H2 as an energy source for mixotrophic acetogenesis from the reduction of CO2 and syringate by Acetobacterium woodii and Eubacterium limosum
Author:
Publisher
Springer Science and Business Media LLC
Subject
Applied Microbiology and Biotechnology,General Medicine,Microbiology
Link
http://link.springer.com/content/pdf/10.1007/BF00298382.pdf
Reference42 articles.
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2. Bak F, Finster K, Rothfuß F (1992) Formation of dimethylsulfide and methanethiol from methoxylated aromatic compounds and inorganic sulfide by newly isolated anaerobic bacteria. Arch Microbiol 157:529?534
3. Berman MH, Frazer AC (1992) Importance of tetrahydrofolate and ATP in the anaerobic O-demethylation reaction for phenylmethylethers. App Environ Microbiol 58:925?931
4. Brauman A, Kane MD, Labat M, Breznak JA (1992) Genesis of acetate and methane by gut bacteria of nutritionally diverse termites. Science 257:1384?1387
5. Breznak JA (1994) Acetogenesis from carbon dioxide in termite guts. In: Drake HL (ed) Acetogenesis. New York: Chapman & Hall, pp 303?330
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1. Overcoming Energetic Barriers in Acetogenic C1 Conversion;Frontiers in Bioengineering and Biotechnology;2020-12-23
2. Regulation of lactate metabolism in the acetogenic bacteriumAcetobacterium woodii;Environmental Microbiology;2018-10-24
3. Obligate Sulfide-Dependent Degradation of Methoxylated Aromatic Compounds and Formation of Methanethiol and Dimethyl Sulfide by a Freshwater Sediment Isolate, Parasporobacterium paucivorans gen. nov., sp. nov;Applied and Environmental Microbiology;2001-09
4. Characterization of Two Subsurface H 2 -Utilizing Bacteria, Desulfomicrobium hypogeium sp. nov. and Acetobacterium psammolithicum sp. nov., and Their Ecological Roles;Applied and Environmental Microbiology;1999-06
5. An improved colorimetric assay for vicinal diol determination by Ti(III) and its utilization for reporting microbial O-demethylation;Journal of Microbiological Methods;1997-05
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