Geochemical variability and microbial metabolic functions in oligotrophic sediments exposed to minor seepage. [PDF]
Schnabel E +9 more
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Microbiologically influenced corrosion (MIC) potential of bentonite microorganisms: implications for a deep geological repository for nuclear waste. [PDF]
Černá K +7 more
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Carboxydotrophic Acetogenesis in Alkaline Conditions Results in Transient Formate Production by the Halo-Alkaliphilic Acetogen Haloacetibacter carboxydivorans Gen. Nov. sp. Nov. [PDF]
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Oxygen Tolerance Domestication of <i>Blautia</i> sp. AUH-JLD56 Enables Efficient Aerobic Bioconversion of Arctigenin to 3'-Demethylarctigenin. [PDF]
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Replicating lipid micelles: a feasible precursor to the origin of life and the earliest appearance of genomes. [PDF]
Nebert DW, Liu Z, Vasiliou V.
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Ecological and metabolic restructuring of anaerobic microbiomes under sulfate stress via magnetite-enhanced cooperative networks. [PDF]
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Systems Biology on Acetogenic Bacteria for Utilizing C1 Feedstocks
Advances in Biochemical Engineering/Biotechnology, 2022With a presence of the Wood-Ljungdahl pathway, acetogenic bacteria are capable of converting C1 feedstocks into biomass and various metabolites, receiving industrial interest in microbial production of biochemicals derived from C1 substrates. To understand C1 feedstock fermentation using acetogenic bacteria, most of the studies have focused on ...
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Acetogenic coccoid spore-forming bacteria isolated from the rumen
Thirteen strains of a new acetogenic bacterium were isolated from the rumen contents of lambs, llamas and bisons. This paper is the first report of Gram-positive coccoid spore-forming bacteria occurring in chains and able to use H2 + CO2 as energy source and produce acetate from this gas mixture.
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The Autotrophic Pathway of Acetate Synthesis in Acetogenic Bacteria
Annual Review of Microbiology, 1986SURVEY AND PROPERTIES OF ACETOGENS . . . . . . ... . . . . . . . . . . . . . . . . ... . . . . . . . . . . . . . . . . . 418 THE WOOD PATHWAY OF AUTOTROPHIC FIXATION OF CO2 INTO ACETATE . . . . . . . . . . . . . . . . . . . . . . . .. .. . . . . . . . . . . . . . . . . . . . . . .. .. . . . . . . . . . . . . . .... . . . . . . . . . . . 424 O utline of
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Decolorization of molasses wastewater by a strain No.BP103 of acetogenic bacteria
Bioresource Technology, 2004Among 170 strains of acetogenic bacteria, a strain No.BP103 showed the highest decolorization yield (76.4+/-3.2%) when cultivated at 30 degrees C for 5 days in molasses pigments medium containing glucose 3.0%, yeast extract 0.5%, KH2PO4 0.1% and MgSO4 x 7H2O 0.05% and the pH adjusted to 6.0. In addition this strain could decolorize 32.3+/-3.2% and 73.5+
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