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Elovaara, Samu; Eronen-Rasimus, Eeva; Asmala, Eero; Tamelander, Tobias; Kaartokallio, Hermanni (2021): Phytoplankton and bacteria incubations in part 2 (dissolved organic matter consumption) of the microcosm experiment, Gulf of Finland, Baltic Sea [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.937741, In: Elovaara, S et al. (2021): Phytoplankton and bacterial production, 14C-transfer and optical characteristics of dissolved organic matter (DOM) from a microcosm experiment, Gulf of Finland, Baltic Sea [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.937723

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Published: 2021-11-02DOI registered: 2022-01-12

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Abstract:
The data were collected from an experiment using phytoplankton cultures (Apocalathium malmogiense and Rhodomonas marina). The aim of the experiment was to study carbon cycling among phytoplankton and bacteria, and the effects on the dissolved organic matter (DOM) pool. Measured variables include phytoplankton and bacterial abundance, primary production, bacterial production and respiration, 14C-transfer from phytoplankton to DOM and bacteria, concentrations of particulate and dissolved organic carbon, nitrate, phosphate and chlorophyll a, and optical characteristics of dissolved organic matter. The experiment was conducted at Tvärminne Zoological Station, Hanko, Finland with non-axenic unialgal phytoplankton cultures and bacteria originating from the Baltic Sea. The experiment was conducted between Dec. 2017 and Apr. 2018. The experiment consisted of two parts, the DOM release experiment (part 1) and the DOM consumption experiment (part 2). Separate triplicate batch cultures of both phytoplankton species were grown for each experiment. In the DOM release experiment the cultures were grown for over 4 months and three day-long incubations (key point incubations, KPI's) were initiated on three occasions; the first KPI at early exponential growth phase and the second and third KPI's when the phytoplankton had grown more abundant. During each KPI and aliquot of the culture was inoculated with freshly collected sea water bacteria, and bacterial community composition was measured. This aliquot was then divided into two further aliquots; one was incubated with radioisotopes for productivity (primary and bacterial production) and 14C-flow analyses (production line) and one filtered through 0.8 µm for analysis of DOM optical properties. During the KPI's measurements were taken at 0, 4, 8 and 12 h. Nutrient concentrations (measured from non-filtered and 0.8 µm filtered samples) and concentration of dissolved organic carbon were measured only at 0 and 12 h. Concentrations of particulate organic carbon and nitrogen and chlorophyll a were measured only once for each KPI at the beginning of the incubation. In the DOM consumption experiments the cultures were grown to high abundance, after which the phytoplankton and most of the bacteria were filtered out. The filtrate was then inoculated with freshly collected sea water bacteria, after which it was incubated for 7 days. Bacterial abundance, production, respiration, and community composition, and concentration and optical properties of DOM were measured daily. The experimental design is explained in figure 1 of the associated publication.
This data table contains measurements collected during the 7-day incubation of part 2 of the experiment (DOM consumption experiment). The measured variables are concentrations of nitrate, phosphate and dissolved organic carbon, incorporation rates of 3H-thymidine and 14C-leucine and bacterial production calculated based on these, abundance of high and low nucleic acid and total bacteria, flow cytometric side scatter of high and low nucleic acid bacteria, optical properties of DOM, and bacterial respiration rate. Daily respiration rate is calculated from continues oxygen measurement using optodes as explained in the associated publication.
Keyword(s):
14C; Bacteria; bacterial production; Baltic Sea; CDOM; DOM; FDOM; Laboratory experiment; Laboratory strains; Phytoplankton; Primary production
Supplement to:
Elovaara, Samu; Eronen-Rasimus, Eeva; Asmala, Eero; Tamelander, Tobias; Kaartokallio, Hermanni (2021): Contrasting patterns of carbon cycling and dissolved organic matter processing in two phytoplankton–bacteria communities. Biogeosciences, 18(24), 6589-6616, https://doi.org/10.5194/bg-18-6589-2021
Coverage:
