2007Applied and Environmental MicrobiologyOpen access

Methyl Sulfide Production by a Novel Carbon Monoxide Metabolism inMethanosarcina acetivorans

James Moran, Christopher H. House, Jennifer M. Vrentas, Katherine H. Freeman

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Abstract

We observed dimethyl sulfide and methanthiol production in pure incubations of the methanogen Methanosarcina acetivorans when carbon monoxide (CO) served as the only electron donor. Energy conservation likely uses sodium ion gradients for ATP synthesis. This novel metabolism permits utilization of CO by the methanogen, resulting in quantitative sulfide methylation.

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What this paper is about

We observed dimethyl sulfide and methanthiol production in pure incubations of the methanogen Methanosarcina acetivorans when carbon monoxide (CO) served as the only electron donor. Energy conservation likely uses sodium ion gradients for ATP synthesis. This novel metabolism permits utilization of CO by the methanogen, resulting in quantitative sulfide methylation.

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Available abstract

We observed dimethyl sulfide and methanthiol production in pure incubations of the methanogen Methanosarcina acetivorans when carbon monoxide (CO) served as the only electron donor. Energy conservation likely uses sodium ion gradients for ATP synthesis. This novel metabolism permits utilization of CO by the methanogen, resulting in quantitative sulfide methylation.

Key concepts: Methanogen, Methanosarcina, Methanomicrobiales, Dimethyl sulfide, Sulfide, Carbon monoxide, Chemistry, Methanosarcina barkeri

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