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Auteurs principaux: Becker, Kevin W, Elvert, Marcus
Format: Dataset Open Access
Langue:en
Publié: PANGAEA 2023
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Accès en ligne:https://doi.org/10.1594/PANGAEA.960507
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author Becker, Kevin W
Elvert, Marcus
author_facet Becker, Kevin W
Elvert, Marcus
collection Datos científicos de ciencias marinas y ambientales
contents 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. Diatom-specific lipids in sinking diatom aggregates were analyzed 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. The AUD gives the average number of acyl double bonds in the fatty acids of 4 selected lipids.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_960507
institution PANGAEA
language en
publishDate 2023
publisher PANGAEA
record_format pangaea
spellingShingle Average unsaturation degree (AUD) of lipids in sinking diatom aggregates incubated in rotating pressure and control tanks
Becker, Kevin W
Elvert, Marcus
Average unsaturation degree of monogalactosyl-diacylglycerol MGDG-C32; Average unsaturation degree of monogalactosyl-diacylglycerol MGDG-C32, standard deviation; Average unsaturation degree of monogalactosyl-diacylglycerol MGDG-C36; Average unsaturation degree of monogalactosyl-diacylglycerol MGDG-C36, standard deviation; Average unsaturation degree of triacylglycerol TAG-C48; Average unsaturation degree of triacylglycerol TAG-C48, standard deviation; Average unsaturation degree of triacylglycerol TAG-C50; Average unsaturation degree of triacylglycerol TAG-C50, standard deviation; biological carbon pump; Bruker maXis UHR TOF mass spectrometer coupled to a Dionex Ultimate 3000 UHPLC; Date/time end, experiment; Date/time start, experiment; Deep sea; Diatom; Digital manometer, Keller AG, LEO5; Experiment; Experimental treatment; HADAL_aggregates; Hadal trench; hydrostatic pressure; Laboratory; Laboratory experiment; lipids; marine carbon cycle; marine snow; microbial community; Pigments; Replicate; Respiration; Treatment: pressure; Treatment: time after; Type of study
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. Diatom-specific lipids in sinking diatom aggregates were analyzed 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. The AUD gives the average number of acyl double bonds in the fatty acids of 4 selected lipids.
title Average unsaturation degree (AUD) of lipids in sinking diatom aggregates incubated in rotating pressure and control tanks
topic Average unsaturation degree of monogalactosyl-diacylglycerol MGDG-C32; Average unsaturation degree of monogalactosyl-diacylglycerol MGDG-C32, standard deviation; Average unsaturation degree of monogalactosyl-diacylglycerol MGDG-C36; Average unsaturation degree of monogalactosyl-diacylglycerol MGDG-C36, standard deviation; Average unsaturation degree of triacylglycerol TAG-C48; Average unsaturation degree of triacylglycerol TAG-C48, standard deviation; Average unsaturation degree of triacylglycerol TAG-C50; Average unsaturation degree of triacylglycerol TAG-C50, standard deviation; biological carbon pump; Bruker maXis UHR TOF mass spectrometer coupled to a Dionex Ultimate 3000 UHPLC; Date/time end, experiment; Date/time start, experiment; Deep sea; Diatom; Digital manometer, Keller AG, LEO5; Experiment; Experimental treatment; HADAL_aggregates; Hadal trench; hydrostatic pressure; Laboratory; Laboratory experiment; lipids; marine carbon cycle; marine snow; microbial community; Pigments; Replicate; Respiration; Treatment: pressure; Treatment: time after; Type of study
url https://doi.org/10.1594/PANGAEA.960507