Seawater carbonate chemistry and net calcification rates of cold-water coralline algae Clathromorphum compactum and Clathromorphum nereostratum

Ocean acidification and warming are expected to disproportionately affect high-latitude calcifying species, such as crustose coralline algae. Clathromorphum nereostratum and Clathromorphum compactum are the primary builders of carbonate-hardgrounds in the Aleutians Islands of Alaska and North Atlantic shelf, respectively, providing habitat and settlement substrates for a large number of species. We exposed wild-collected specimens to 12 pCO2/T treatments (344–3322 μatm; 6.38–12.40°C) for 4 months in a factorially crossed, replicated laboratory experiment. Impacts of pCO2/T on algal calcification were quantified from linear extension and buoyant weight. Here we show that, despite belonging to the same genus, C. nereostratum exhibited greater sensitivity to thermal stress, while C. compactum exhibited greater sensitivity to pH stress. Furthermore, multivariate models of algal calcification derived from the experiment indicate that both C. nereostratum and C. compactum will commence net dissolution as early as 2120 and 2200 AD, respectively. Our results therefore indicate that near-term climate change may lead to substantial degradation of these species and loss of the critical hardground habitats that they form.

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Westfield, Isaac T, Gunnell, John, Rasher, D B, Williams, Branwen, Ries, Justin B (2022). Dataset: Seawater carbonate chemistry and net calcification rates of cold-water coralline algae Clathromorphum compactum and Clathromorphum nereostratum. https://doi.org/10.1594/PANGAEA.946236

DOI retrieved: 2022

Additional Info

Field Value
Imported on November 29, 2024
Last update November 30, 2024
License CC-BY-4.0
Source https://doi.org/10.1594/PANGAEA.946236
Author Westfield, Isaac T
Given Name Isaac T
Family Name Westfield
More Authors
Gunnell, John
Rasher, D B
Williams, Branwen
Ries, Justin B
Source Creation 2022
Publication Year 2022
Resource Type text/tab-separated-values - filename: Westfield-etal_2022_GGG
Subject Areas
Name: BiologicalClassification

Name: Chemistry

Name: Geophysics

Name: Lithosphere

Related Identifiers
Title: Cessation of Hardground Accretion by the Cold‐Water Coralline Algae Clathromorphum Compactum and Clathromorphum Nereostratum Predicted Within Two Centuries
Identifier: https://doi.org/10.1029/2021GC009942
Type: DOI
Relation: References
Year: 2022
Source: Geochemistry, Geophysics, Geosystems
Authors: Westfield Isaac T , Gunnell John , Rasher D B , Williams Branwen , Ries Justin B , Westfield Isaac T , Ries Justin B , Williams Branwen , Rasher D B , Gattuso Jean-Pierre , Epitalon Jean-Marie , Lavigne Héloïse , Orr James .

Title: Clathromorphum compactum and C. nereostratum calcification experiment data involving multiple temperatures and pCO2 levels (CorallineAlgaePaleo-pH)
Identifier: https://doi.org/10.26008/1912/bco-dmo.871633.1
Type: DOI
Relation: References
Year: 2022
Source: Biological and Chemical Oceanography Data Management Office (BCO-DMO)
Authors: Westfield Isaac T , Gunnell John , Rasher D B , Williams Branwen , Ries Justin B , Westfield Isaac T , Ries Justin B , Williams Branwen , Rasher D B , Gattuso Jean-Pierre , Epitalon Jean-Marie , Lavigne Héloïse , Orr James .

Title: seacarb: seawater carbonate chemistry with R. R package version 3.2.16
Identifier: https://cran.r-project.org/web/packages/seacarb/index.html
Type: DOI
Relation: References
Year: 2021
Authors: Westfield Isaac T , Gunnell John , Rasher D B , Williams Branwen , Ries Justin B , Westfield Isaac T , Ries Justin B , Williams Branwen , Rasher D B , Gattuso Jean-Pierre , Epitalon Jean-Marie , Lavigne Héloïse , Orr James .