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Journal of Bacteriology|February 28, 2012
Physiological and proteomic adaptation of "Aromatoleum aromaticum" EbN1 to low growth rates in benzoate-limited, anoxic chemostatsKathleen Trautwein, Sven Lahme, Lars Wöhlbrand, et al.Applied and Environmental Microbiology|September 28, 2014
Anaerobic activation of p-cymene in denitrifying betaproteobacteria: methyl group hydroxylation versus addition to fumarateAnnemieke Strijkstra, Kathleen Trautwein, René Jarling, et al.Microbiome|September 13, 2017
More than 2500 years of oil exposure shape sediment microbiomes with the potential for syntrophic degradation of hydrocarbons linked to methanogenesisAntonios Michas, Gisle Vestergaard, Kathleen Trautwein, et al.Microbial Physiology|September 22, 2020
Global Response of Phaeobacter inhibens DSM 17395 to Deletion of Its 262-kb Chromid Encoding Antibiotic SynthesisDaniel Wünsch, Annemieke Strijkstra, Lars Wöhlbrand, et al.Proteomics|April 30, 2013
Dynamics of amino acid utilization in Phaeobacter inhibens DSM 17395Hajo Zech, Michael Hensler, Sebastian Koßmehl, et al.FEMS Microbiology Ecology|May 10, 2017
Non-Redfield, nutrient synergy and flexible internal elemental stoichiometry in a marine bacteriumKathleen Trautwein, Christoph Feenders, Reiner Hulsch, et al.Proteomics|April 25, 2013
Adaptation of Phaeobacter inhibens DSM 17395 to growth with complex nutrientsHajo Zech, Michael Hensler, Sebastian Koßmehl, et al.Environmental Microbiology|October 30, 2013
Pathways and substrate-specific regulation of amino acid degradation in Phaeobacter inhibens DSM 17395 (archetype of the marine Roseobacter clade)Katharina Drüppel, Michael Hensler, Kathleen Trautwein, et al.Environmental Microbiology|May 29, 2016
Native plasmids restrict growth of Phaeobacter inhibens DSM 17395: Energetic costs of plasmids assessed by quantitative physiological analysesKathleen Trautwein, Sabine Eva Will, Reiner Hulsch, et al.FEMS Microbiology Ecology|August 21, 2018
The marine bacterium Phaeobacter inhibens secures external ammonium by rapid buildup of intracellular nitrogen stocksKathleen Trautwein, Michael Hensler, Katharina Wiegmann, et al.Pageof 3