Articles | Volume 13, issue 21
https://doi.org/10.5194/bg-13-5937-2016
https://doi.org/10.5194/bg-13-5937-2016
Research article
 | 
01 Nov 2016
Research article |  | 01 Nov 2016

Mineralogical response of the Mediterranean crustose coralline alga Lithophyllum cabiochae to near-future ocean acidification and warming

Merinda C. Nash, Sophie Martin, and Jean-Pierre Gattuso

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Cited articles

Adey, W. H., Halfar, J., and Williams, B.: The coralline genus Clathromorphum Foslie emend, Adey: Biological, physiological, and ecological factors controlling carbonate production in an Arctic-Subarctic climate archive, Smithsonian contributions to the marine sciences, 40, 1–41, 2013.
Agegian, C. R.: The biogeochemical ecology of Porolithon gardineri (Foslie), PhD dissertation, University of Hawaii, 1985.
Andersson, A. J., Mackenzie, F. T., and Bates, N. R.: Life on the margin: implications of ocean acidification on Mg-calcite, high latitude and cold-water marine calcifiers, Mar. Ecol.-Prog. Ser., 373, 265–273, 2008.
Caragnano, A., Basso, D., Jacob, D.E., Storz, D., Rodondi, G., Benzoni, F., and Dutrieux, E.: The coralline red alga Lithophyllum kotschyanum f. affine as proxy of climate variability in the Yemen coast, Gulf of Aden (NW Indian Ocean), Geochim. Cosmochim. Ac., 124, 1–17, 2014.
Chave, K. E. and Wheeler, B. D.: Mineralogic changes during growth in the red alga, Clathromorphum compactum, Science, 147, 621–621, 1965.
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Short summary
We carried out a 1-year experiment on coralline algae to test how higher CO2 and temperature might change the mineral composition of the algal skeleton. We expected there to be a decline in magnesium with CO2 and an increase with temperature. We found that CO2 did not change the mineral composition, but higher temperature increased the amount of magnesium.
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