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Cornwall, Christopher Edward; Comeau, Steeve; McCulloch, Malcolm T (2017): Seawater carbonate chemistry and pH at the site of calcification within the calcifying fluid/medium of coralline algae in laboratory experiment [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.875262, Supplement to: Cornwall, CE et al. (2017): Coralline algae elevate pH at the site of calcification under ocean acidification. Global Change Biology, https://doi.org/10.1111/gcb.13673

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Abstract:
Coralline algae provide important ecosystem services but are susceptible to the impacts of ocean acidification. However, the mechanisms are uncertain, and the magnitude is species specific. Here, we assess whether species-specific responses to ocean acidification of coralline algae are related to differences in pH at the site of calcification within the calcifying fluid/medium (pHcf) using delta 11B as a proxy. Declines in delta 11B for all three species are consistent with shifts in delta 11B expected if B(OH)4- was incorporated during precipitation. In particular, the delta11B ratio in Amphiroa anceps was too low to allow for reasonable pHcf values if B(OH)3 rather than B(OH)4- was directly incorporated from the calcifying fluid. This points towards delta 11B being a reliable proxy for pHcf for coralline algal calcite and that if B(OH)3 is present in detectable proportions, it can be attributed to secondary postincorporation transformation of B(OH)4-. We thus show that pHcf is elevated during calcification and that the extent is species specific. The net calcification of two species of coralline algae (Sporolithon durum, and Amphiroa anceps) declined under elevated CO2, as did their pHcf. Neogoniolithon sp. had the highest pHcf, and most constant calcification rates, with the decrease in pHcf being 1/4 that of seawater pH in the treatments, demonstrating a control of coralline algae on carbonate chemistry at their site of calcification. The discovery that coralline algae upregulate pHcf under ocean acidification is physiologically important and should be included in future models involving calcification.
Keyword(s):
Acid-base regulation; Amphiroa anceps; Benthos; Calcification/Dissolution; Coast and continental shelf; Containers and aquaria (20-1000 L or < 1 m**2); Indian Ocean; Laboratory experiment; Macroalgae; Neogoniolithon sp.; Plantae; Rhodophyta; Single species; Sporolithon durum; Temperate
Further details:
Gattuso, Jean-Pierre; Epitalon, Jean-Marie; Lavigne, Héloïse; Orr, James C; Gentili, Bernard; Proye, Aurélien; Soetaert, Karline; Rae, James (2016): seacarb: seawater carbonate chemistry with R. R package version 3.1. https://cran.r-project.org/package=seacarb
Coverage:
Latitude: -32.000000 * Longitude: 115.000000
Date/Time Start: 2015-08-31T00:00:00 * Date/Time End: 2015-08-31T00:00:00
Event(s):
Rottnest_Island * Latitude: -32.000000 * Longitude: 115.000000 * Date/Time: 2015-08-31T00:00:00 * Method/Device: Experiment (EXP)
Comment:
In order to allow full comparability with other ocean acidification data sets, the R package seacarb (Gattuso et al, 2016) was used to compute a complete and consistent set of carbonate system variables, as described by Nisumaa et al. (2010). In this dataset the original values were archived in addition with the recalculated parameters (see related PI). The date of carbonate chemistry calculation by seacarb is 2017-05-17.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1TypeTypeCornwall, Christopher Edwardstudy
2SpeciesSpeciesCornwall, Christopher Edward
3Registration number of speciesReg spec noCornwall, Christopher Edward
4Uniform resource locator/link to referenceURL refCornwall, Christopher EdwardWoRMS Aphia ID
5Experiment durationExp durationdaysCornwall, Christopher Edward
6IdentificationIDCornwall, Christopher Edwardlabel numbers
7δ11Bδ11B‰ SRMCornwall, Christopher Edwardthe calcite, run 1
8δ11Bδ11B‰ SRMCornwall, Christopher Edwardthe calcite, run 2
9TreatmentTreatCornwall, Christopher Edward
10Calcifying fluid, pHCF pHCornwall, Christopher Edward
11DifferenceDiffCornwall, Christopher EdwardpHcf-pH seawater
12Calcification rate of calcium carbonateCalc rate CaCO3mg/cm2/dayCornwall, Christopher Edward
13pHpHCornwall, Christopher Edwardtotal scale
14pH, standard errorpH std e±Cornwall, Christopher Edwardtotal scale
15Alkalinity, totalATµmol/kgCornwall, Christopher Edward
16Alkalinity, total, standard errorAT std e±Cornwall, Christopher Edward
17Carbon, inorganic, dissolvedDICµmol/kgCornwall, Christopher Edward
18Carbon, inorganic, dissolved, standard errorDIC std e±Cornwall, Christopher Edward
19Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)pCO2water_SST_wetµatmCornwall, Christopher Edward
20Partial pressure of carbon dioxide (water) at sea surface temperature (wet air), standard errorpCO2water_SST_wet std e±Cornwall, Christopher Edward
21Temperature, waterTemp°CCornwall, Christopher Edward
22SalinitySalCornwall, Christopher Edward
23Carbonate system computation flagCSC flagYang, YanCalculated using seacarb after Nisumaa et al. (2010)
24Carbon dioxideCO2µmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
25Fugacity of carbon dioxide (water) at sea surface temperature (wet air)fCO2water_SST_wetµatmYang, YanCalculated using seacarb after Nisumaa et al. (2010)
26Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)pCO2water_SST_wetµatmYang, YanCalculated using seacarb after Nisumaa et al. (2010)
27Bicarbonate ion[HCO3]-µmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
28Carbonate ion[CO3]2-µmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
29Carbon, inorganic, dissolvedDICµmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
30Aragonite saturation stateOmega ArgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
31Calcite saturation stateOmega CalYang, YanCalculated using seacarb after Nisumaa et al. (2010)
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
4692 data points

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