Natural hypoxic conditions do not affect the respiration rates of the cold-water coral Desmophyllum pertusum (Lophelia pertusa) living in the Angola margin (Southeastern Atlantic Ocean).

Gori, Andrea, Orejas, Covadonga, Mienis, Furu, Ferrier-Pagès, Christine, Bilan, Meri, Flöter, Sebastian, Reynaud, Stephanie, Sweetman, Andrew K., Roberts, J Murray, Wienberg, Claudia and Hebbeln, Dierk (2023) Natural hypoxic conditions do not affect the respiration rates of the cold-water coral Desmophyllum pertusum (Lophelia pertusa) living in the Angola margin (Southeastern Atlantic Ocean). Open Access Deep Sea Research Part I: Oceanographic Research Papers . Art.Nr. 104052. DOI 10.1016/j.dsr.2023.104052.

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Abstract

Highlights:
• The cold-water coral Desmophyllum pertusum from reefs off Angola showed the same respiration rates at hypoxic and normoxic oxygen concentration.
• The respiration rates measured are in the same order of magnitude as those previously observed for the species under normoxic conditions in other areas.

Abstract:
Large, well-developed and flourishing reefs dominated by the cold-water coral Desmophyllum pertusum have recently been discovered along the Angola margin in the southeastern Atlantic Ocean living under very low oxygen concentrations (0.6–1.5 mL L−1). This study assessed the respiration rates of this coral in a short-term (10 days) aquarium experiment under naturally low oxygen concentrations (1.4 ± 0.5 mL L−1) as well as under saturated oxygen concentrations (6.1 ± 0.6 mL L−1). We found no significant difference in respiration rates between the two oxygen concentrations. Furthermore, the respiration rates of D. pertusum were in the same order of magnitude as those of the same species living under normoxic conditions in other areas. This work expands the current knowledge on the metabolic activity of cold-water corals under hypoxic conditions, evidencing that low oxygen conditions are not a general limiting factor for the overall distribution of D. pertusum.

Document Type: Article
Keywords: natural hypoxic conditions, respiration rate, cold-water coral, Desmophyllum pertusum, Angola margin, Southeastern Atlantic Ocean
Research affiliation: MARUM
OceanRep > GEOMAR > FB2 Marine Biogeochemistry > FB2-MG Marine Geosystems
NIOZ
Main POF Topic: PT6: Marine Life
Refereed: Yes
Open Access Journal?: No
Publisher: Elsevier
Related URLs:
Projects: The Ocean Floor - Earth's Uncharted Interface, iAtlantic
Expeditions/Models/Experiments:
Date Deposited: 02 May 2023 11:48
Last Modified: 20 Jan 2025 08:33
URI: https://oceanrep.geomar.de/id/eprint/58441

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