Microbial Communities in Methane Cycle: Modern Molecular Methods Gain Insights into Their Global Ecology
Open Access
- 22 February 2021
- journal article
- review article
- Published by MDPI AG in Environments
- Vol. 8 (2), 16
- https://doi.org/10.3390/environments8020016
Abstract
The role of methane as a greenhouse gas in the concept of global climate changes is well known. Methanogens and methanotrophs are two microbial groups which contribute to the biogeochemical methane cycle in soil, so that the total emission of CH4 is the balance between its production and oxidation by microbial communities. Traditional identification techniques, such as selective enrichment and pure-culture isolation, have been used for a long time to study diversity of methanogens and methanotrophs. However, these techniques are characterized by significant limitations, since only a relatively small fraction of the microbial community could be cultured. Modern molecular methods for quantitative analysis of the microbial community such as real-time PCR (Polymerase chain reaction), DNA fingerprints and methods based on high-throughput sequencing together with different “omics” techniques overcome the limitations imposed by culture-dependent approaches and provide new insights into the diversity and ecology of microbial communities in the methane cycle. Here, we review available knowledge concerning the abundances, composition, and activity of methanogenic and methanotrophic communities in a wide range of natural and anthropogenic environments. We suggest that incorporation of microbial data could fill the existing microbiological gaps in methane flux modeling, and significantly increase the predictive power of models for different environments.Keywords
Funding Information
- Russian Foundation for Basic Research (18-29-25027, 17-17-01204)
This publication has 251 references indexed in Scilit:
- Methanogens at the top of the world: occurrence and potential activity of methanogens in newly deglaciated soils in high-altitude cold deserts in the Western HimalayasFrontiers in Microbiology, 2013
- Environmental impacts on the diversity of methane-cycling microbes and their resultant functionFrontiers in Microbiology, 2013
- Archaeol: An Indicator of Methanogenesis in Water-Saturated SoilsArchaea, 2012
- Autotrophic Methanotrophy in Verrucomicrobia: Methylacidiphilum fumariolicumSolV Uses the Calvin-Benson-Bassham Cycle for Carbon Dioxide FixationJournal of Bacteriology, 2011
- Different Atmospheric Methane-Oxidizing Communities in European Beech and Norway Spruce SoilsApplied and Environmental Microbiology, 2010
- Integrating multiple ‘omics’ analysis for microbial biology: application and methodologiesMicrobiology, 2010
- Anaerobic Oxidation of Methane: Progress with an Unknown ProcessAnnual Review of Microbiology, 2009
- Methane emission from natural wetlands: interplay between emergent macrophytes and soil microbial processes. A mini-reviewAnnals of Botany, 2009
- Structure of the Archaeal Community of the RumenApplied and Environmental Microbiology, 2008
- Molecular Ecology Techniques for the Study of Aerobic MethanotrophsApplied and Environmental Microbiology, 2008