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Volumn 176, Issue 4, 2001, Pages 271-277
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A novel denitrifying bacterial isolate that degrades trimethylamine both aerobically and anaerobically via two different pathways
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Author keywords
Aerobic degradation; Anaerobic degradation; Denitrification; Trimethylamine; Trimethylamine metabolism
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Indexed keywords
AMINE;
AMMONIA;
DIMETHYLAMINE;
DIMETHYLAMINE OXYGENASE;
ENZYME;
FORMALDEHYDE;
METHYLAMINE;
METHYLAMINE MONOOXYGENASE;
NITRATE;
RIBOSOME DNA;
TRIMETHYL MONOOXYGENASE;
TRIMETHYLAMINE;
TRIMETHYLAMINE DEHYDROGENASE;
TRIMETHYLAMINE OXIDE DEMETHYLASE;
UNCLASSIFIED DRUG;
ACTIVATED SLUDGE;
ANAEROBIC GROWTH;
ARTICLE;
BACTERIAL METABOLISM;
BACTERIUM IDENTIFICATION;
BACTERIUM ISOLATE;
CELL ACTIVITY;
CELL FREE SYSTEM;
CELL GROWTH;
CONTROLLED STUDY;
DENITRIFICATION;
DNA DETERMINATION;
ENRICHMENT CULTURE;
MICROBIAL DEGRADATION;
NONHUMAN;
PARACOCCUS;
PRIORITY JOURNAL;
STOICHIOMETRY;
AEROBIOSIS;
ANAEROBIOSIS;
GENE EXPRESSION REGULATION, BACTERIAL;
METHYLAMINES;
NITRATES;
OXIDATIVE PHOSPHORYLATION;
PARACOCCUS;
BACTERIA (MICROORGANISMS);
NEGIBACTERIA;
PARACOCCUS SP.;
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EID: 0035729071
PISSN: 03028933
EISSN: None
Source Type: Journal
DOI: 10.1007/s002030100319 Document Type: Article |
Times cited : (71)
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References (33)
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