A dynamic microbial sulfur cycle in a serpentinizing continental ophiolite
- PMID: 32249550
- DOI: 10.1111/1462-2920.15006
A dynamic microbial sulfur cycle in a serpentinizing continental ophiolite
Abstract
Serpentinization is the hydration and oxidation of ultramafic rock, which occurs as oceanic lithosphere is emplaced onto continental margins (ophiolites), and along the seafloor as faulting exposes this mantle-derived material to circulating hydrothermal fluids. This process leads to distinctive fluid chemistries as molecular hydrogen (H2 ) and hydroxyl ions (OH- ) are produced and reduced carbon compounds are mobilized. Serpentinizing ophiolites also serve as a vector to transport sulfur compounds from the seafloor onto the continents. We investigated hyperalkaline, sulfur-rich, brackish groundwater in a serpentinizing continental ophiolite to elucidate the role of sulfur compounds in fuelling in situ microbial activities. Here we illustrate that key sulfur-cycling taxa, including Dethiobacter, Desulfitispora and 'Desulforudis', persist throughout this extreme environment. Biologically catalysed redox reactions involving sulfate, sulfide and intermediate sulfur compounds are thermodynamically favourable in the groundwater, which indicates they may be vital to sustaining life in these characteristically oxidant- and energy-limited systems. Furthermore, metagenomic and metatranscriptomic analyses reveal a complex network involving sulfate reduction, sulfide oxidation and thiosulfate reactions. Our findings highlight the importance of the complete inorganic sulfur cycle in serpentinizing fluids and suggest sulfur biogeochemistry provides a key link between terrestrial serpentinizing ecosystems and their submarine heritage.
© 2020 Society for Applied Microbiology and John Wiley & Sons Ltd.
References
-
- Alcalá, F.J., and Custodio, E. (2008) Using the Cl/Br ratio as a tracer to identify the origin of salinity in aquifers in Spain and Portugal. J Hydrol 359: 189-207.
-
- Amend, J.P., and Shock, E.L. (2001) Energetics of overall metabolic reactions of thermophilic and hyperthermophilic Archaea and bacteria. FEMS Microbiol Rev 25: 175-243.
-
- Anders, S., Pyl, P.T., and Huber, W. (2015) HTSeq-A Python framework to work with high-throughput sequencing data. Bioinformatics 31: 166-169.
-
- Barnes, I., Oneil, J.R., and Trescases, J.J. (1978) Present day serpentinization in New Caledonia, Oman and Yugoslavia. Geochim Cosmochim Acta 42: 144-145.
-
- Barnes, I., Lamarche, V.C., and Himmelberg, G. (2015) Geochemical evidence of present-day serpentinization. Science 156: 830-832.
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