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Soil Biology and Biochemistry, ISSN 0038-0717, 2004, Volume 36, Issue 12, pp. 2059 - 2065
Additions of inorganic nitrogen (N) to an oak soil with significant potential for methane (CH ) oxidation resulted in differential reduction in CH oxidation... 
High affinity | Low affinity | Inhibition | Kinetics | Methanotrophs | ATMOSPHERIC METHANE | FERTILIZATION | methanotrophs | NH4+ INHIBITION | inhibition | FOREST SOILS | AGRICULTURE, SOIL SCIENCE | OXIC SOILS | AMMONIUM | high affinity | CH4 OXIDATION | low affinity | NITROGEN | LAND-USE | kinetics | CONSUMPTION
Journal Article
Soil Biology and Biochemistry, ISSN 0038-0717, 09/2013, Volume 64, pp. 127 - 135
Oxidation of atmospheric methane by soil methanotrophs is a microbial process highly susceptible to physical and chemical disturbances. In this study,... 
Atmospheric methane | High affinity methanotrophs | Soil methane oxidation | Inhibition | Stabilization and stimulation | Al2O3 | EUROPEAN BEECH | METHANOTROPHIC BACTERIA | POPULATIONS | FOREST SOILS | PURE CULTURES | NORWAY SPRUCE | SOIL SCIENCE | CH4 OXIDATION | CONSUMPTION | MIXING RATIOS | Indexing in process
Journal Article
Soil Biology and Biochemistry, ISSN 0038-0717, 05/2015, Volume 84, pp. 83 - 95
In upland soils aerobic methane-oxidizing bacteria (MOB) catalyze methane (CH ) oxidation, and thus regulate the sole terrestrial sink for atmospheric CH .... 
Atmospheric methane oxidation | Glacier forefield | High-affinity MOB | pmoA | Soil chronosequence | CH4 flux | flux | PmoA | ATMOSPHERIC METHANE | METHANOTROPHIC BACTERIA | FOREST SOILS | MICROBIAL COMMUNITY | SPRUCE FOREST | GAS-TRANSPORT | SOIL SCIENCE | CH4 OXIDATION | INORGANIC NITROGEN | OXIDIZING BACTERIA | RECEDING GLACIER | Methane | Biogeochemistry | Glaciers | Analysis
Journal Article
Soil Biology and Biochemistry, ISSN 0038-0717, 2019, Volume 131, pp. 1 - 8
Aerobic oxidation of methane at (circum-)atmospheric concentrations (<40 ppmv) has long been assumed to be catalyzed by the as-yet-uncultured high-affinity... 
C labelling | High-affinity methane oxidation | pmoA | Methylocystaceae | PLFA analysis/ land-use change
Journal Article
Soil Biology and Biochemistry, ISSN 0038-0717, 04/2019, Volume 131, Issue April, pp. 1 - 8
Journal Article
Soil Biology and Biochemistry, ISSN 0038-0717, 01/2010, Volume 42, Issue 1, pp. 101 - 107
Plant species exert strong effects on ecosystem functions and one of the emerging, and difficult to test hypotheses, is that plants alter soil functions... 
Tree species | PLFA | Net nitrification | Atmospheric methane | Microbial diversity | C-Labeling | Net N mineralization | High-affinity methanotrophs | BIODIVERSITY | EUROPEAN BEECH | ARTIFICIAL AFFORESTATION EXPERIMENT | METHANE-OXIDIZING BACTERIA | C-13-Labeling | FOREST SOILS | PLANT DIVERSITY | SOIL SCIENCE | MICROBIAL COMMUNITIES | ECOSYSTEM FUNCTION | BIOMASS | FERTILIZERS
Journal Article
by Zhao, R and Wang, HM and Cheng, XY and Yun, Y and Qiu, X
FEMS MICROBIOLOGY ECOLOGY, ISSN 0168-6496, 12/2018, Volume 94, Issue 12
Microorganisms are thought to play a critical role in methane (CH4) consumption in karst caves and yet the presence and diversity of methane-oxidizing bacteria... 
methane sink | ENVIRONMENTS | karst cave | ATMOSPHERIC METHANE OXIDIZERS | MICROBIOLOGY | PMOA | ABUNDANCE | high-affinity methanotroph | SPELEOTHEM | ARCHAEA | ANAEROBIC OXIDATION | DYNAMICS | USC gamma | PROFILING BACTERIAL DIVERSITY | FLUXES
Journal Article
Soil Biology and Biochemistry, ISSN 0038-0717, 2010, Volume 42, Issue 1, pp. 101 - 107
Plant species exert strong effects on ecosystem functions and one of the emerging, and difficult to test hypotheses, is that plants alter soil functions... 
Tree species | PLFA | Net nitrification | Atmospheric methane | Microbial diversity | 13C-Labeling | Net N mineralization | High-affinity methanotrophs
Journal Article