Molecular isotopic tracing of carbon flow and trophic relationships in a methane supported microbial community
Publication date
2002
Authors
Sinninghe Damsté, J.S.
Werne, J.
Baas, B.
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Document Type
Article
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Abstract
A molecular isotopic study in cold-seep sediments from Kazan mud volcano in the eastern Mediterranean Sea
indicates that a significant proportion of methane released in this environment is incorporated into biomass in
methane-supported chemosynthetic microbial communities. Furthermore, extremely ¹³3C depleted biomarkers (as
much as -111‰ Vienna Pee Dee Belemnite (VPDB)) have revealed pathways of methane-derived carbon flow
through the microbial community and into eukaryotic biomass. Specifically, we are able to trace the flow of methanederived
carbon through anaerobic methane-oxidizing archaea into sulfate-reducing bacteria, as well as into aerobic
methane-oxidizing bacteria. The methane-derived carbon is then incorporated into eukaryotic biomass through heterotrophy
by bacterivorous ciliates.