Response of fermentation and sulfate reduction to experimental temperature changes in temperate and Arctic marine sediments
- 28 February 2008
- journal article
- research article
- Published by Oxford University Press (OUP) in The ISME Journal
- Vol. 2 (8) , 815-829
- https://doi.org/10.1038/ismej.2008.20
Abstract
Anaerobic degradation of organic material generally proceeds through a sequence of steps, including polymer hydrolysis, fermentation and respiration or methanogenesis. The intermediates, such as volatile fatty acids (VFA) or H2, are generally maintained at low concentration, showing a close coupling of the terminal oxidation to fermentation. We exposed marine sediments to extreme temperature perturbations to study the nature and robustness of this coupling. Bacterial sulfate reduction and its dependence on fermentation were studied experimentally over a broad temperature range of −0.3 to 40 °C in sediments from temperate and permanently cold environments. In an Arctic sediment from Svalbard, the apparent optimum temperature for sulfate reduction decreased with prolonged incubation, whereas sulfate reduction rates increased. In a temperate sediment from the North Sea, the apparent optimum temperature was higher and did not change with incubation time. Up to a critical temperature, the concentrations of VFA remained low, 2 concentration showed thermodynamic control by sulfate-reducing bacteria, revealing a close coupling of fermentation and sulfate reduction. Above the critical temperature, the concentrations of VFA and H2 increased transiently by 100–1000-fold. According to the different in situ temperatures of the samples, the critical temperature was lower for sediments from the Arctic than from the North Sea. The H2 concentrations decreased again upon prolonged incubation to values typical for sulfate-depleted methanogenic sediments. This suggests that fermentative bacteria and methanogenic archaea in both sediments tolerated higher temperatures than the sulfate-reducing community.Keywords
This publication has 44 references indexed in Scilit:
- Acetate, lactate, propionate, and isobutyrate as electron donors for iron and sulfate reduction in Arctic marine sediments, SvalbardFEMS Microbiology Ecology, 2007
- Biological energy requirements as quantitative boundary conditions for life in the subsurfaceGeobiology, 2004
- High activity and low temperature optima of extracellular enzymes in Arctic sediments: implications for carbon cycling by heterotrophic microbial communitiesMarine Ecology Progress Series, 2003
- Temperature dependence of aerobic respiration in a coastal sedimentFEMS Microbiology Ecology, 1998
- Temperature dependence and rates of sulfate reduction in cold sediments of svalbard, arctic oceanGeomicrobiology Journal, 1998
- Field and laboratory studies of methane oxidation in an anoxic marine sediment: Evidence for a methanogen‐sulfate reducer consortiumGlobal Biogeochemical Cycles, 1994
- Hydrogen concentrations as an indicator of the predominant terminal electron-accepting reactions in aquatic sedimentsGeochimica et Cosmochimica Acta, 1988
- The effect of temperature on rates of sulfate reduction in marine sedimentsGeomicrobiology Journal, 1988
- A simple, hand-operated quantitative bottom samplerOphelia, 1983
- The effects of temperature upon the reproduction and respiration of a marine obligate psychrophileCanadian Journal of Microbiology, 1974