The role of microbial mats in the production of reduced gases on the early Earth
- 1 July 2001
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 412 (6844), 324-327
- https://doi.org/10.1038/35085554
Abstract
The advent of oxygenic photosynthesis on Earth may have increased global biological productivity by a factor of 100-1,000 (ref. 1), profoundly affecting both geochemical and biological evolution. Much of this new productivity probably occurred in microbial mats, which incorporate a range of photosynthetic and anaerobic microorganisms in extremely close physical proximity(2,3). The potential contribution of these systems to global biogeochemical change would have depended on the nature of the interactions among these mat microorganisms. Here we report that in modern, cyanobacteria-dominated mats from hypersaline environments in Guerrero Negro, Mexico, photosynthetic microorganisms generate H-2 and CO-gases that provide a basis for direct chemical interactions with neighbouring chemotrophic and heterotrophic microbes(4). We also observe an unexpected flux of CH4, which is probably related to H-2-based alteration of the redox potential within the mats. These fluxes would have been most important during the nearly 2-billion-year period during which photosynthetic mats contributed substantially to biological productivity(5) -and hence, to biogeochemistry-on Earth. In particular, the large fluxes of H-2 that we observe could, with subsequent escape to space, represent a potentially important mechanism for oxidation of the primitive oceans and atmosphere.Keywords
This publication has 20 references indexed in Scilit:
- Archaean metabolic evolution of microbial matsProceedings Of The Royal Society B-Biological Sciences, 1999
- Primary Production of the Biosphere: Integrating Terrestrial and Oceanic ComponentsScience, 1998
- Fermentation in cyanobacteriaFEMS Microbiology Reviews, 1997
- Mid-Ocean Ridge Hydrothermal Fluxes and the Chemical Composition of the OceanAnnual Review of Earth and Planetary Sciences, 1996
- Field and laboratory studies of methane oxidation in an anoxic marine sediment: Evidence for a methanogen‐sulfate reducer consortiumGlobal Biogeochemical Cycles, 1994
- Nitrogen cycling in microbial mat communities: The quantitative importance of N-fixation and other sources of N for primary productivityPublished by Springer Nature ,1994
- Biogeochemical cycles of carbon, sulfur, and free oxygen in a microbial matGeochimica et Cosmochimica Acta, 1993
- Carbon isotope evidence for the stepwise oxidation of the Proterozoic environmentNature, 1992
- A new model for atmospheric oxygen over Phanerozoic timeAmerican Journal of Science, 1989
- Biogeochemistry and Ecophysiology of Atmospheric CO and H2Published by Springer Nature ,1988