Shelled pteropods in peril: Assessing vulnerability in a high CO2 ocean

The impact of anthropogenic ocean acidification (OA) on marine ecosystems is a vital concern facing marine scientists and managers of ocean resources. Euthecosomatous pteropods (holoplanktonic gastropods) represent an excellent sentinel for indicating exposure to anthropogenic OA because of the sens...

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Published inEarth-science reviews Vol. 169; pp. 132 - 145
Main Authors Manno, Clara, Bednaršek, Nina, Tarling, Geraint A., Peck, Vicky L., Comeau, Steeve, Adhikari, Deepak, Bakker, Dorothee C.E., Bauerfeind, Eduard, Bergan, Alexander J., Berning, Maria I., Buitenhuis, Erik, Burridge, Alice K., Chierici, Melissa, Flöter, Sebastian, Fransson, Agneta, Gardner, Jessie, Howes, Ella L., Keul, Nina, Kimoto, Katsunori, Kohnert, Peter, Lawson, Gareth L., Lischka, Silke, Maas, Amy, Mekkes, Lisette, Oakes, Rosie L., Pebody, Corinne, Peijnenburg, Katja T.C.A., Seifert, Miriam, Skinner, Jennifer, Thibodeau, Patricia S., Wall-Palmer, Deborah, Ziveri, Patrizia
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.06.2017
Subjects
Online AccessGet full text
ISSN0012-8252
1872-6828
1872-6828
DOI10.1016/j.earscirev.2017.04.005

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Abstract The impact of anthropogenic ocean acidification (OA) on marine ecosystems is a vital concern facing marine scientists and managers of ocean resources. Euthecosomatous pteropods (holoplanktonic gastropods) represent an excellent sentinel for indicating exposure to anthropogenic OA because of the sensitivity of their aragonite shells to the OA conditions less favorable for calcification. However, an integration of observations, experiments and modelling efforts is needed to make accurate predictions of how these organisms will respond to future changes to their environment. Our understanding of the underlying organismal biology and life history is far from complete and must be improved if we are to comprehend fully the responses of these organisms to the multitude of stressors in their environment beyond OA. This review considers the present state of research and understanding of euthecosomatous pteropod biology and ecology of these organisms and considers promising new laboratory methods, advances in instrumentation (such as molecular, trace elements, stable isotopes, palaeobiology alongside autonomous sampling platforms, CT scanning and high-quality video recording) and novel field-based approaches (i.e. studies of upwelling and CO2 vent regions) that may allow us to improve our predictive capacity of their vulnerability and/or resilience. In addition to playing a critical ecological and biogeochemical role, pteropods can offer a significant value as an early-indicator of anthropogenic OA. This role as a sentinel species should be developed further to consolidate their potential use within marine environmental management policy making.
AbstractList The impact of anthropogenic ocean acidification (OA) on marine ecosystems is a vital concern facing marine scientists and managers of ocean resources. Euthecosomatous pteropods (holoplanktonic gastropods) represent an excellent sentinel for indicating exposure to anthropogenic OA because of the sensitivity of their aragonite shells to the OA conditions less favorable for calcification. However, an integration of observations, experiments and modelling efforts is needed to make accurate predictions of how these organisms will respond to future changes to their environment. Our understanding of the underlying organismal biology and life history is far from complete and must be improved if we are to comprehend fully the responses of these organisms to the multitude of stressors in their environment beyond OA. This review considers the present state of research and understanding of euthecosomatous pteropod biology and ecology of these organisms and considers promising new laboratory methods, advances in instrumentation (such as molecular, trace elements, stable isotopes, palaeobiology alongside autonomous sampling platforms, CT scanning and high-quality video recording) and novel field-based approaches (i.e. studies of upwelling and CO2 vent regions) that may allow us to improve our predictive capacity of their vulnerability and/or resilience. In addition to playing a critical ecological and biogeochemical role, pteropods can offer a significant value as an early-indicator of anthropogenic OA. This role as a sentinel species should be developed further to consolidate their potential use within marine environmental management policy making.
Author Kohnert, Peter
Peck, Vicky L.
Flöter, Sebastian
Fransson, Agneta
Kimoto, Katsunori
Lischka, Silke
Lawson, Gareth L.
Peijnenburg, Katja T.C.A.
Maas, Amy
Ziveri, Patrizia
Buitenhuis, Erik
Keul, Nina
Gardner, Jessie
Chierici, Melissa
Comeau, Steeve
Oakes, Rosie L.
Bauerfeind, Eduard
Manno, Clara
Thibodeau, Patricia S.
Howes, Ella L.
Skinner, Jennifer
Wall-Palmer, Deborah
Pebody, Corinne
Bergan, Alexander J.
Burridge, Alice K.
Mekkes, Lisette
Seifert, Miriam
Bakker, Dorothee C.E.
Tarling, Geraint A.
Bednaršek, Nina
Berning, Maria I.
Adhikari, Deepak
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Thu Oct 02 10:49:48 EDT 2025
Thu Apr 24 23:01:04 EDT 2025
Wed Oct 01 03:52:11 EDT 2025
Fri Feb 23 02:27:14 EST 2024
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Keywords Carbonate chemistry
Marine ecosystem
Ocean acidification
Euthecosomatous pteropods
Calcifying organisms
Language English
License This is an open access article under the CC BY-NC-ND license.
cc-by-nc-nd
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PublicationTitle Earth-science reviews
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SubjectTerms aragonite
calcification
Calcifying organisms
carbon dioxide
Carbonate chemistry
environmental management
Euthecosomatous pteropods
Gastropoda
indicator species
issues and policy
laboratory techniques
life history
managers
Marine ecosystem
marine ecosystems
Ocean acidification
prediction
scientists
stable isotopes
trace elements
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Title Shelled pteropods in peril: Assessing vulnerability in a high CO2 ocean
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