Latitude: 59.844966 * Longitude: 23.249642
Date/Time Start: 2018-03-07T00:00:00 * Date/Time End: 2018-04-11T00:00:00
Event(s):
TZS_007_2018  * Latitude: 59.844966 * Longitude: 23.249642 * Date/Time: 2018-04-03T00:00:00 * Location: Tvärminne Zoological Station, Finnland * Method/Device: Bucket water sampling (BUCKET) * Comment: Collection site of sea water bacteria. Apocalathium, DOM consumption experiment.
TZS_008_2018  * Latitude: 59.844966 * Longitude: 23.249642 * Date/Time: 2018-03-05T00:00:00 * Location: Tvärminne Zoological Station, Finnland * Method/Device: Bucket water sampling (BUCKET) * Comment: Collection site of sea water bacteria. Rhodomonas, DOM consumption experiment.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Event labelEventElovaara, Samu
IdentificationIDElovaara, SamuEvent2
Type of studyStudy typeElovaara, Samu
Temperature, waterTemp°CElovaara, Samu
SpeciesSpeciesElovaara, SamuFlow cytometry Accuri C6
Uniform resource locator/link to referenceURL refElovaara, SamuWoRMS AphiaID
ReplicateReplElovaara, Samu
Incubation durationInc durdaysElovaara, Samu
DATE/TIMEDate/TimeElovaara, SamuGeocode – experiment
10 Nitrate[NO3]-µmol/lElovaara, SamuAutoanalyser (Thermo Scientific Aquakem 250)
11 Phosphate[PO4]3-µmol/lElovaara, SamuAutoanalyser (Thermo Scientific Aquakem 250)
12 Carbon, organic, dissolvedDOCµmol/lElovaara, SamuShimadzu TOC-VCPH total organic carbon analyzer
13 Thymidine incorporation rateThym inc ratepmol/l/hElovaara, SamuLiquid scintillation counter, Wallac 1414 LSC
14 Bacterial productionBPpmol/l/hElovaara, SamuLiquid scintillation counter, Wallac 1414 LSC3H-thymidine
15 Leucine incorporation rateLeu inc ratepmol/l/hElovaara, SamuLiquid scintillation counter, Wallac 1414 LSC
16 Bacterial productionBPpmol/l/hElovaara, SamuLiquid scintillation counter, Wallac 1414 LSC14C-leucine
17 Absorption coefficient, 230 nmac2301/mElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
18 Absorption coefficient, 254 nmac2541/mElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
19 Absorption coefficient, 275 nmac2751/mElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
20 Absorption coefficient, 295 nmac2951/mElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
21 Absorption coefficient, 300 nmac3001/mElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
22 Absorption coefficient, 350 nmac3501/mElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
23 Absorption coefficient, 355 nmac3551/mElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
24 Absorption coefficient, 375 nmac3751/mElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
25 Absorption coefficient, 400 nmac4001/mElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
26 Absorption coefficient, 440 nmac4401/mElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
27 Spectral slope, 275-295 nmSpSl 275-295 nm1/µmElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
28 Spectral slope, 350-400 nmSpSl 350-400 nm1/µmElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
29 Slope ratioSRElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
30 Spectral slope, 300-650 nmSpSl 300-650 nm1/µmElovaara, SamuSpectrophotometer UV/VIS, Shimadzu, 2401 PC
31 Fluorescence, peak TF peak TRUElovaara, SamuVarian Cary Eclipse fluorometer (Agilent)
32 Fluorescence, peak AF peak ARUElovaara, SamuVarian Cary Eclipse fluorometer (Agilent)
33 Fluorescence, peak MF peak MRUElovaara, SamuVarian Cary Eclipse fluorometer (Agilent)
34 Fluorescence, peak CF peak CRUElovaara, SamuVarian Cary Eclipse fluorometer (Agilent)
35 Fluorescence indexFIElovaara, SamuVarian Cary Eclipse fluorometer (Agilent)
36 Humification indexHIXElovaara, SamuVarian Cary Eclipse fluorometer (Agilent)
37 Biological indexBIXElovaara, SamuVarian Cary Eclipse fluorometer (Agilent)
38 High nucleic acid bacteriaHNA#/mlElovaara, SamuFlow cytometry Accuri C6
39 Low nucleic acid bacteriaLNA#/mlElovaara, SamuFlow cytometry Accuri C6
40 BacteriaBact#/mlElovaara, SamuFlow cytometry Accuri C6
41 High nucleic acid bacteria, cell size, side scatterHNA SSCElovaara, SamuFlow cytometry Accuri C6geometric mean area
42 Low nucleic acid bacteria, cell size, side scatterLNA SSCElovaara, SamuFlow cytometry Accuri C6geometric mean area
43 Specific ultraviolet absorbance normalized to DOC, 254 nmSUVA254m2/gElovaara, SamuShimadzu TOC-VCPH total organic carbon analyzer
44 Respiration rate, carbon dioxideResp CO2µmol/l/dayElovaara, SamuO2-meter (OXY-4 mini, PreSens)
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
2228 data points

