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Barcelos e Ramos, Joana; Schulz, Kai Georg; Brownlee, Colin; Sett, Scarlett; Azevedo, Eduardo Brito (2014): Effects of increasing seawater carbon dioxide concentrations on chain formation of the diatom Asterionellopsis glacialis [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.836367, Supplement to: Barcelos e Ramos, J et al. (2014): Effects of Increasing Seawater Carbon Dioxide Concentrations on Chain Formation of the Diatom Asterionellopsis glacialis. PLoS ONE, 9(3), e90749, https://doi.org/10.1371/journal.pone.0090749

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Abstract:
Diatoms can occur as single cells or as chain-forming aggregates. These two strategies affect buoyancy, predator evasion, light absorption and nutrient uptake. Adjacent cells in chains establish connections through various processes that determine strength and flexibility of the bonds, and at distinct cellular locations defining colony structure. Chain length has been found to vary with temperature and nutrient availability as well as being positively correlated with growth rate. However, the potential effect of enhanced carbon dioxide (CO2) concentrations and consequent changes in seawater carbonate chemistry on chain formation is virtually unknown. Here we report on experiments with semi-continuous cultures of the freshly isolated diatom Asterionellopsis glacialis grown under increasing CO2 levels ranging from 320 to 3400 µatm. We show that the number of cells comprising a chain, and therefore chain length, increases with rising CO2 concentrations. We also demonstrate that while cell division rate changes with CO2 concentrations, carbon, nitrogen and phosphorus cellular quotas vary proportionally, evident by unchanged organic matter ratios. Finally, beyond the optimum CO2 concentration for growth, carbon allocation changes from cellular storage to increased exudation of dissolved organic carbon. The observed structural adjustment in colony size could enable growth at high CO2 levels, since longer, spiral-shaped chains are likely to create microclimates with higher pH during the light period. Moreover increased chain length of Asterionellopsis glacialis may influence buoyancy and, consequently, affect competitive fitness as well as sinking rates. This would potentially impact the delicate balance between the microbial loop and export of organic matter, with consequences for atmospheric carbon dioxide.
Keyword(s):
Asterionellopsis glacialis; Biomass/Abundance/Elemental composition; Bottles or small containers/Aquaria (<20 L); Chromista; Growth/Morphology; Laboratory experiment; North Atlantic; Ochrophyta; Open ocean; Other metabolic rates; Pelagos; Phytoplankton; Single species; Temperate
Further details:
Lavigne, Héloïse; Epitalon, Jean-Marie; Gattuso, Jean-Pierre (2014): seacarb: seawater carbonate chemistry with R. R package version 3.0. https://cran.r-project.org/package=seacarb
Comment:
In order to allow full comparability with other ocean acidification data sets, the R package seacarb (Lavigne et al, 2014) 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 is 2014-09-30.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
