Investigations of abiotic and biotic contributions to dissolved organic carbon (DOC) are required to constrain microbial habitability in continental subsurface fluids. Here we investigate a large (101-283âmgâC/L) DOC pool in an ancient (>1Ga), high temperature (45-55â°C), low biomass (10(2)-10(4) cells/mL), and deep (3.2âkm) brine from an uranium-enriched South African gold mine. Excitation-emission matrices (EEMs), negative electrospray ionization (-ESI) 21 tesla Fourier-transform ion cyclotron resonance mass spectrometry (FT-ICR MS), and amino acid analyses suggest the brine DOC is primarily radiolytically oxidized kerogen-rich shales or reefs, methane and ethane, with trace amounts of C(3)-C(6) hydrocarbons and organic sulfides. δ(2)H and δ(13)C of C(1)-C(3) hydrocarbons are consistent with abiotic origins. These findings suggest water-rock processes control redox and C cycling, helping support a meagre, slow biosphere over geologic time. A radiolytic-driven, habitable brine may signal similar settings are good targets in the search for life beyond Earth.
Radiolytically reworked Archean organic matter in a habitable deep ancient high-temperature brine.
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作者:Nisson Devan M, Walters Clifford C, Chacón-Patiño Martha L, Weisbrod Chad R, Kieft Thomas L, Sherwood Lollar Barbara, Warr Oliver, Castillo Julio, Perl Scott M, Cason Errol D, Freifeld Barry M, Onstott Tullis C
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2023 | 起止号: | 2023 Oct 3; 14(1):6163 |
| doi: | 10.1038/s41467-023-41900-8 | ||
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