Data

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


Event

ID
(Event2)

Study type

Temp [°C]

Species
(Flow cytometry Accuri C6)

URL ref
(WoRMS AphiaID)

Repl

Inc dur [days]

Date/Time
(experiment)
10 
[NO3]- [µmol/l]
(Autoanalyser (Thermo Scientif...)
11 
[PO4]3- [µmol/l]
(Autoanalyser (Thermo Scientif...)
12 
DOC [µmol/l]
(Shimadzu TOC-VCPH total organ...)
13 
Thym inc rate [pmol/l/h]
(Liquid scintillation counter,...)
14 
BP [pmol/l/h]
(3H-thymidine, Liquid scintill...)
15 
Leu inc rate [pmol/l/h]
(Liquid scintillation counter,...)
16 
BP [pmol/l/h]
(14C-leucine, Liquid scintilla...)
17 
ac230 [1/m]
(Spectrophotometer UV/VIS, Shi...)
18 
ac254 [1/m]
(Spectrophotometer UV/VIS, Shi...)
19 
ac275 [1/m]
(Spectrophotometer UV/VIS, Shi...)
20 
ac295 [1/m]
(Spectrophotometer UV/VIS, Shi...)
21 
ac300 [1/m]
(Spectrophotometer UV/VIS, Shi...)
22 
ac350 [1/m]
(Spectrophotometer UV/VIS, Shi...)
23 
ac355 [1/m]
(Spectrophotometer UV/VIS, Shi...)
24 
ac375 [1/m]
(Spectrophotometer UV/VIS, Shi...)
25 
ac400 [1/m]
(Spectrophotometer UV/VIS, Shi...)
26 
ac440 [1/m]
(Spectrophotometer UV/VIS, Shi...)
27 
SpSl 275-295 nm [1/µm]
(Spectrophotometer UV/VIS, Shi...)
28 
SpSl 350-400 nm [1/µm]
(Spectrophotometer UV/VIS, Shi...)
29 
SR
(Spectrophotometer UV/VIS, Shi...)
30 
SpSl 300-650 nm [1/µm]
(Spectrophotometer UV/VIS, Shi...)
31 
F peak T [RU]
(Varian Cary Eclipse fluoromet...)
32 
F peak A [RU]
(Varian Cary Eclipse fluoromet...)
33 
F peak M [RU]
(Varian Cary Eclipse fluoromet...)
34 
F peak C [RU]
(Varian Cary Eclipse fluoromet...)
35 
FI
(Varian Cary Eclipse fluoromet...)
36 
HIX
(Varian Cary Eclipse fluoromet...)
37 
BIX
(Varian Cary Eclipse fluoromet...)
38 
HNA [#/ml]
(Flow cytometry Accuri C6)
39 
LNA [#/ml]
(Flow cytometry Accuri C6)
40 
Bact [#/ml]
(Flow cytometry Accuri C6)
41 
HNA SSC
(geometric mean area, Flow cyt...)
42 
LNA SSC
(geometric mean area, Flow cyt...)
43 
SUVA254 [m2/g]
(Shimadzu TOC-VCPH total organ...)
44 
Resp CO2 [µmol/l/day]
(O2-meter (OXY-4 mini, PreSens))
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TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgA72018-03-13559.924.4248.51328.682108571.7022362.922886138.41110.546.394.953.863.631.271.150.810.520.230.010.020.6520.160.070.140.080.101.993.050.8011802686144571113112121187412330.9313.91
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgB12018-03-07555.125.1324.112.0919194.06368.4547552.40113.488.817.084.554.031.211.090.750.400.170.020.021.0522.810.200.140.070.071.731.500.8023522653460299378237213520.980.00
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgB22018-03-08340.9104.40165686.454509.17581950.08114.7510.088.005.124.551.441.320.920.580.290.020.021.2121.140.190.140.070.081.721.660.7585046742140913677217710841.0712.39
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgB32018-03-09312.51323.062099656.9918809.002427473.52112.908.186.684.614.151.321.210.810.460.230.020.020.9221.960.170.140.120.091.641.950.964142506541874297593226223240.9521.39
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgB42018-03-10260.21420.642254518.4322397.602890614.79112.167.956.334.494.151.321.270.860.520.230.020.020.9020.840.120.210.460.121.663.381.2487030141176888759897204915991.1018.51
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgB52018-03-11248.71434.512276520.8222134.402856645.54111.417.606.164.494.151.381.210.920.520.230.020.020.8820.530.120.220.460.121.643.451.2996469802396169890492199712381.1010.37
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgB62018-03-12250.81353.652148202.7222057.332846700.09110.897.725.994.554.091.381.210.920.520.290.010.020.8120.160.080.200.410.121.643.971.241095777339734511258114203312381.1115.09
