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Coad, Thomas; McMinn, Andrew; Nomura, Daiki; Martin, Andrew (2016): Seawater carbonate chemistry and maximum quantum yield and relative electron transfer rate of microalgal communities in Antarctic pack ice [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.933802

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Abstract:
Increased anthropogenic CO2 emissions are causing changes to oceanic pH and CO2 concentrations that will impact many marine organisms, including microalgae. Phytoplankton taxa have shown mixed responses to these changes with some doing well while others have been adversely affected. Here, the photosynthetic response of sea-ice algal communities from Antarctic pack ice (brine and infiltration microbial communities) to a range of CO2 concentrations (400 ppm to 11,000 ppm in brine algae experiments, 400 ppm to 20,000 ppm in the infiltration ice algae experiment) was investigated. Incubations were conducted as part of the Sea-Ice Physics and Ecosystem Experiment II (SIPEX-2) voyage, in the austral spring (September–November), 2012. In the brine incubations, maximum quantum yield (Fv/Fm) and relative electron transfer rate (rETRmax) were highest at ambient and 0.049% (experiment 1) and 0.19% (experiment 2) CO2 concentrations, although, Fv/Fm was consistently between 0.53±0.10–0.68±0.01 across all treatments in both experiments. Highest rETRmax was exhibited by brine cultures exposed to ambient CO2 concentrations (60.15).
In a third experiment infiltration ice algal communities were allowed to melt into seawater modified to simulate the changed pH and CO2 concentrations of future springtime ice-edge conditions. Ambient and 0.1% CO2 treatments had the highest growth rates and Fv/Fm values but only the highest CO2 concentration produced a significantly lower rETRmax.
These experiments, conducted on natural Antarctic sea-ice algal communities, indicate a strong level of tolerance to elevated CO2 concentrations and suggest that these communities might not be adversely affected by predicted changes in CO2 concentration over the next century.
Keyword(s):
Antarctic; Bottles or small containers/Aquaria (<20 L); Entire community; Laboratory experiment; Open ocean; Pelagos; Polar; Primary production/Photosynthesis
Supplement to:
Coad, Thomas; McMinn, Andrew; Nomura, Daiki; Martin, Andrew (2016): Effect of elevated CO 2 concentration on microalgal communities in Antarctic pack ice. Deep Sea Research Part II: Topical Studies in Oceanography, 131, 160-169, https://doi.org/10.1016/j.dsr2.2016.01.005
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: -65.019080 * Median Longitude: 118.899293 * South-bound Latitude: -65.256320 * West-bound Longitude: 115.982500 * North-bound Latitude: -64.720920 * East-bound Longitude: 121.667380
Date/Time Start: 2012-09-01T00:00:00 * Date/Time End: 2012-11-30T00:00:00
Event(s):
SIPEX-2_station__4 * Latitude: -65.080000 * Longitude: 121.667380 * Date/Time Start: 2012-09-01T00:00:00 * Date/Time End: 2012-11-30T00:00:00 * Method/Device: Experiment (EXP)
SIPEX-2_station__7 * Latitude: -65.256320 * Longitude: 119.048000 * Date/Time Start: 2012-09-01T00:00:00 * Date/Time End: 2012-11-30T00:00:00 * Method/Device: Experiment (EXP)
SIPEX-2_station__8 * Latitude: -64.720920 * Longitude: 115.982500 * Date/Time Start: 2012-09-01T00:00:00 * Date/Time End: 2012-11-30T00:00:00 * Method/Device: Experiment (EXP)
Comment:
In order to allow full comparability with other ocean acidification data sets, the R package seacarb (Gattuso et al, 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 2021-07-15.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Event labelEventMcMinn, Andrew
2TypeTypeMcMinn, Andrewstudy
3ExperimentExpMcMinn, Andrew
4Station labelStationMcMinn, Andrew
5TreatmentTreatMcMinn, Andrew
6Chlorophyll aChl aµg/lMcMinn, Andrew
7Maximum quantum yield of photosystem IIFv/FmMcMinn, Andrew
8Maximal electron transport rate, relativerETR maxMcMinn, Andrew
9Photosynthetic quantum efficiencyalphaMcMinn, Andrew
10Light saturationEkµmol/m2/sMcMinn, Andrew
11Incubation durationInc durdaysMcMinn, Andrew
12Incubation durationInc durhMcMinn, Andrew
13CommentCommentMcMinn, Andrew
14SalinitySalMcMinn, Andrew
15pHpHMcMinn, Andrew
16Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)pCO2water_SST_wetµatmMcMinn, Andrew
17Carbon, inorganic, dissolvedDICµmol/lMcMinn, Andrew
18Alkalinity, totalATµmol/lMcMinn, Andrew
19Temperature, waterTemp°CMcMinn, Andrew
20Carbon, inorganic, dissolvedDICµmol/kgMcMinn, Andrew
21Alkalinity, totalATµmol/kgMcMinn, Andrew
22Carbonate system computation flagCSC flagYang, YanCalculated using seacarb after Nisumaa et al. (2010)
23pHpHYang, YanCalculated using seacarb after Nisumaa et al. (2010)total scale
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)
29Aragonite saturation stateOmega ArgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
30Calcite saturation stateOmega CalYang, YanCalculated using seacarb after Nisumaa et al. (2010)
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
3631 data points

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