Morphological plasticity of the coral skeleton under CO2-driven seawater acidification

Ocean acidification causes corals to calcify at reduced rates, but current understanding of the underlying processes is limited. Here, we conduct a mechanistic study into how seawater acidification alters skeletal growth of the coral Stylophora pistillata. Reductions in colony calcification rates are manifested as increases in skeletal porosity at lower pH, while linear extension of skeletons remains unchanged. Inspection of the microstructure of skeletons and measurements of pH at the site of calcification indicate that dissolution is not responsible for changes in skeletal porosity. Instead, changes occur by enlargement of corallite-calyxes and thinning of associated skeletal elements, constituting a modification in skeleton architecture. We also detect increases in the organic matrix protein content of skeletons formed under lower pH. Overall, our study reveals that seawater acidification not only causes decreases in calcification, but can also cause morphological change of the coral skeleton to a more porous and potentially fragile phenotype.

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Cite this as

Tambutté, Eric, Venn, Alexander A, Holcomb, Michael, Segonds, Natacha, Techer, Nathalie, Zoccola, Didier, Allemand, Denis, Tambutté, Sylvie (2015). Dataset: Morphological plasticity of the coral skeleton under CO2-driven seawater acidification. https://doi.org/10.1594/PANGAEA.853572

DOI retrieved: 2015

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-3.0
Source https://doi.org/10.1594/PANGAEA.853572
Author Tambutté, Eric
Given Name Eric
Family Name Tambutté
More Authors
Venn, Alexander A
Holcomb, Michael
Segonds, Natacha
Techer, Nathalie
Zoccola, Didier
Allemand, Denis
Tambutté, Sylvie
Source Creation 2015
Publication Year 2015
Resource Type text/tab-separated-values - filename: Tambutte_2015
Subject Areas
Name: BiologicalClassification

Name: Chemistry

Related Identifiers
Title: Morphological plasticity of the coral skeleton under CO2-driven seawater acidification
Identifier: https://doi.org/10.1038/ncomms8368
Type: DOI
Relation: IsSupplementTo
Year: 2015
Source: Nature Communications
Authors: Tambutté Eric , Venn Alexander A , Holcomb Michael , Segonds Natacha , Techer Nathalie , Zoccola Didier , Allemand Denis , Tambutté Sylvie .

Title: seacarb: seawater carbonate chemistry with R. R package version 3.0.8
Identifier: https://cran.r-project.org/package=seacarb
Type: DOI
Relation: References
Year: 2015
Authors: Gattuso Jean-Pierre , Epitalon Jean-Marie , Lavigne Héloïse .