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Shi, Dalin; Li, Weiying; Hopkinson, Brian M; Hong, Haizheng; Li, Dongmei; Kao, Shuh-Ji; Lin, Wenfang (2015): Interactive effects of light, nitrogen source, and carbon dioxide on energy metabolism in the diatom Thalassiosira pseudonana [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.860217, Supplement to: Shi, D et al. (2015): Interactive effects of light, nitrogen source, and carbon dioxide on energy metabolism in the diatom Thalassiosira pseudonana. Limnology and Oceanography, 60(5), 1805-1822, https://doi.org/10.1002/lno.10134

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Abstract:
Due to the ongoing effects of climate change, phytoplankton are likely to experience enhanced irradiance, more reduced nitrogen, and increased water acidity in the future ocean. Here, we used Thalassiosira pseudonana as a model organism to examine how phytoplankton adjust energy production and expenditure to cope with these multiple, interrelated environmental factors. Following acclimation to a matrix of irradiance, nitrogen source, and CO2 levels, the diatom's energy production and expenditures were quantified and incorporated into an energetic budget to predict how photosynthesis was affected by growth conditions. Increased light intensity and a shift from inline image to inline image led to increased energy generation, through higher rates of light capture at high light and greater investment in photosynthetic proteins when grown on inline image. Secondary energetic expenditures were adjusted modestly at different culture conditions, except that inline image utilization was systematically reduced by increasing pCO2. The subsequent changes in element stoichiometry, biochemical composition, and release of dissolved organic compounds may have important implications for marine biogeochemical cycles. The predicted effects of changing environmental conditions on photosynthesis, made using an energetic budget, were in good agreement with observations at low light, when energy is clearly limiting, but the energetic budget over-predicts the response to inline image at high light, which might be due to relief of energetic limitations and/or increased percentage of inactive photosystem II at high light. Taken together, our study demonstrates that energetic budgets offered significant insight into the response of phytoplankton energy metabolism to the changing environment and did a reasonable job predicting them.
Keyword(s):
Biomass/Abundance/Elemental composition; Bottles or small containers/Aquaria (<20 L); Chromista; Gene expression (incl. proteomics); Growth/Morphology; Laboratory experiment; Laboratory strains; Light; Macro-nutrients; North Pacific; Ochrophyta; Other metabolic rates; Pelagos; Phytoplankton; Primary production/Photosynthesis; Single species; Thalassiosira pseudonana
Further details:
Gattuso, Jean-Pierre; Epitalon, Jean-Marie; Lavigne, Héloïse (2015): seacarb: seawater carbonate chemistry with R. R package version 3.0.8. https://cran.r-project.org/package=seacarb
Comment:
In order to allow full comparability with other ocean acidification data sets, the R package seacarb (Gattuso et al, 2015) 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 2016-05-05.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
TypeTypeShi, Dalinstudy
SpeciesSpeciesShi, Dalin
Registration number of speciesReg spec noShi, Dalin
Uniform resource locator/link to referenceURL refShi, DalinWoRMS Aphia ID
Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)pCO2water_SST_wetµatmShi, Dalintreatment
TreatmentTreatShi, Dalinfour conditions representing a matrix of nitrogen source (nitrate or ammonium) and light intensity (low light or high light)
Growth rateµ1/dayShi, Dalin
Growth rate, standard deviationµ std dev±Shi, Dalin
Carbon, organic, particulate, per cellPOC/cellpmol/#Shi, Dalin
10 Particulate organic carbon content per cell, standard deviationPOC cont/cell std dev±Shi, Dalin
11 Particulate organic nitrogen per cellPON/cellpmol/#Shi, Dalin
12 Particulate organic nitrogen per cell, standard deviationPON/cell std dev±Shi, Dalin
13 Carbon/Nitrogen ratioC/NShi, Dalin
14 Carbon/Nitrogen ratio, standard deviationC/N std dev±Shi, Dalin
15 Carbon uptake rateC uptpmol/#/dayShi, Dalinsteady state net C uptake rate
16 Carbon uptake rate, standard deviationC upt rate std dev±Shi, Dalinsteady state net C uptake rate
17 Nitrogen uptake rateN uptpmol/#/dayShi, Dalinsteady state net N uptake rate
