Inhaltsbereich
Publications
(Co) Author: Rabus, R.
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(2012): Stereochemical investigations reveal the mechanism of the bacterial activation of n-alkanes without oxygen. Angewandte Chemie-International Edition, 51, 6, 1334-1338.
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(2012): Anaerobic degradation of 4-methylbenzoate via a specific 4-methylbenzoyl-CoA pathway. Environmental Microbiology, 14, 5, 1118-1132.
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(2012): Physiological and proteomic adaptation of 'Aromatoleum aromaticum' EbN1 to low growth rates in benzoate-limited, anoxic chemostats. Journal of Bacteriology, 194, 9, 2165-2180.
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(2012): Proteogenomic evidence for β-oxidation of plant-derived 3-phenylpropanoids in 'Aromatoleum aromaticum' EbN1. Proteomics, 12, 9, 1402-1413.
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(2011): Co-metabolic conversion of toluene in anaerobic n-alkane-degrading bacteria. Environmental Microbiology, 13, 9, 2576-2586.
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(2011): Alkane degradation under anoxic conditions by a nitrate-reducing bacterium with possible involvement of the electron acceptor in substrate activation. Environmental Microbiology Reports, 3, 1, 125-135.
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(2010): Stress-Induced Changes of Phospholipids in Betaproteobacterium Aromatoleum aromaticum Strain EbN1 due to Alkylbenzene Growth Substrates. Journal of Molecular Microbiology and Biotechnology, 18, 2, 92-101.| EDOC: 14798 | 10.1159/000287988 |
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(2009): Anaerobic degradation of naphthalene and 2-methylnaphthalene by strains of marine sulfate-reducing bacteria. Environmental Microbiology, 11, 1, 209-219.
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(2009): Proteogenomic insights into anaerobic biodegradation of hydrocarbons. Geochimica et Cosmochimica Acta, 73, 13, Suppl. 1, A1065.| EDOC: 14467 |
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(2008): Anaerobic Degradation of p-Ethylphenol by 'Aromatoleum aromaticum' Strain EbN1: Pathway, Regulation, and Involved Proteins. Journal of Bacteriology, 190, 16, 5699-5709.
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(2007): Controls on microbial activity and compositional alteration of crude oil during in-reservoir biodegradation. Geochimica et Cosmochimica Acta, 71, 15, Suppl. 1, A1115.| EDOC: 10398 |
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(2004): Anaerobic biodegradation of light hydrocarbons in crude oil: A comparison of laboratory experiments and field data. Geochimica et Cosmochimica Acta, 68, 11, Suppl. 1, A231.| EDOC: 15699 |
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(2003): Formation of n-alkane- and cycloalkane-derived organic acids during anaerobic growth of a denitrifying bacterium with crude oil. Organic Geochemistry, 34, 9, 1313-1323.
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(2002): Anaerobic degradation of n-hexane in a denitrifying bacterium: Further degradation of the initial intermediate (1-methylpentyl)succinate via C-skeleton rearrangement. Archives of Microbiology, 177, 3, 235-243.
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(2002): Anaerobic degradation of n-hexane in a denitrifying bacterium: Further degradation of the initial intermediate (1-methylpentyl)succinate via C-skeleton rearrangement. Archives of Microbiology, 177, 3, 235-243.| EDOC: 3171 | Abstract |
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(2001): Anaerobic initial reaction of n-alkanes in a denitrifying bacterium: Evidence for (1-methylpentyl)succinate as initial product and for involvement of an organic radical in n-hexane metabolism. Journal of Bacteriology, 183, 5, 1707-1715.


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