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Direct methane oxidation by copper-and iron-dependent methane monooxygenases
FJ Tucci, AC Rosenzweig - Chemical reviews, 2024 - ACS Publications
Methane is a potent greenhouse gas that contributes significantly to climate change and is
primarily regulated in Nature by methanotrophic bacteria, which consume methane gas as …
primarily regulated in Nature by methanotrophic bacteria, which consume methane gas as …
Diversity and Habitat Preferences of Cultivated and Uncultivated Aerobic Methanotrophic Bacteria Evaluated Based on pmoA as Molecular Marker
C Knief - Frontiers in microbiology, 2015 - frontiersin.org
Methane-oxidizing bacteria are characterized by their capability to grow on methane as sole
source of carbon and energy. Cultivation-dependent and-independent methods have …
source of carbon and energy. Cultivation-dependent and-independent methods have …
Analysis of 1,000+ Type-Strain Genomes Substantially Improves Taxonomic Classification of Alphaproteobacteria
A Hördt, MG López, JP Meier-Kolthoff… - Frontiers in …, 2020 - frontiersin.org
The class Alphaproteobacteria is comprised of a diverse assemblage of Gram-negative
bacteria that includes organisms of varying morphologies, physiologies and habitat …
bacteria that includes organisms of varying morphologies, physiologies and habitat …
A tale of two methane monooxygenases
MO Ross, AC Rosenzweig - JBIC Journal of Biological Inorganic …, 2017 - Springer
Methane monooxygenase (MMO) enzymes activate O 2 for oxidation of methane. Two
distinct MMOs exist in nature, a soluble form that uses a diiron active site (sMMO) and a …
distinct MMOs exist in nature, a soluble form that uses a diiron active site (sMMO) and a …
Impacts of carbon and flooding on soil microbial communities: phospholipid fatty acid profiles and substrate utilization patterns
A bstract Phospholipid fatty acid (PLFA) profiles provide a robust measure that can be used
to fingerprint the structure of soil microbial communities, and measure their biomass. A …
to fingerprint the structure of soil microbial communities, and measure their biomass. A …
Widespread soil bacterium that oxidizes atmospheric methane
The global atmospheric level of methane (CH4), the second most important greenhouse
gas, is currently increasing by∼ 10 million tons per year. Microbial oxidation in unsaturated …
gas, is currently increasing by∼ 10 million tons per year. Microbial oxidation in unsaturated …
Methanotrophs and copper
Methanotrophs, cells that consume methane (CH4) as their sole source of carbon and
energy, play key roles in the global carbon cycle, including controlling anthropogenic and …
energy, play key roles in the global carbon cycle, including controlling anthropogenic and …
Methane, microbes and models: fundamental understanding of the soil methane cycle for future predictions
Methane is an important greenhouse gas and microbes in the environment play major roles
in both global methane emissions and terrestrial sinks. However, a full mechanistic …
in both global methane emissions and terrestrial sinks. However, a full mechanistic …
[HTML][HTML] Bioconversion of natural gas to liquid fuel: opportunities and challenges
Natural gas is a mixture of low molecular weight hydrocarbon gases that can be generated
from either fossil or anthropogenic resources. Although natural gas is used as a …
from either fossil or anthropogenic resources. Although natural gas is used as a …
Microbial methane oxidation processes and technologies for mitigation of landfill gas emissions
C Scheutz, P Kjeldsen, JE Bogner… - Waste management …, 2009 - journals.sagepub.com
Landfill gas containing methane is produced by anaerobic degradation of organic waste.
Methane is a strong greenhouse gas and landfills are one of the major anthropogenic …
Methane is a strong greenhouse gas and landfills are one of the major anthropogenic …