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Seawater carbonate chemistry and physiological performance parameters of Carcinus maenas under respective incubation conditions

Ocean acidification causes an accumulation of CO2 in marine organisms and leads to shifts in acid-base parameters. Acid-base regulation in gill breathers involves a net increase of internal bicarbonate levels through transmembrane ion exchange with the surrounding water. Successful maintenance of body fluid pH depends on the functional capacity of ion-exchange mechanisms and associated energy budget. For a detailed understanding of the dependence of acid-base regulation on water parameters, we investigated the physiological responses of the shore crab Carcinus maenas to 4 weeks of ocean acidification [OA, P(CO2)w = 1800 µatm], at variable water bicarbonate levels, paralleled by changes in water pH. Cardiovascular performance was determined together with extra-(pHe) and intracellular pH (pHi), oxygen consumption, haemolymph CO2 parameters, and ion composition. High water P(CO2) caused haemolymph P(CO2) to rise, but pHe and pHi remained constant due to increased haemolymph and cellular [HCO3-]. This process was effective even under reduced seawater pH and bicarbonate concentrations. While extracellular cation concentrations increased throughout, anion levels remained constant or decreased. Despite similar levels of haemolymph pH and ion concentrations under OA, metabolic rates, and haemolymph flow were significantly depressed by 40 and 30%, respectively, when OA was combined with reduced seawater [HCO3-] and pH. Our findings suggest an influence of water bicarbonate levels on metabolic rates as well as on correlations between blood flow and pHe. This previously unknown phenomenon should direct attention to pathways of acid-base regulation and their potential feedback on whole-animal energy demand, in relation with changing seawater carbonate parameters.

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Maus, Bastian, Bock, Christian, Pörtner, Hans-Otto (2018). Dataset: Seawater carbonate chemistry and physiological performance parameters of Carcinus maenas under respective incubation conditions. https://doi.org/10.1594/PANGAEA.892815

DOI retrieved: 2018

Additional Info

Field Value
Imported on November 29, 2024
Last update November 30, 2024
License CC-BY-3.0
Source https://doi.org/10.1594/PANGAEA.892815
Author Maus, Bastian
Given Name Bastian
Family Name Maus
More Authors
Bock, Christian
Pörtner, Hans-Otto
Source Creation 2018
Publication Year 2018
Resource Type text/tab-separated-values - filename: Maus-etal_2018_JCPB_1
Subject Areas
Name: BiologicalClassification

Name: Biosphere

Name: Chemistry

Related Identifiers
Title: Water bicarbonate modulates the response of the shore crab Carcinus maenas to ocean acidification
Identifier: https://doi.org/10.1007/s00360-018-1162-5
Type: DOI
Relation: References
Year: 2018
Source: Journal of Comparative Physiology B-Biochemical Systemic and Environmentalphysiology
Authors: Maus Bastian , Bock Christian , Pörtner Hans-Otto , Gattuso Jean-Pierre , Epitalon Jean-Marie , Lavigne Héloïse , Orr James C , Gentili Bernard , Proye Aurélien , Soetaert Karline , Rae James .

Title: seacarb: seawater carbonate chemistry with R. R package version 3.1
Identifier: https://cran.r-project.org/package=seacarb
Type: DOI
Relation: References
Year: 2016
Authors: Maus Bastian , Bock Christian , Pörtner Hans-Otto , Gattuso Jean-Pierre , Epitalon Jean-Marie , Lavigne Héloïse , Orr James C , Gentili Bernard , Proye Aurélien , Soetaert Karline , Rae James .