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Becker, Kevin W; Elvert, Marcus (2023): Lipid contents in sinking diatom aggregates incubated in rotating pressure and control tanks [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.960466, In: Stief, Peter; Schauberger, Clemens; Becker, Kevin W; Elvert, Marcus; Balmonte, John Paul; Franco-Cisterna, Belén; Middelboe, Mathias; Glud, Ronnie N (2023): Effects of increasing hydrostatic pressure on sinking diatom aggregates [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.960357

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Published: 2023-08-11DOI registered: 2023-09-09

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Abstract:
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in laboratory incubation experiments. Model aggregates were produced from the diatom Skeletonema marinoi and the natural microbial community of surface seawater collected in the Kattegat. The aggregates were incubated individually in rotating pressure and control tanks to keep them suspended during 20-day incubations in the dark and at 3°C. In the pressure tanks, hydrostatic pressure was increased at increments of 5 MPa per day to finally reach 100 MPa. This pressure scheme simulates the descent of diatom aggregates from the surface ocean down into a 10-km deep hadal trench. In the control tanks, pressure was always left at atmospheric level.
Volumetric contents of diatom-specific lipids in sinking diatom aggregates were determined by High Performance Liquid Chromatography (HPLC) coupled to quadrupole Time-of-Flight Mass Spectrometry (qToF-MS) in samples retrieved every 4 days throughout the 20-day incubation experiment.
Keyword(s):
biological carbon pump; Deep sea; Diatom; Hadal trench; hydrostatic pressure; Laboratory experiment; lipids; marine carbon cycle; marine snow; microbial community; Pigments; Respiration
Funding:
Danish National Research Foundation (DG), grant/award no. DNRF145: Danish Center for Hadal Research, HADAL
Coverage:
Latitude: 55.368167 * Longitude: 10.426563
Date/Time Start: 2021-07-27T13:48:26 * Date/Time End: 2022-11-02T08:27:14
Event(s):
HADAL_aggregates * Latitude: 55.368167 * Longitude: 10.426563 * Date/Time Start: 2021-07-27T13:48:26 * Date/Time End: 2022-11-02T08:27:14 * Method/Device: Laboratory experiment
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1ExperimentExpBecker, Kevin W
2Type of studyStudy typeBecker, Kevin W
3Date/time start, experimentDate/time start expBecker, Kevin W
4Date/time end, experimentDate/time end expBecker, Kevin W
5Experimental treatmentExp treatBecker, Kevin W
6ReplicateReplBecker, Kevin W
7Treatment: time afterT:time afterhBecker, Kevin WTime after starting the experimental incubation
8Treatment: pressureT:pressureMPaBecker, Kevin WDigital manometer, Keller AG, LEO5
9TriacylglycerolsTAGng/mm3Becker, Kevin WBruker maXis UHR TOF mass spectrometer coupled to a Dionex Ultimate 3000 UHPLCLipid contents are expressed per 1 mm**3 of diatom aggregate
10Triacylglycerol, standard deviationTAG std dev±Becker, Kevin W
11MonogalactosyldiacylglycerolMGDGng/mm3Becker, Kevin WBruker maXis UHR TOF mass spectrometer coupled to a Dionex Ultimate 3000 UHPLCLipid contents are expressed per 1 mm**3 of diatom aggregate
12Monogalactosyldiacylglycerol, standard deviationMGDG std dev±Becker, Kevin W
13Plastoquinone-9:9PQ-9:9ng/mm3Becker, Kevin WBruker maXis UHR TOF mass spectrometer coupled to a Dionex Ultimate 3000 UHPLCLipid contents are expressed per 1 mm**3 of diatom aggregate
14Plastoquinone-9:9, standard deviationPQ-9:9 std dev±Becker, Kevin W
15Ubiquinone-10:10UQ-10:10ng/mm3Becker, Kevin WBruker maXis UHR TOF mass spectrometer coupled to a Dionex Ultimate 3000 UHPLCLipid contents are expressed per 1 mm**3 of diatom aggregate
16Ubiquinone-10:10, standard deviationUQ-10:10 std dev±Becker, Kevin W
17LaboratoryLabBecker, Kevin W
Status:
Curation Level: Enhanced curation (CurationLevelC) * Processing Level: PANGAEA data processing level 3 (ProcLevel3)
Size:
204 data points

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