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  • ARK-XXII/1c; hermes; HERMES; hermione; HERMIONE; Hotspot Ecosystem Research and Mans Impact On European Seas; Hotspot Ecosystem Research on the Margins of European Seas; MUC; MultiCorer; North Greenland Sea; Polarstern; PS70; PS70/188-1; PS70/190-1; PS70/192-1  (1)
  • ATLAS; A Trans-Atlantic assessment and deep-water ecosystem-based spatial management plan for Europe; cold-water corals; ecosystem engineering; ecosystem model; hydrodynamics; organic matter; organic matter deposition; Rockall Bank  (1)
  • JPI Oceans - Ecological Aspects of Deep-Sea Mining; JPIO-MiningImpact  (1)
Document type
Keywords
Publisher
Years
  • 1
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    PANGAEA
    In:  Supplement to: Stratmann, Tanja; Mevenkamp, Lisa; Sweetman, Andrew K; Vanreusel, Ann; van Oevelen, Dick (2018): Has Phytodetritus Processing by an Abyssal Soft-Sediment Community Recovered 26 Years after an Experimental Disturbance? Frontiers in Marine Science, 5, https://doi.org/10.3389/fmars.2018.00059
    Publication Date: 2023-05-12
    Description: This dataset includes meiofauna and macrofauna densities from inside plough tracks from a small-scale deep-sea mining experiment (DISCOL experiment) and reference sites in the abyssal plains in the Peru Basin. Additionally, biomass of bacteria and the uptake of phytodetritus by bacteria, nematodes and holothurians is shown for plough tracks and reference sites with and without holothurians.
    Keywords: JPI Oceans - Ecological Aspects of Deep-Sea Mining; JPIO-MiningImpact
    Type: Dataset
    Format: application/zip, 5 datasets
    Location Call Number Limitation Availability
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  • 2
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    Unknown
    PANGAEA
    In:  Supplement to: Guilini, Katja; van Oevelen, Dick; Soetaert, Karline; Middelburg, Jack J; Vanreusel, Ann (2010): Nutritional importance of benthic bacteria for deep-sea nematodes from the Arctic ice margin: Results of an isotope tracer experiment. Limnology and Oceanography, 55, 1977-1989, https://doi.org/10.4319/lo.2010.55.5.1977
    Publication Date: 2023-02-24
    Description: A stable isotope (13C)-labeling experiment was performed to quantify the importance of bacterial carbon as a food source for an Arctic deep-sea nematode community. Bacterial functional groups were isotopically enriched with 13C-glucose, 13C-acetate, 13C- bicarbonate, and 13C-amino acids injected into sediments collected from 1280 m depth at 79uN, 6uE, west of Svalbard. Incorporation of the 13C label into bacterial phospholipid-derived fatty acids (PLFAs) and nematodes in the top 5 cm of the sediment was monitored over a 7-d period. The 13C dynamics of nematodes was fitted with a simple isotope turnover model to derive the importance of the different bacterial functional groups as carbon sources for the nematodes. The different substrates clearly labeled different bacterial groups as evidenced by differential labeling of the PLFA patterns. The deep-sea nematode community incorporated a very limited amount of the label, and the isotope turnover model showed that the dynamics of the isotope transfer could not be attributed to bacterivory. The low enrichment of nematodes suggests a limited passive uptake of injected 13C-labeled substrates. The lack of accumulation suggests that the injected 13C-labeled dissolved organic carbon compounds are not important as carbon sources for deep-sea nematodes. Since earlier studies with isotopically enriched algae also found limited uptake by nematodes, the food sources of deep-sea nematodes remain unclear.
    Keywords: ARK-XXII/1c; hermes; HERMES; hermione; HERMIONE; Hotspot Ecosystem Research and Mans Impact On European Seas; Hotspot Ecosystem Research on the Margins of European Seas; MUC; MultiCorer; North Greenland Sea; Polarstern; PS70; PS70/188-1; PS70/190-1; PS70/192-1
    Type: Dataset
    Format: application/zip, 4 datasets
    Location Call Number Limitation Availability
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  • 3
    Publication Date: 2023-02-24
    Description: This is the original abstract of the paper: Cold-water corals (CWCs) form large mounds on the seafloor that are hotspots of biodiversity in the deep sea, but it remains enigmatic how CWCs can thrive in this food-limited environment. Here, we infer from model simulations that the interaction between tidal currents and CWC-formed mounds induces downwelling events of surface water that brings organic matter to 600-m deep CWCs. This positive feedback between CWC growth on carbonate mounds and enhanced food supply is essential for their sustenance in the deep sea and represents an example of ecosystem engineering of unparalleled magnitude. This 'topographically-enhanced carbon pump' leaks organic matter that settles at greater depths. The ubiquitous presence of biogenic and geological topographies along ocean margins suggests that carbon sequestration through this pump is of global importance. These results indicate that enhanced stratification and lower surface productivity, both expected consequences of climate change, may negatively impact the energy balance of CWCs. In this data repository, we store the model output as 4 csv files: lon: longitude of each model box lat: latitude of each model box iscoral: a 0/1 matrix indicating whether corals are predicted to be present (1) or absent (0) as returned from the habitat suitability model of Rengstorf et al. (see paper for details) MeanCordepo: a matrix with mean OC deposition rates (mmol C m-2 d-1, averaged over the 3 months of model run, see paper) of the model run with corals present (i.e. the data underlying Fig. 5A).
    Keywords: ATLAS; A Trans-Atlantic assessment and deep-water ecosystem-based spatial management plan for Europe; cold-water corals; ecosystem engineering; ecosystem model; hydrodynamics; organic matter; organic matter deposition; Rockall Bank
    Type: Dataset
    Format: application/zip, 671.1 kBytes
    Location Call Number Limitation Availability
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