18 Nitrogen uptake rate, standard deviationN upt std dev±Shi, Dalinsteady state net N uptake rate
19 Nitrogen uptake rateN uptpmol/#/dayShi, Dalinshort-term N uptake rate
20 Nitrogen uptake rate, standard deviationN upt std dev±Shi, Dalinshort-term N uptake rate
21 Nitrate reductase activityNO3 reduct actfmol/#/hShi, Dalin
22 Nitrate reductase activity, standard deviationNO3 reduct act std dev±Shi, Dalin
23 mRNA gene expression, relativemRNA expressShi, Dalinrelative NR expression
24 mRNA gene expression, relative, standard deviationmRNA express std dev±Shi, Dalinrelative NR expression
25 Protein per cellProtein/cellpg/#Shi, Dalin
26 Proteins, standard deviationProtein std dev±Shi, Dalin
27 Fatty acid contentFA conpg/#Shi, Dalin
28 Fatty acids, standard deviationFA std dev±Shi, Dalin
29 beta-1,3 Gluan, cellularb-1,3 Gluanpg/#Shi, Dalin
30 beta-1,3 Gluan, cellular, standard deviationb-1,3 Gluan std dev±Shi, Dalin
31 mRNA copy numbers ratiomRNA copy noShi, DalinNR/actin
32 mRNA copy numbers ratio, standard deviationmRNA copy no std dev±Shi, DalinNR/actin
33 mRNA copy numbers ratiomRNA copy noShi, DalinCA/actin
34 mRNA copy numbers ratio, standard deviationmRNA copy no std dev±Shi, DalinCA/actin
35 mRNA copy numbers ratiomRNA copy noShi, DalinSBP/actin
36 mRNA copy numbers ratio, standard deviationmRNA copy no std dev±Shi, DalinSBP/actin
37 mRNA copy numbers ratiomRNA copy noShi, DalinPGP/actin
38 mRNA copy numbers ratio, standard deviationmRNA copy no std dev±Shi, DalinPGP/actin
39 mRNA copy numbers ratiomRNA copy noShi, DalinGDCT/actin
40 mRNA copy numbers ratio, standard deviationmRNA copy no std dev±Shi, DalinGDCT/actin
41 Glycolic acid per cellGlycolic acid/cellfmol/#Shi, Dalin
42 Glycolic acid, standard deviationGlycolic acid std dev±Shi, Dalin
43 PsbA expression per cellPsbA expression/cellamol/#Shi, Dalin
44 PsbA expression, standard deviationPsbA expression std dev±Shi, Dalin
45 Maximum photochemical quantum yield of photosystem IIFv/FmShi, Dalin
46 Maximum photochemical quantum yield of photosystem II, standard deviationFv/Fm std dev±Shi, Dalin
47 Photochemical quenchingqPShi, Dalin
48 Photochemical quenching, standard deviationqP std dev±Shi, Dalin
49 Non photochemical quenchingNPQShi, Dalin
50 Non photochemical quenching, standard deviationNPQ std dev±Shi, Dalin
51 Maximal electron transport rate, relativerETR maxShi, Dalinat the saturating irradiance
52 Maximal electron transport rate, relative, standard deviationrETR max std dev±Shi, Dalinat the saturating irradiance
53 Electron transport rate, relativerETRµmol e/m2/sShi, Dalinat the growth irradiance
54 Electron transport rate, relative, standard deviationrETR std dev±Shi, Dalinat the growth irradiance
55 SalinitySalShi, Dalin
56 Temperature, waterTemp°CShi, Dalin
57 Temperature, water, standard deviationTemp std dev±Shi, Dalin
58 IrradianceEµmol/m2/sShi, Dalin
59 pHpHShi, DalinSpectrophotometrictotal scale
60 pH, standard deviationpH std dev±Shi, DalinSpectrophotometrictotal scale
61 Carbon, inorganic, dissolvedDICµmol/kgShi, Dalin
62 Carbon, inorganic, dissolved, standard deviationDIC std dev±Shi, Dalin
63 Alkalinity, totalATµmol/kgShi, DalinCalculated using CO2SYS
64 Alkalinity, total, standard deviationAT std dev±Shi, DalinCalculated using CO2SYS
65 Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)pCO2water_SST_wetµatmShi, DalinCalculated using CO2SYS
66 Partial pressure of carbon dioxide, standard deviationpCO2 std dev±Shi, DalinCalculated using CO2SYS
67 Carbonate system computation flagCSC flagYang, YanCalculated using seacarb after Nisumaa et al. (2010)
68 Carbon dioxideCO2µmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
69 Fugacity of carbon dioxide (water) at sea surface temperature (wet air)fCO2water_SST_wetµatmYang, YanCalculated using seacarb after Nisumaa et al. (2010)
70 Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)pCO2water_SST_wetµatmYang, YanCalculated using seacarb after Nisumaa et al. (2010)
71 Bicarbonate ion[HCO3]-µmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
72 Carbonate ion[CO3]2-µmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
73 Alkalinity, totalATµmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
74 Aragonite saturation stateOmega ArgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
75 Calcite saturation stateOmega CalYang, YanCalculated using seacarb after Nisumaa et al. (2010)
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
552 data points