SpeciesSpeciesBarcelos e Ramos, Joana
Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)pCO2water_SST_wetµatmBarcelos e Ramos, Joana
PercentagePerc%Barcelos e Ramos, Joanarelative number of cells per chain, 1 to 6 cells in one chain
PercentagePerc%Barcelos e Ramos, Joanarelative number of cells per chain, 7 to 12 cells in one chain
PercentagePerc%Barcelos e Ramos, Joanarelative number of cells per chain, 13 to 18 cells in one chain
PercentagePerc%Barcelos e Ramos, Joanarelative number of cells per chain, more than 19 cells in one chain
Growth rateµ1/dayBarcelos e Ramos, Joanabased on cell numbers
Growth rateµ1/dayBarcelos e Ramos, Joanabased on POP
Growth rateµ1/dayBarcelos e Ramos, Joanabased on PON
10 Growth rateµ1/dayBarcelos e Ramos, Joanabased on POC
11 Particulate organic phosphorus per cellPOP/cellpmol/#Barcelos e Ramos, Joana
12 Particulate organic carbon, per cellPOC/cellpmol/#Barcelos e Ramos, Joana
13 Particulate organic nitrogen per cellPON/cellpmol/#Barcelos e Ramos, Joana
14 Particulate organic phosphorus production per cellPOP prod/cellpmol/#/dayBarcelos e Ramos, Joana
15 Particulate organic carbon production per cellPOC prod/cellpg/#/dayBarcelos e Ramos, Joana
16 Production of particulate organic nitrogenPON prodpg/#/dayBarcelos e Ramos, Joana
17 Carbon/Nitrogen ratioC/NBarcelos e Ramos, Joana
18 Carbon/Phosphorus ratioC/PBarcelos e Ramos, Joana
19 Nitrogen/Phosphorus ratioN/PBarcelos e Ramos, Joana
20 Carbon, organic, dissolved exudation, per cellDOC exud/cellpmol/#Barcelos e Ramos, Joana
21 Alkalinity, totalATµmol/kgBarcelos e Ramos, JoanaPotentiometric titration
22 pHpHBarcelos e Ramos, JoanaPotentiometrictotal scale
23 Bicarbonate ion[HCO3]-µmol/kgBarcelos e Ramos, JoanaCalculated using CO2SYS
24 Carbonate ion[CO3]2-µmol/kgBarcelos e Ramos, JoanaCalculated using CO2SYS
25 Carbon dioxideCO2µmol/kgBarcelos e Ramos, JoanaCalculated using CO2SYS
26 Carbon, inorganic, dissolvedDICµmol/kgBarcelos e Ramos, JoanaCalculated using CO2SYS
27 Temperature, waterTemp°CBarcelos e Ramos, Joana
28 SalinitySalBarcelos e Ramos, Joana
29 Carbonate system computation flagCSC flagNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
30 Carbon dioxideCO2µmol/kgNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
31 Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)pCO2water_SST_wetµatmNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
32 Fugacity of carbon dioxide (water) at sea surface temperature (wet air)fCO2water_SST_wetµatmNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
33 Bicarbonate ion[HCO3]-µmol/kgNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
34 Carbonate ion[CO3]2-µmol/kgNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
35 Carbon, inorganic, dissolvedDICµmol/kgNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
36 Aragonite saturation stateOmega ArgNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
37 Calcite saturation stateOmega CalNisumaa, Anne-MarinCalculated using seacarb after Nisumaa et al. (2010)
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
616 data points

