Carbon Monoxide Metabolism in Roadside Soils
- 1 May 1981
- journal article
- research article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 41 (5) , 1192-1201
- https://doi.org/10.1128/aem.41.5.1192-1201.1981
Abstract
Air-dried soils which were equilibrated under relative humidities greater than 93% or moistened with liquid water showed marked increases in their capacities to oxidize CO to CO 2 . Liquid water addition in excess of saturation resulted in lower CO oxidation rates, reflecting the limited diffusion of CO through the aqueous phase. After 35 days' storage under 100% relative humidity, the capacity for CO oxidation decreased to 21% of the value observed with a freshly collected sample. Incubation of this stored soil under an atmosphere containing 200 ppm of CO (250 mg/m 3 ) for 21 days resulted in a sevenfold increase in CO oxidation. A correlation was noted between the CO oxidative activity and the history of previous exposure of soils to high ambient levels of CO. The organisms responsible for CO oxidation apparently comprise a small fraction of the microbial population in the soils. With a roadside soil the oxidation of CO provided the driving force for the assimilation of CO 2 . The stoichiometry of the oxidative and assimilatory reactions in soil was in the range of values reported from laboratory studies with CO chemoautotrophs (carboxydobacteria). It is proposed that the population and activity of CO-oxidizing microorganisms increase in response to increasing levels of CO in the environment.This publication has 9 references indexed in Scilit:
- Microbial metabolism of carbon monoxide in culture and in soilApplied and Environmental Microbiology, 1979
- Laboratory simulations of the pyrolytic release experiments: An interim reportJournal of Molecular Evolution, 1979
- Aerobic carboxydobacteriaMicrobial Ecology, 1977
- Microscopic Counting and Adenosine 5′-Triphosphate Measurement in Determining Microbial Growth in SoilsApplied and Environmental Microbiology, 1977
- Energy coupling in the active transport of amino acids by bacteriohodopsin-containing cells of Halobacterium holobiumJournal of Bacteriology, 1976
- Microbial co-metabolism and the degradation of organic compounds in nature.1972
- Soil: A Natural Sink for Carbon MonoxideScience, 1971
- The Determination of Enzyme Dissociation ConstantsJournal of the American Chemical Society, 1934