Bernd Blasius
Bernd Blasius
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Microbial physiology governs the oceanic distribution of dissolved organic carbon in a scenario of equal degradability
Amino Acid and Sugar Catabolism in the Marine Bacterium Phaeobacter inhibens DSM 17395 from an Energetic Viewpoint
Long-term stability of marine dissolved organic carbon emerges from a neutral network of compounds and microbes
The marine bacterium Phaeobacter inhibens secures external ammonium by rapid buildup of intracellular nitrogen stocks
Complementary metaproteomic approaches to assess the bacterioplankton response toward a phytoplankton spring bloom in the Southern North Sea
Influence of nanoLC column and gradient length as well as MS/MS frequency and sample complexity on shotgun protein identification of marine bacteria
Non-Redfield, nutrient synergy and flexible internal elemental stoichiometry in a marine bacterium
Functional molecular diversity of marine dissolved organic matter is reduced during degradation
Evolutionary food web models: effects of an additional resource
Native plasmids restrict growth of Phaeobacter inhibens DSM 17395: energetic costs of plasmids assessed by quantitative physiological analyses
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