth or calcification performance during long-term exposure to 0.6 kPa CO2. It is hypothesized that the differing sensitivities to elevated seawater pCO2 could be explained by taxa specific differences in acid-base regulatory capacity. In this study, we examined the acid-base regulatory ability of S. officinalis in vivo, using a specially modified cannulation technique as well as 31P NMR spectroscopy. During acute exposure to 0.6 kPa CO2, S. officinalis rapidly increased its blood [HCO3] to 10.4 mM through active ion-transport processes, and partially compensated the hypercapnia induced respiratory acidosis. A minor decrease in intracellular pH (pHi) and stable intracellular phosphagen levels indicated efficient pHi regulation. We conclude that S. officinalis is not only an efficient acid-base regulator, but is also able to do so without disturbing metabolic equilibria in characteristic tissues or compromising aerobic capacities. The cuttlefish did not exhibit acute intolerance to hypercapnia that has been hypothesized for more active cephalopod species (squid). Even though blood pH (pHe) remained 0.18 pH units below control values, arterial O2 saturation was not compromised in S. officinalis because of the comparatively lower pH sensitivity of oxygen binding to its blood pigment. This raises questions concerning the potentially broad range of sensitivity to changes in acid-base status amongst invertebrates, as well as to the underlying mechanistic origins. Further studies are needed to better characterize the connection between acid-base status and animal fitness in various marine species.
    Keywords: Acid-base regulation; Alkalinity, total; Animalia; Aragonite saturation state; Behaviour; Bicarbonate; Bicarbonate ion; BIOACID; Biological Impacts of Ocean Acidification; Calcite saturation state; Calculated; Calculated using CO2SYS; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Carbon dioxide, partial pressure; Coast and continental shelf; Containers and aquaria (20-1000 L or 〈 1 m**2); EPOCA; EUR-OCEANS; European network of excellence for Ocean Ecosystems Analysis; European Project on Ocean Acidification; Experimental treatment; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Incubation duration; Laboratory experiment; Measured; Mollusca; Nekton; North Atlantic; OA-ICC; Ocean Acidification International Coordination Centre; Optical sensor (HPS-OIW); Optical sensor (PS1, PreSens); Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Pelagos; pH; Salinity; Sepia officinalis; Sepia officinalis, haemolymph, bicarbonate, standard deviation; Sepia officinalis, haemolymph, bicarbonate ion; Sepia officinalis, haemolymph O2; Sepia officinalis, haemolymph O2, standard deviation; Sepia officinalis, haemolymph pCO2; Sepia officinalis, haemolymph pCO2, standard deviation; Sepia officinalis, haemolymph pH; Sepia officinalis, haemolymph pH, standard deviation; Sepia officinalis, pH, intracellular; Sepia officinalis, pH, intracellular, standard deviation; Sepia officinalis, phosphate, inorganic/phospho-L-arginine ratio; Sepia officinalis, phosphate, inorganic/phospho-L-arginine ratio, standard de; Sepia officinalis, ventilation frequency, changes; Sepia officinalis, ventilation frequency, changes, standard deviation; Single species; Temperate; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 1725 data points
    Location Call Number Limitation Availability
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