Sea butterflies in a pickle: reliable biomarkers and seasonal sensitivity of Limacina retroversa to ocean acidification in the Gulf of Maine

Author:

Maas Amy E123ORCID,Lawson Gareth L34,Bergan Alexander J3,Wang Zhaohui Aleck5,Tarrant Ann M3

Affiliation:

1. Bermuda Institute of Ocean Sciences , School of Ocean Futures, , 17 Biological Station, St. George’s GE01 , Bermuda

2. Arizona State University , School of Ocean Futures, , 17 Biological Station, St. George’s GE01 , Bermuda

3. Biology Department, Woods Hole Oceanographic Institution , 266 Woods Hole Road, Woods Hole, MA 02543 , USA

4. Conservation Law Foundation , 62 Summer St, Boston, MA 02110 , USA

5. Marine Chemistry and Geochemistry Department, Woods Hole Oceanographic Institution , 266 Woods Hole Road, Woods Hole, MA 02543 , USA

Abstract

Abstract The passive dissolution of anthropogenically produced CO2 into the ocean system is reducing ocean pH and changing a suite of chemical equilibria, with negative consequences for some marine organisms, in particular those that bear calcium carbonate shells. Although our monitoring of these chemical changes has improved, we have not developed effective tools to translate observations, which are typically of the pH and carbonate saturation state, into ecologically relevant predictions of biological risks. One potential solution is to develop bioindicators: biological variables with a clear relationship to environmental risk factors that can be used for assessment and management. Thecosomatous pteropods are a group of pelagic shelled marine gastropods, whose biological responses to CO2 have been suggested as potential bioindicators of ocean acidification owing to their sensitivity to acidification in both the laboratory and the natural environment. Using five CO2 exposure experiments, occurring across four seasons and running for up to 15 days, we describe a consistent relationship between saturation state, shell transparency and duration of exposure, as well as identify a suite of genes that could be used for biological monitoring with further study. We clarify variations in thecosome responses due to seasonality, resolving prior uncertainties and demonstrating the range of their phenotypic plasticity. These biomarkers of acidification stress can be implemented into ecosystem models and monitoring programmes in regions where pteropods are found, whilst the approach will serve as an example for other regions on how to bridge the gap between point-based chemical monitoring and biologically relevant assessments of ecosystem health.

Publisher

Oxford University Press (OUP)

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