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgB72018-03-13568.025.6246.41378.052186920.0722597.572916422.97110.037.255.644.263.971.271.210.860.520.230.010.020.7720.710.100.170.270.111.682.021.1512015153125225013134527189612451.0612.50
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgC12018-03-07546.723.7338.910.5616761.05297.4438387.09112.339.157.434.784.261.441.270.860.520.230.020.021.1620.500.220.150.080.081.721.580.8920801445336272018199413300.980.00
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgC22018-03-08359.397.28154385.874775.83616364.02112.109.107.374.724.261.501.320.980.580.350.020.021.2819.000.220.140.090.081.721.560.7664914126126741588226611700.924.17
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgC32018-03-09318.61398.072218705.7020727.032675012.40111.818.006.624.494.091.321.210.810.520.230.020.020.9921.170.190.160.160.101.561.840.974718309632004846685221217850.9117.00
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgC42018-03-10266.01334.922118483.1621555.512781934.87110.317.896.224.494.151.381.270.920.580.230.020.020.9020.310.120.240.540.131.993.591.2699473629841110045773207813191.0720.08
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgC52018-03-11258.71328.722108637.4921633.572792009.11109.227.255.764.324.031.271.150.860.520.230.010.020.8120.890.110.240.510.131.833.801.331032998121954310543797200013061.0116.38
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgC62018-03-12256.11210.411920892.0521388.922760435.59109.057.205.534.263.921.321.210.920.520.290.010.020.7519.990.090.180.350.131.803.751.181223561143152212596520203811181.028.73
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgC72018-03-13549.223.6252.51297.132058514.1721778.082810660.14108.076.915.354.153.861.321.270.920.580.290.010.020.7418.350.080.150.100.101.832.610.7612398721148424413810515200912510.9914.46
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgD12018-03-07865.634.4201.10.27424.448.351077.91170.1926.0221.1315.6014.283.342.821.380.580.170.020.040.4330.170.020.030.020.011.381.030.60451282654684947611517094.680.00
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgD22018-03-08210.80.60945.919.801264.93171.0026.8921.8816.2414.913.803.281.780.920.460.020.030.5227.550.020.030.020.021.171.140.52239482993551888567416664.6111.51
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgD32018-03-09198.04.497127.56126.0816271.90171.4626.2021.3015.6614.343.402.821.380.580.120.020.040.4330.000.020.030.020.021.721.300.7149532744844621707797221664.787.25
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgD42018-03-10194.528.3144929.311474.04190237.92173.1926.2521.2515.6014.283.342.821.320.580.170.020.040.4430.270.020.030.020.021.241.120.6070220454921814007638320154.8817.99
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgD52018-03-11178.164.68102647.014832.26623647.52171.0026.1421.0715.4914.223.282.651.320.520.120.020.040.4230.590.020.030.020.021.631.160.701868226642871992904399919455.3116.62
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgD62018-03-12172.384.72134451.907775.861003545.69169.4426.0821.0115.4914.163.282.761.320.520.170.020.040.4330.270.020.030.020.011.351.140.632216973801072385198373914885.4715.31
TZS_008_2018Rmarina_Crypto08-A2_FINMARIlaboratory experiment10Rhodomonas marinamarinespecies.orgD72018-03-13871.234.3171.384.73134458.708116.681047531.96170.5926.1421.1315.5514.223.222.711.320.520.120.020.040.4130.610.020.030.020.021.211.040.602503777715922685659358919045.527.60