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The limits to growth – energetic burden of the endogenous antibiotic tropodithietic acid in Phaeobacter inhibens DSM 17395, , , , , and . PLOS ONE, 12 (5): 1-11 (May 2017)Clostridioides difficile 630Δerm in silico and in vivo – quantitative growth and extensive polysaccharide secretion, , , and . FEBS Open Bio, 7 (4): 602--615 (2017)BRENDA, the ELIXIR core data resource in 2021: new developments and updates., , , , , , , , and . Nucleic Acids Res., 49 (Database-Issue): D498-D508 (2021)A systems biology approach reveals major metabolic changes in the thermoacidophilic archaeon Sulfolobus solfataricus in response to the carbon source L-fucose versus D-glucose, , , , , , , , , and 9 other author(s). Molecular Microbiology, 102 (5): 882--908 (2016)Native plasmids restrict growth of Phaeobacter inhibens DSM 17395: Energetic costs of plasmids assessed by quantitative physiological analyses, , , , , , , , , and 8 other author(s). Environmental Microbiology, 18 (12): 4817--4829 (2016)Manual curation and reannotation of the genomes of Clostridium difficile 630DELTAerm and C. difficile 630, , , , , , , , , and 1 other author(s). Journal of Medical Microbiology, 66 (3): 286--293 (March 2017)The Impact of Pyroglutamate: Sulfolobus acidocaldarius Has a Growth Advantage over Saccharolobus solfataricus in Glutamate-Containing Media, , , and . Archaea, (April 2019)Time-resolved amino acid uptake of Clostridium difficile 630Δerm and concomitant fermentation product and toxin formation., , , and . BMC Microbiology, 15 (1): 281 (December 2015)Oxidative Stickland reactions in an obligate aerobic organism – amino acid catabolism in the Crenarchaeon Sulfolobus solfataricus, , , , , , , , , and . The FEBS Journal, 284 (13): 2078--2095 (2017)