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Metabolic characteristics of an aerobe isolated from a methylotrophic methanogenic enrichment culture
Kalyanaraman Lalitha
Published in Indian Academy of Sciences
2003
PMID: 12711816
Volume: 28
   
Issue: 2
Pages: 235 - 242
Abstract
An anaerobic methylotrophic methanogenic enrichment culture, with sustained metabolic characteristics, including that of methanation for over a decade, was the choice of the present study on interspecies interactions. Growth and methanation by the enrichment were suppressed in the presence of antibiotics, and no methanogen grown on methanol could be isolated using stringent techniques. The present study confirmed syntrophic metabolic interactions in this enrichment with the isolation of a strain of Pseudomonas sp. The organism had characteristic metabolic versatility in metabolizing a variety of substrates including alcohols, aliphatic acids, amino acids, and sugars. Anaerobic growth was favoured with nitrate in the growth medium. Cells grown anaerobically with methanol, revealed maximal nitrate reductase activity. Constitutive oxidative activity of the membrane system emerged from the high-specific oxygen uptake and nitrate reductase activities of the aerobically and anerobically grown cells respectively. Cells grown anaerobically on various alcohols effectively oxidized methanol in the presence of flavins, cofactor FAD and the methanogenic cofactor F420, suggesting a constitutive alcohol oxidizing capacity. In cells grown anaerobically on methanol, the rate of methanol oxidation with F420 was three times that of FAD. Efficient utilization of alcohols in the presence of F420 is a novel feature of the present study. The results suggest that utilization of methanol by the mixed culture would involve metabolic interactions between the Pseudomonas sp. and the methanogen(s). Methylotrophic, methanogenic partnership involving an aerobe is a novel feature hitherto unreported among anaerobic syntrophic associations and is of ecological significance.
About the journal
JournalJournal of Biosciences
PublisherIndian Academy of Sciences
ISSN02505991
Open AccessNo
Concepts (34)
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    Alcohol derivative
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    ALIPHATIC CARBOXYLIC ACID
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    Amino acid
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    Carbohydrate derivative
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    Flavine adenine nucleotide
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    Methanol
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    Nitrate
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    Oxidoreductase
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    Quercetin
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    INTERSPECIFIC INTERACTION
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    METHANOGENIC BACTERIUM
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    MICROBIAL ECOLOGY
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    AEROBIC BACTERIUM
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    ALCOHOL CONSUMPTION
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    Alcohol oxidation
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    Anaerobic growth
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    Article
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    Bacterial metabolism
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    Bacterial strain
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    Bacterium culture
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    Bacterium isolation
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    Cell growth
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    Culture medium
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    Enzyme activity
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    Membrane
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    Methanobacterium
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    METHYLOTROPHIC BACTERIUM
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    Microorganism
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    Nonhuman
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    Oxidation
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    Oxygen consumption
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    Pseudomonas
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    Bacteria (microorganisms)
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    Pseudomonas sp.