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Main Authors: Middelburg, Jack J, Mueller, Christina E, Veuger, Bart, Larsson, Ann I, Form, Armin, van Oevelen, Dick, Mann, Thomas
Format: Dataset Open Access
Language:en
Published: PANGAEA 2015
Subjects:
Online Access:https://doi.org/10.1594/PANGAEA.855254
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author Middelburg, Jack J
Mueller, Christina E
Veuger, Bart
Larsson, Ann I
Form, Armin
van Oevelen, Dick
Mann, Thomas
author_facet Middelburg, Jack J
Mueller, Christina E
Veuger, Bart
Larsson, Ann I
Form, Armin
van Oevelen, Dick
Mann, Thomas
collection Datos científicos de ciencias marinas y ambientales
contents Cold-water corals (CWC) are widely distributed around the world forming extensive reefs at par with tropical coral reefs. They are hotspots of biodiversity and organic matter processing in the world's deep oceans. Living in the dark they lack photosynthetic symbionts and are therefore considered to depend entirely on the limited flux of organic resources from the surface ocean. While symbiotic relations in tropical corals are known to be key to their survival in oligotrophic conditions, the full metabolic capacity of CWC has yet to be revealed. Here we report isotope tracer evidence for efficient nitrogen recycling, including nitrogen assimilation, regeneration, nitrification and denitrification. Moreover, we also discovered chemoautotrophy and nitrogen fixation in CWC and transfer of fixed nitrogen and inorganic carbon into bulk coral tissue and tissue compounds (fatty acids and amino acids). This unrecognized yet versatile metabolic machinery of CWC conserves precious limiting resources and provides access to new nitrogen and organic carbon resources that may be essential for CWC to survive in the resource-depleted dark ocean.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_855254
institution PANGAEA
language en
publishDate 2015
publisher PANGAEA
record_format pangaea
spellingShingle Rates of nitrogen cycling and chemo-autotrophy in the cold-water coral Lophelia pertusa
Middelburg, Jack J
Mueller, Christina E
Veuger, Bart
Larsson, Ann I
Form, Armin
van Oevelen, Dick
Mann, Thomas

Cold-water corals (CWC) are widely distributed around the world forming extensive reefs at par with tropical coral reefs. They are hotspots of biodiversity and organic matter processing in the world's deep oceans. Living in the dark they lack photosynthetic symbionts and are therefore considered to depend entirely on the limited flux of organic resources from the surface ocean. While symbiotic relations in tropical corals are known to be key to their survival in oligotrophic conditions, the full metabolic capacity of CWC has yet to be revealed. Here we report isotope tracer evidence for efficient nitrogen recycling, including nitrogen assimilation, regeneration, nitrification and denitrification. Moreover, we also discovered chemoautotrophy and nitrogen fixation in CWC and transfer of fixed nitrogen and inorganic carbon into bulk coral tissue and tissue compounds (fatty acids and amino acids). This unrecognized yet versatile metabolic machinery of CWC conserves precious limiting resources and provides access to new nitrogen and organic carbon resources that may be essential for CWC to survive in the resource-depleted dark ocean.
title Rates of nitrogen cycling and chemo-autotrophy in the cold-water coral Lophelia pertusa
topic
url https://doi.org/10.1594/PANGAEA.855254