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Enceladus-like geochemistry fuels methanogenesis under extreme CO 2 limitation

Vanessa Helmbrecht, Frank Postberg, Nozair Khawaja, Robert Reichelt, Frieder Klein, Dina Grohmann, William D. Orsi

Revista con revisión por pares

En palabras de los autores

Saturn’s icy moon Enceladus features chemical signatures consistent with an alkaline soda ocean with H 2 production via hydrothermal water-rock reactions. Chemolithoautotrophic methanogenesis is thermodynamically favorable under these conditions, but it is unknown whether CO 2 scarcity in the alkaline Enceladus soda ocean limits autotrophy. Here, we show that simulated Enceladus’ ocean chemistry containing high concentrations of dissolved inorganic carbon and H 2 from mineral-water reactions enables growth of the chemolithoautotroph H 2 -oxidizing methanogen Methanothermococcus okinawensis until pH 11, far exceeding its previously known pH limit. Transcriptomics revealed that growing cells overcome CO 2 scarcity in the simulated Enceladus soda ocean by overexpressing the reductive acetyl-CoA pathway for CO 2 fixation, which enabled efficient scavenging of CO 2 at extremely low concentrations. The carbon and energy metabolism of M. okinawensis was entirely fueled by the abiotic H 2 derived from the simulated Enceladus mineral-water reactions.

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Apareció: domingo, 27 de septiembre. Science Advances. Revista con revisión por pares.

DOI: 10.1126/sciadv.aei0167