Data from: Fluctuating seawater pH/ p CO 2 regimes are more energetically expensive than static pH/ p CO 2 levels in the mussel Mytilus edulis ...

Ocean acidification (OA) studies typically use stable open-ocean pH or CO2 values. However, species living within dynamic coastal environments can naturally experience wide fluctuations in abiotic factors, suggesting their responses to stable pH conditions may not be reflective of either present or...

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Bibliographic Details
Main Authors: Mangan, Stephanie, Urbina, Mauricio A., Findlay, Helen S., Wilson, Rod W., Lewis, Ceri
Format: Dataset
Language:English
Published: Dryad 2017
Subjects:
Online Access:https://dx.doi.org/10.5061/dryad.3v8s5
https://datadryad.org/stash/dataset/doi:10.5061/dryad.3v8s5
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Summary:Ocean acidification (OA) studies typically use stable open-ocean pH or CO2 values. However, species living within dynamic coastal environments can naturally experience wide fluctuations in abiotic factors, suggesting their responses to stable pH conditions may not be reflective of either present or near-future conditions. Here we investigate the physiological responses of the mussel Mytilus edulis to variable seawater pH conditions over short- (6 h) and medium-term (2 weeks) exposures under both current and near-future OA scenarios. Mussel haemolymph pH closely mirrored that of seawater pH over short-term changes of 1 pH unit with acidosis or recovery accordingly, highlighting a limited capacity for acid–base regulation. After 2 weeks, mussels under variable pH conditions had significantly higher metabolic rates, antioxidant enzyme activities and lipid peroxidation than those exposed to static pH under both current and near-future OA scenarios. Static near-future pH conditions induced significant acid–base ... : Mangan_et_al_ProcRoyalB_2017_RawDataThis file contains all raw data used to produce the figures and tables within the article. Supplementary data is within a separate file.Mangan_et_al_Supplementary_ProcRoyalB_2017_RawDataThis file contains all the data used to produce the supplementary material for this article. ...