Influence of methane seepage on isotopic signatures in living deep-sea benthic foraminifera, 79° N.

Melaniuk, Katarzyna, Sztybor, Kamila, Treude, Tina, Sommer, Stefan and Rasmussen, Tine L. (2022) Influence of methane seepage on isotopic signatures in living deep-sea benthic foraminifera, 79° N. Open Access Scientific Reports, 12 . Art.Nr. 1169. DOI 10.1038/s41598-022-05175-1.

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Abstract

Fossil benthic foraminifera are used to trace past methane release linked to climate change. However, it is still debated whether isotopic signatures of living foraminifera from methane-charged sediments reflect incorporation of methane-derived carbon. A deeper understanding of isotopic signatures of living benthic foraminifera from methane-rich environments will help to improve reconstructions of methane release in the past and better predict the impact of future climate warming on methane seepage. Here, we present isotopic signatures (δ13C and δ18O) of foraminiferal calcite together with biogeochemical data from Arctic seep environments from c. 1200 m water depth, Vestnesa Ridge, 79° N, Fram Strait. Lowest δ13C values were recorded in shells of Melonis barleeanus, − 5.2‰ in live specimens and − 6.5‰ in empty shells, from sediments dominated by aerobic (MOx) and anaerobic oxidation of methane (AOM), respectively. Our data indicate that foraminifera actively incorporate methane-derived carbon when living in sediments with moderate seepage activity, while in sediments with high seepage activity the poisonous sulfidic environment leads to death of the foraminifera and an overgrowth of their empty shells by methane-derived authigenic carbonates. We propose that the incorporation of methane-derived carbon in living foraminifera occurs via feeding on methanotrophic bacteria and/or incorporation of ambient dissolved inorganic carbon.

Document Type: Article
Keywords: benthic foraminifera, methane seeps, Vestnesa Ridge, Fram Strait, δ13C and δ18O isotpoic signatures, incorporation of methane derived carbon
Research affiliation: OceanRep > GEOMAR > FB2 Marine Biogeochemistry > FB2-MG Marine Geosystems
OceanRep > The Future Ocean - Cluster of Excellence
Main POF Topic: PT6: Marine Life
Refereed: Yes
Open Access Journal?: Yes
Publisher: Nature Research
Projects: Future Ocean, Paleo-CIRCUS
Expeditions/Models/Experiments:
Date Deposited: 31 Jan 2022 11:33
Last Modified: 20 Jan 2025 08:29
URI: https://oceanrep.geomar.de/id/eprint/55036

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