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H
2
metabolism is widespread and diverse among human colonic microbes
Patricia G. Wolf
, Ambarish Biswas
, Sergio E. Morales
, Chris Greening
,
H. Rex Gaskins
Animal Sciences
Pathobiology
Nutritional Sciences
Carl R. Woese Institute for Genomic Biology
Office of the Vice Chancellor for Research and Innovation
Biomedical and Translational Sciences
Research output
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›
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2
metabolism is widespread and diverse among human colonic microbes'. Together they form a unique fingerprint.
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Keyphrases
Acetogenesis
66%
Bacteroidetes
33%
Carbohydrate Fermentation
33%
Carbon Fixation
33%
Comprehensive Bioinformatics
33%
Electron Bifurcation
33%
Encoding Gene
33%
FeFe-hydrogenase
66%
Fermentative
33%
Fermentative H2 Production
33%
Ferredoxin
33%
Firmicutes
33%
Gastrointestinal
33%
Gene Content
66%
H2 Metabolism
100%
Healthy Human Subjects
33%
Human Colon
100%
Human Gastrointestinal Tract
33%
Human Gut
33%
Human Microbiome Project
33%
Hydrogenase
100%
Hydrogenase Gene
66%
Interspecies H2 Transfer
33%
Metabolic Homeostasis
33%
Metagenomics
33%
Methanogenesis
33%
Microbes
100%
Microbial Composition
33%
Microbial Species
33%
Molecular Hydrogen
33%
Pre-oxidation
33%
Respiration
66%
Rnf Complex
33%
Stool
33%
Study Support
33%
Sulfate Reduction
33%
Immunology and Microbiology
Bacteroidetes
14%
Bioinformatics
14%
Carbon Fixation
14%
Colon
42%
Firmicutes
14%
Gastrointestinal Tract
14%
Homeostasis
14%
Homo sapiens
14%
Human Microbiome Project
14%
Hydrogenase
100%
Metagenomics
14%
Methanogenesis
14%
Microorganism
100%
Normal Human
14%