Data

Download dataset as tab-delimited text — use the following character encoding:


Species

pCO2water_SST_wet [µatm]

Perc [%]
(relative number of cells per ...)

Perc [%]
(relative number of cells per ...)

Perc [%]
(relative number of cells per ...)

Perc [%]
(relative number of cells per ...)

µ [1/day]
(based on cell numbers)

µ [1/day]
(based on POP)

µ [1/day]
(based on PON)
10 
µ [1/day]
(based on POC)
11 
POP/cell [pmol/#]
12 
POC/cell [pmol/#]
13 
PON/cell [pmol/#]
14 
POP prod/cell [pmol/#/day]
15 
POC prod/cell [pg/#/day]
16 
PON prod [pg/#/day]
17 
C/N
18 
C/P
19 
N/P
20 
DOC exud/cell [pmol/#]
21 
AT [µmol/kg]
(Potentiometric titration)
22 
pH
(total scale, Potentiometric)
23 
[HCO3]- [µmol/kg]
(Calculated using CO2SYS)
24 
[CO3]2- [µmol/kg]
(Calculated using CO2SYS)
25 
CO2 [µmol/kg]
(Calculated using CO2SYS)
26 
DIC [µmol/kg]
(Calculated using CO2SYS)
27 
Temp [°C]
28 
Sal
29 
CSC flag
(Calculated using seacarb afte...)
30 
CO2 [µmol/kg]
(Calculated using seacarb afte...)
31 
pCO2water_SST_wet [µatm]
(Calculated using seacarb afte...)
32 
fCO2water_SST_wet [µatm]
(Calculated using seacarb afte...)
33 
[HCO3]- [µmol/kg]
(Calculated using seacarb afte...)
34 
[CO3]2- [µmol/kg]
(Calculated using seacarb afte...)
35 
DIC [µmol/kg]
(Calculated using seacarb afte...)
36 
Omega Arg
(Calculated using seacarb afte...)
37 
Omega Cal
(Calculated using seacarb afte...)
Asterionellopsis glacialis (phytoplankton)320.98710302.763.023.012.990.1407.461.51000000011.49237.9556.235.4258.7010.82-0.6223978.27016782896.91973.72203687.00217.88217.151686.85288.651982.504.466.85
Asterionellopsis glacialis (phytoplankton)372.77418622.322.512.232.240.0482.650.5311948443.4373.5817.245.7263.5511.1223028.121176121510.31986.712036810.35322.13321.061769.67214.881994.893.325.10
Asterionellopsis glacialis (phytoplankton)377.2946002.192.462.202.250.0553.450.6445617473.7490.9719.816.1471.8311.71-0.7223858.125182522510.62059.962036810.62330.52329.411832.54224.572067.723.475.33
Asterionellopsis glacialis (phytoplankton)378.2935102.172.542.202.190.0733.320.7019244834.8986.4821.305.5453.419.641.0423658.120181422110.62045.792036810.68332.30331.191821.32220.642052.643.415.23
Asterionellopsis glacialis (phytoplankton)557.68711202.952.992.983.000.0713.460.7129485266.44122.3329.405.3253.6610.09-0.1623928.126183122610.62068.192036810.62330.60329.491837.18225.662073.453.485.35
Asterionellopsis glacialis (phytoplankton)557.8916212.982.942.982.990.0553.250.6503554735.06116.3927.175.4564.7611.88-0.1923868.125182722510.62062.942036810.62330.67329.561833.34224.672068.633.475.33
Asterionellopsis glacialis (phytoplankton)668.02.532.132.165.6957.7410.1523707.936197715817.72151.832036817.75552.68550.831983.02157.262158.042.433.73
Asterionellopsis glacialis (phytoplankton)673.97917402.122.522.132.140.0623.100.6508132524.0878.7419.315.4056.5710.480.2723667.927197815518.02150.592036818.16565.17563.271986.23154.292158.682.383.66
Asterionellopsis glacialis (phytoplankton)686.8918102.062.492.062.090.0673.150.6467089094.2577.8018.615.6154.379.70-0.2523707.911199415018.92162.752036818.98590.83588.862001.33149.842170.152.313.56
Asterionellopsis glacialis (phytoplankton)1261.67419612.982.912.952.790.0783.590.7984871507.22128.4133.335.2853.9310.210.7623697.787207511726.22218.752036826.26817.36814.622080.98117.102224.341.812.78
Asterionellopsis glacialis (phytoplankton)1282.163281002.892.902.952.950.0794.170.8449963717.22148.2335.055.7261.4310.740.1123687.767208511327.52225.042036827.63860.23857.352091.54112.402231.571.742.67
Asterionellopsis glacialis (phytoplankton)1447.49010001.782.461.981.980.0964.140.8897459255.3288.5322.205.6452.129.232.7323577.63721418638.12264.522036838.261190.941186.952146.5685.512270.331.322.03
Asterionellopsis glacialis (phytoplankton)1449.7919001.752.361.961.950.0834.200.9126521554.5188.1422.375.6361.7110.963.5623537.63521388538.32261.762036838.381194.861190.862143.7485.012267.131.312.02
Asterionellopsis glacialis (phytoplankton)1474.8937001.852.301.911.920.0613.180.6792455523.4870.4517.585.8264.9211.160.9323677.62121578339.92279.912036839.991244.991240.822162.8183.052285.851.281.97
Asterionellopsis glacialis (phytoplankton)3344.66630401.031.181.041.020.0573.530.6772335101.8043.569.765.6968.1411.982.1423607.41522245365.92343.592036866.242061.892054.992229.0553.262348.550.821.26
Asterionellopsis glacialis (phytoplankton)3354.56925601.021.211.051.030.0663.850.7426565322.0947.0110.575.6563.1911.182.0923597.41122245366.62343.962036866.862081.142074.172229.2352.782348.860.811.25
Asterionellopsis glacialis (phytoplankton)3391.055311310.991.191.031.010.0693.880.7661070912.1246.2910.665.5661.7811.112.3623607.39722295168.92348.802036869.202154.002146.792234.0951.212354.500.791.22