Biphytane and stable carbon isotopic values of sugars and glycerol from ODP Hole 204-1245D and 201-1229A


Autoria(s): Lin, Yu-Shih; Lipp, Julius S; Elvert, Marcus; Holler, Thomas; Hinrichs, Kai-Uwe
Cobertura

MEDIAN LATITUDE: 26.065367 * MEDIAN LONGITUDE: -109.418450 * SOUTH-BOUND LATITUDE: -10.976200 * WEST-BOUND LONGITUDE: -125.148850 * NORTH-BOUND LATITUDE: 44.586150 * EAST-BOUND LONGITUDE: -77.957650 * DATE/TIME START: 2002-03-06T13:30:00 * DATE/TIME END: 2002-08-11T04:00:00

Data(s)

07/08/2014

Resumo

The membrane lipids diglycosyl-glycerol dibiphytanyl glycerol tetraethers (2G-GDGTs) in marine subsurface sediments are believed to originate from uncultivated benthic archaea, yet the production of 2G-GDGTs from subseafloor samples has not been demonstrated in vitro. In order to validate sedimentary biosynthesis of 2G-GDGTs, we performed a stable carbon isotope probing experiment on a subseafloor sample with six different 13C-labelled substrates (bicarbonate, methane, acetate, leucine, glucose and Spirulina platensis biomass). After 468 days of anoxic incubation, only glucose and S. platensis resulted in label uptake in lipid moieties of 2G-GDGTs, indicating incorporation of carbon from these organic substrates. The hydrophobic moieties of 2G-GDGTs showed minimal label incorporation, with up to 4 per mil 13C enrichment detected in crenarchaeol-derived tricyclic biphytane from the S. platensis-supplemented slurries. The 2G-GDGT-derived glucose or glycerol moieties also showed 13C incorporation (Dd13C = 18 - 38 per mil) in the incubations with glucose or S. platensis, consistent with a lipid salvage mechanism utilized by marine benthic archaea to produce new 2G-GDGTs. The production rates were nevertheless rather slow, even when labile organic matter was supplied. The 2G-GDGT turnover times of 1700 - 20 500 years were much longer than those estimated for subseafloor microbial communities, implying that sedimentary 2G-GDGTs as biomarkers of benthic archaea are cumulative records of past and present generations.

Formato

application/zip, 3 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.834735

doi:10.1594/PANGAEA.834735

Idioma(s)

en

Publicador

PANGAEA

Relação

Lin, Yu-Shih; Lipp, Julius S; Elvert, Marcus; Holler, Thomas; Hinrichs, Kai-Uwe (2013): Assessing production of the ubiquitous archaeal diglycosyl tetraether lipids in marine subsurface sediment using intramolecular stable isotope probing. Environmental Microbiology, 15(5), 1634-1646, doi:10.1111/j.1462-2920.2012.02888.x

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Palavras-Chave #2G-GDGTs; 2G-OH-GDGTs; 3G-OH-GDGTs; Archaeal intact polar lipids; Bacterial intact polar lipids; Bacterial IPL; Biphytanes, acyclic, d13C; Biphytanes, acyclic, d13C, standard deviation; Biphytanes, bicyclic, d13C; Biphytanes, bicyclic, d13C, standard deviation; Biphytanes, monocyclic, d13C; Biphytanes, monocyclic, d13C, standard deviation; Biphytanes, tricyclic, d13C; Biphytanes, tricyclic, d13C, standard deviation; BPs acyclic d13C; BPs acyclic d13C std dev; BPs bicyclic d13C; BPs bicyclic d13C std dev; BPs monocyclic d13C; BPs monocyclic d13C std dev; BPs tricyclic d13C; BPs tricyclic d13C std dev; Comment; d13C Gal; d13C Gal std dev; d13C Glc; d13C Glc std dev; d13C Glyc; d13C Glyc std dev; d13C Man; d13C Man std dev; delta 13C, Galactose; delta 13C, Galactose, standard deviation; delta 13C, Glucose; delta 13C, Glucose, standard deviation; delta 13C, Glycerol; delta 13C, Glycerol, standard deviation; delta 13C, Mannose; delta 13C, Mannose, standard deviation; Depth; DEPTH, sediment/rock; High Performance Liquid Chromatography - Mass spectrometry (HPLC-MS); IPLs; Label; Ocean Drilling Program; ODP; ODP sample designation; PA-DAGs/AEGs; PC-DAGs/AEGs; PE-DAGs/AEGs; PG-DAGs/AEGs; Sample code/label; Sample type; Samp type
Tipo

Dataset