Results 171 to 180 of about 11,269 (227)
Comparative Analysis of Gastrointestinal Microbiota Along the Digestive Tract in Sika Deer and Reindeer and Prediction of Their Potential Function. [PDF]
Peng X, Han H, Hu R, Kong F, Lu Y.
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Methane Production on Mars-Relevant Clay Minerals and Simulant Regolith. [PDF]
Mickol RL +5 more
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Methane-cycling microbiomes in soils of the pan-Arctic and their response to permafrost degradation. [PDF]
Wang H +10 more
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Intracellular accumulation of hydrophobic 1,3-PDN inhibits methanogenesis in rumen methanogens. [PDF]
Ouyang B +17 more
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Insights Gained by High-throughput Chromosome Conformation Capture (Hi-C) into the Viral Modulation of Methane Production in Anaerobic Digestion. [PDF]
Zhang J +5 more
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Methanogenic Fermentation of Benzoate
Journal of Bacteriology, 1969A methanogenic enrichment culture decomposed small concentrations of 14 C-benzoate to 14 C 4 and 14 CO 2 under stringently anaerobic conditions with or without preceding exposure to benzoate.
P M, Nottingham, R E, Hungate
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1991
Abstract Methanogenic bacteria are a morphologically diverse group of bacteria unified by their ability to produce methane. This property has been used to distinguish these bacteria from the other groups of anaerobic bacteria.
Mahendra K Jain +2 more
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Abstract Methanogenic bacteria are a morphologically diverse group of bacteria unified by their ability to produce methane. This property has been used to distinguish these bacteria from the other groups of anaerobic bacteria.
Mahendra K Jain +2 more
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Antonie van Leeuwenhoek, 1994
Methanogenic archaea convert a few simple compounds such as H2 + CO2, formate, methanol, methylamines, and acetate to methane. Methanogenesis from all these substrates requires a number of unique coenzymes, some of which are exclusively found in methanogens.
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Methanogenic archaea convert a few simple compounds such as H2 + CO2, formate, methanol, methylamines, and acetate to methane. Methanogenesis from all these substrates requires a number of unique coenzymes, some of which are exclusively found in methanogens.
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Molecular Biology of Methanogens
Annual Review of Microbiology, 1992Methanogens are a very diverse group of the Archaea (Archaebacteria). Their genomic DNAs range from 26 to 68 mol% G+C; they exhibit all known prokaryotic morphologies and inhabit anaerobic environments as varied as the human gut and deep-sea volcanic vents.
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Methanotrophs and Methanogens in Masonry
Applied and Environmental Microbiology, 1998ABSTRACT Methanotrophs were present in 48 of 225 stone samples which were removed from 19 historical buildings in Germany and Italy. The average cell number of methanotrophs was 20 CFU per g of stone, and their activities ranged between 11 and 42 pmol of CH 4 g of stone −1 day
, Kussmaul, , Wilimzig, , Bock
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