Response and adaptation of different methanotrophic bacteria to low methane mixing ratios
Open Access
- 6 May 2005
- journal article
- Published by Wiley in Environmental Microbiology
- Vol. 7 (9) , 1307-1317
- https://doi.org/10.1111/j.1462-2920.2005.00814.x
Abstract
Summary: Described genera of methanotrophic bacteria are present in most upland soils, but it is not known whether these are sufficiently oligotrophic to oxidize methane at its trace atmospheric mixing ratio of 1.75 ppmv. Members of the genera Methylocystis, Methylosinus, Methylocaldum and Methylobacter were isolated from different upland soils and compared with type strains for growth and activity under low methane mixing ratios. The specific affinity (a0s) varied by about one order of magnitude among different methanotrophs. It was highest in some Methylocystis spp., suggesting that these were the most oligotrophic. In direct tests, the threshold mixing ratio of methane required by most methanotrophs for growth ranged from 100 to greater than 1000 ppmv. However, two Methylocystis strains grew at only 10–100 ppmv of methane and one oxidized atmospheric methane for > 3 months with little or no decline in the absolute rate. The results show that some cultivated methanotrophic bacteria are much more oligotrophic than others, and may contribute to atmospheric methane oxidation in soils. However, it is likely that these need additional energy sources for long‐term survival, and that uncultivated groups of methanotrophic bacteria are primarily responsible for the process in soils possessing high methane oxidation rates.Keywords
This publication has 48 references indexed in Scilit:
- Activity and community structure of methane-oxidising bacteria in a wet meadow soilFEMS Microbiology Ecology, 2002
- Comparison of pmoA PCR Primer Sets as Tools for Investigating Methanotroph Diversity in Three Danish SoilsApplied and Environmental Microbiology, 2001
- A new method to study simultaneous methane oxidation and methane production in soilsGlobal Biogeochemical Cycles, 1998
- Diversity in methane enrichments from agricultural soil revealed by DGGE separation of PCR amplified 16S rDNA fragmentsFEMS Microbiology Ecology, 1998
- Stability of methane oxidation capacity to variations in methane and nutrient concentrationsFEMS Microbiology Ecology, 1995
- Methane and Carbon Dioxide Dynamics in a Northern Hardwood EcosystemSoil Science Society of America Journal, 1995
- Kinetics of CH4oxidation in oxic soils exposed to ambient air or high CH4mixing ratiosFEMS Microbiology Letters, 1992
- The rapid generation of mutation data matrices from protein sequencesBioinformatics, 1992
- Mass spectrometric measurements of methane and oxygen utilization by methanotrophic bacteriaFEMS Microbiology Letters, 1983
- Exospores and Cysts Formed by Methane-utilizing BacteriaJournal of General Microbiology, 1970