Data

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


Type
(study)

Species

Reg spec no

URL ref
(WoRMS Aphia ID)

pCO2water_SST_wet [µatm]
(treatment)

Treat
(four conditions representing ...)

µ [1/day]

µ std dev [±]

POC/cell [pmol/#]
10 
POC cont/cell std dev [±]
11 
PON/cell [pmol/#]
12 
PON/cell std dev [±]
13 
C/N
14 
C/N std dev [±]
15 
C upt [pmol/#/day]
(steady state net C uptake rate)
16 
C upt rate std dev [±]
(steady state net C uptake rate)
17 
N upt [pmol/#/day]
(steady state net N uptake rate)
18 
N upt std dev [±]
(steady state net N uptake rate)
19 
N upt [pmol/#/day]
(short-term N uptake rate)
20 
N upt std dev [±]
(short-term N uptake rate)
21 
NO3 reduct act [fmol/#/h]
22 
NO3 reduct act std dev [±]
23 
mRNA express
(relative NR expression)
24 
mRNA express std dev [±]
(relative NR expression)
25 
Protein/cell [pg/#]
26 
Protein std dev [±]
27 
FA con [pg/#]
28 
FA std dev [±]
29 
b-1,3 Gluan [pg/#]
30 
b-1,3 Gluan std dev [±]
31 
mRNA copy no
(NR/actin)
32 
mRNA copy no std dev [±]
(NR/actin)
33 
mRNA copy no
(CA/actin)
34 
mRNA copy no std dev [±]
(CA/actin)
35 
mRNA copy no
(SBP/actin)
36 
mRNA copy no std dev [±]
(SBP/actin)
37 
mRNA copy no
(PGP/actin)
38 
mRNA copy no std dev [±]
(PGP/actin)
39 
mRNA copy no
(GDCT/actin)
40 
mRNA copy no std dev [±]
(GDCT/actin)
41 
Glycolic acid/cell [fmol/#]
42 
Glycolic acid std dev [±]
43 
PsbA expression/cell [amol/#]
44 
PsbA expression std dev [±]
45 
Fv/Fm
46 
Fv/Fm std dev [±]
47 
qP
48 
qP std dev [±]
49 
NPQ
50 
NPQ std dev [±]
51 
rETR max
(at the saturating irradiance)
52 
rETR max std dev [±]
(at the saturating irradiance)
53 
rETR [µmol e/m2/s]
(at the growth irradiance)
54 
rETR std dev [±]
(at the growth irradiance)
55 
Sal
56 
Temp [°C]
57 
Temp std dev [±]
58 
E [µmol/m2/s]
59 
pH
(total scale, Spectrophotometric)
60 
pH std dev [±]
(total scale, Spectrophotometric)
61 
DIC [µmol/kg]
62 
DIC std dev [±]
63 
AT [µmol/kg]
(Calculated using CO2SYS)
64 
AT std dev [±]
(Calculated using CO2SYS)
65 
pCO2water_SST_wet [µatm]
(Calculated using CO2SYS)
66 
pCO2 std dev [±]
(Calculated using CO2SYS)
67 
CSC flag
(Calculated using seacarb afte...)
68 
CO2 [µmol/kg]
(Calculated using seacarb afte...)
69 
fCO2water_SST_wet [µatm]
(Calculated using seacarb afte...)
70 
pCO2water_SST_wet [µatm]
(Calculated using seacarb afte...)
71 
[HCO3]- [µmol/kg]
(Calculated using seacarb afte...)
72 
[CO3]2- [µmol/kg]
(Calculated using seacarb afte...)
73 
AT [µmol/kg]
(Calculated using seacarb afte...)
74 
Omega Arg
(Calculated using seacarb afte...)
75 
Omega Cal
(Calculated using seacarb afte...)
