Effects of ocean acidification on the shells of four Mediterranean gastropod species near a CO2 seep

Marine CO2 seeps allow the study of the long-term effects of elevated pCO2 (ocean acidification) on marine invertebrate biomineralization. We investigated the effects of ocean acidification on shell composition and structure in four ecologically important species of Mediterranean gastropods (two lim...

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Veröffentlicht in:Marine pollution bulletin 2017-11, Vol.124 (2), p.917-928
Hauptverfasser: Duquette, Ashley, McClintock, James B., Amsler, Charles D., Pérez-Huerta, Alberto, Milazzo, Marco, Hall-Spencer, Jason M.
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Sprache:eng
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Zusammenfassung:Marine CO2 seeps allow the study of the long-term effects of elevated pCO2 (ocean acidification) on marine invertebrate biomineralization. We investigated the effects of ocean acidification on shell composition and structure in four ecologically important species of Mediterranean gastropods (two limpets, a top-shell snail, and a whelk). Individuals were sampled from three sites near a volcanic CO2 seep off Vulcano Island, Italy. The three sites represented ambient (8.15pH), moderate (8.03pH) and low (7.73pH) seawater mean pH. Shell mineralogy, microstructure, and mechanical strength were examined in all four species. We found that the calcite/aragonite ratio could vary and increased significantly with reduced pH in shells of one of the two limpet species. Moreover, each of the four gastropods displayed reductions in either inner shell toughness or elasticity at the Low pH site. These results suggest that near-future ocean acidification could alter shell biomineralization and structure in these common gastropods. •The effect of exposure to a CO2 seep is investigated for shells of four species of marine gastropods.•Measures of both shell mineralogy and shell strength are employed in the comparative evaluation.•Proximity to the CO2 seep influenced aspects of shell calcite-aragonite ratio and shell strength.
ISSN:0025-326X
1879-3363
DOI:10.1016/j.marpolbul.2017.08.007