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Chatzinikolaou, Eva; Keklikoglou, Kleoniki; Grigoriou, Panos (2021): Seawater carbonate chemistry and shell density, structure thickness and porosity for Nassarius nitidus and Collumbela rustica. Study funded under the project ECCO (HFRI, ID 343) [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.938216

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Abstract:
The increased absorption of atmospheric CO2 by the ocean reduces pH and affects the carbonate chemistry of seawater, thus interfering with the shell formation processes of marine calcifiers. The present study aims to examine the effects of ocean acidification and warming on the shell morphological properties of two intertidal gastropod species, Nassarius nitidus and Columbella rustica. The experimental treatments lasted for 3 months and combined a temperature increase of 3°C and a pH reduction of 0.3 units. The selected treatments reflected the high emissions (RCP 8.5) “business as usual” scenario of the Intergovernmental Panel on Climate Change models for eastern Mediterranean. The morphological and architectural properties of the shell, such as density, thickness and porosity were examined using 3D micro-computed tomography, which is a technique giving the advantage of calculating values for the total shell (not only at specific points) and at the same time leaving the shells intact. Nassarius nitidus had a lower shell density and thickness and a higher porosity when the pH was reduced at ambient temperature, but the combination of reduced pH and increased temperature did not have a noticeable effect in comparison to the control. The shell of Columbella rustica was less dense, thinner and more porous under acidic and warm conditions, but when the temperature was increased under ambient pH the shells were thicker and denser than the control. Under low pH and ambient temperature, shells showed no differences compared to the control. The vulnerability of calcareous shells to ocean acidification and warming appears to be variable among species. Plasticity of shell building organisms as an acclimation action toward a continuously changing marine environment needs to be further investigated focusing on species or shell region specific adaptation mechanisms.
Keyword(s):
Animalia; Benthic animals; Benthos; Bottles or small containers/Aquaria (<20 L); Coast and continental shelf; Columbella rustica; Growth/Morphology; Laboratory experiment; Mediterranean Sea; Mollusca; Nassarius nitidus; Single species; Temperate; Temperature
Supplement to:
Chatzinikolaou, Eva; Keklikoglou, Kleoniki; Grigoriou, Panos (2021): Morphological Properties of Gastropod Shells in a Warmer and More Acidic Future Ocean Using 3D Micro-Computed Tomography. Frontiers in Marine Science, 8, https://doi.org/10.3389/fmars.2021.645660
Further details:
Gattuso, Jean-Pierre; Epitalon, Jean-Marie; Lavigne, Héloïse; Orr, James (2021): seacarb: seawater carbonate chemistry with R. R package version 3.2.16. https://cran.r-project.org/web/packages/seacarb/index.html
Coverage:
Median Latitude: 37.198190 * Median Longitude: 23.041350 * South-bound Latitude: 35.335000 * West-bound Longitude: 20.803900 * North-bound Latitude: 39.061380 * East-bound Longitude: 25.278800
Event(s):
Amvrakikos_Bay * Latitude: 39.061380 * Longitude: 20.803900 * Method/Device: Experiment (EXP)
Heraklion * Latitude: 35.335000 * Longitude: 25.278800
Comment:
In order to allow full comparability with other ocean acidification data sets, the R package seacarb (Gattuso et al, 2021) 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 2021-11-16. The study was funded under the project ECCO (HFRI, Hellenic Foundation for Research and Innovation for the support of Postdoctoral Researchers, project ID 343)
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Event labelEventChatzinikolaou, Eva
2TypeTypeChatzinikolaou, Evastudy
3SpeciesSpeciesChatzinikolaou, Eva
4Registration number of speciesReg spec noChatzinikolaou, Eva
5Uniform resource locator/link to referenceURL refChatzinikolaou, EvaWoRMS Aphia ID
6Experiment durationExp durationmonthsChatzinikolaou, Eva
7TreatmentTreatChatzinikolaou, Eva
8Structure thicknessStructure thickµmChatzinikolaou, Evamax
9Structure thicknessStructure thickµmChatzinikolaou, Evamin
10PercentagePerc%Chatzinikolaou, Evaaverage shell volume
11DensityDensityChatzinikolaou, Evagrey scale values
12Density, standard errorDensity std e±Chatzinikolaou, Eva
13Structure thicknessStructure thickµmChatzinikolaou, Eva
14Structure thickness, standard errorStructure thick std e±Chatzinikolaou, Eva
15Porosity, shellPoros%Chatzinikolaou, Eva
16Porosity, standard errorPoros std e±Chatzinikolaou, Eva
17SalinitySalChatzinikolaou, Eva
18Temperature, waterTemp°CChatzinikolaou, Eva
19Temperature, water, standard deviationTemp std dev±Chatzinikolaou, Eva
20pHpHChatzinikolaou, EvaPotentiometricNBS scale
21pH, standard deviationpH std dev±Chatzinikolaou, EvaPotentiometricNBS scale
22Alkalinity, totalATµmol/kgChatzinikolaou, EvaPotentiometric titration
23Alkalinity, total, standard deviationAT std dev±Chatzinikolaou, EvaPotentiometric titration
24Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)pCO2water_SST_wetµatmChatzinikolaou, EvaCalculated using CO2SYS
25Partial pressure of carbon dioxide, standard deviationpCO2 std dev±Chatzinikolaou, EvaCalculated using CO2SYS
26Carbon, inorganic, dissolvedDICµmol/kgChatzinikolaou, EvaCalculated using CO2SYS
27Carbon, inorganic, dissolved, standard deviationDIC std dev±Chatzinikolaou, EvaCalculated using CO2SYS
28Bicarbonate ion[HCO3]-µmol/kgChatzinikolaou, EvaCalculated using CO2SYS
29Bicarbonate ion, standard deviation[HCO3]- std dev±Chatzinikolaou, EvaCalculated using CO2SYS
30Carbonate ion[CO3]2-µmol/kgChatzinikolaou, EvaCalculated using CO2SYS
31Carbonate ion, standard deviation[CO3]2- std dev±Chatzinikolaou, EvaCalculated using CO2SYS
32Aragonite saturation stateOmega ArgChatzinikolaou, EvaCalculated using CO2SYS
33Aragonite saturation state, standard deviationOmega Arg std dev±Chatzinikolaou, EvaCalculated using CO2SYS
34Calcite saturation stateOmega CalChatzinikolaou, EvaCalculated using CO2SYS
35Calcite saturation state, standard deviationOmega Cal std dev±Chatzinikolaou, EvaCalculated using CO2SYS
36Carbonate system computation flagCSC flagYang, YanCalculated using seacarb after Nisumaa et al. (2010)
37pHpHYang, YanCalculated using seacarb after Nisumaa et al. (2010)total scale
38Carbon dioxideCO2µmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
39Fugacity of carbon dioxide (water) at sea surface temperature (wet air)fCO2water_SST_wetµatmYang, YanCalculated using seacarb after Nisumaa et al. (2010)
40Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)pCO2water_SST_wetµatmYang, YanCalculated using seacarb after Nisumaa et al. (2010)
41Bicarbonate ion[HCO3]-µmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
42Carbonate ion[CO3]2-µmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
43Carbon, inorganic, dissolvedDICµmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
44Aragonite saturation stateOmega ArgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
45Calcite saturation stateOmega CalYang, YanCalculated using seacarb after Nisumaa et al. (2010)
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
4728 data points

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