laboratoryThalassiosira pseudonana (phytoplankton)148934marinespecies.org400LLNO3-1.000.040.650.010.080.008.000.130.640.030.090.000.090.006.271.570.580.005.620.651.900.033.270.160.190.050.230.010.870.070.690.000.910.010.050.01146.20.68.70.535200.5308.030.01240062695248410915.80487.69489.352174.84209.352677.133.265.01
laboratoryThalassiosira pseudonana (phytoplankton)148934marinespecies.org400LLNH4+1.440.020.720.020.090.017.060.271.030.020.110.010.060.005.621.052.060.162.240.360.010.000.160.011.290.080.700.010.890.020.070.01141.83.08.90.635200.5308.030.022384142674248921915.70484.44486.092160.34207.962659.843.234.97
laboratoryThalassiosira pseudonana (phytoplankton)148934marinespecies.org400HLNO3-2.050.100.870.020.080.009.640.081.780.060.160.010.140.009.910.561.110.026.430.642.100.077.060.110.210.040.110.030.030.000.0100.0100.970.130.470.060.670.010.720.030.180.06133.019.147.92.935200.52508.060.0023628266994492914.43445.35446.872128.07219.502655.483.415.25
laboratoryThalassiosira pseudonana (phytoplankton)148934marinespecies.org400HLNH4+2.220.031.110.020.140.006.870.012.480.020.310.000.330.029.000.592.510.075.810.030.010.000.030.010.040.000.0200.0201.300.141.070.070.700.020.630.020.290.05103.93.242.43.435200.52508.060.0123533266014489914.38443.65445.162119.96218.672645.703.405.23
laboratoryThalassiosira pseudonana (phytoplankton)148934marinespecies.org800LLNO3-1.040.090.640.010.070.009.480.060.650.020.060.000.070.005.231.760.470.054.271.251.860.033.350.450.170.040.210.020.790.060.680.000.900.010.040.02123.35.48.60.235200.5307.830.0025274271368381927.14837.58840.432356.72143.142699.532.233.42
laboratoryThalassiosira pseudonana (phytoplankton)148934marinespecies.org800LLNH4+1.450.050.770.020.090.007.360.171.110.040.110.010.060.015.950.752.230.302.890.400.010.000.010.001.240.060.690.010.900.000.040.01122.13.28.80.435200.5307.820.0025304271048671927.84858.99861.922361.97140.192697.762.183.35
laboratoryThalassiosira pseudonana (phytoplankton)148934marinespecies.org800HLNO3-2.090.010.860.030.070.0010.380.201.810.140.150.010.100.017.110.470.930.035.180.462.190.108.390.400.160.030.080.010.030.010.0100.0100.770.200.520.040.660.000.750.010.120.04158.07.447.81.235200.52507.840.012482562674487974926.03803.07805.812312.26143.712657.372.233.44
laboratoryThalassiosira pseudonana (phytoplankton)148934marinespecies.org800HLNH4+2.290.021.090.040.130.017.230.402.520.090.300.010.340.019.410.432.750.036.190.000.010.000.010.000.040.000.0200.0101.030.111.020.140.690.010.680.010.200.03116.35.544.34.735200.52507.840.0024638265787793925.83796.92799.642294.56142.612637.472.223.41