Metabolic flexibility is the key to the ecological success of the marine Roseobacter clade bacteria. We investigated the metabolic adaptation and the underlying changes in gene expression of Dinoroseobacter shibae DFL12(T) to anoxic life by a combination of metabolome, proteome, and transcriptome analyses. Time-resolved studies during continuous oxygen depletion were performed in a chemostat using nitrate as the terminal electron acceptor. Formation of the denitrification machinery was found enhanced on the transcriptional and proteome level, indicating that D. shibae DFL12(T) established nitrate respiration to compensate for the depletion of the electron acceptor oxygen. In parallel, arginine fermentation was induced. During the transition...
Bakterielle aerobe anoxygene Photosynthese (AAP) ist ein bedeutenter Mechanismus zur Energiegewinnun...
Oceans are powered by active, metabolically diverse microorganisms, which are important in regulatin...
<div><p>Aerobic anoxygenic phototrophs (AAPs) as being photoheterotrophs require organic substrates ...
Dinoroseobacter shibae is an aerobic anoxygenic phototroph and able to utilize light energy to suppo...
Aerobic anoxygenic phototrophic bacteria (AAP) are abundant in the photic zone of the marine environ...
Dinoroseobacter shibae is a marine bacterium and belongs to the ubiquitously found Roseobacter clade...
The heterotrophic marine bacterium Dinoroseobacter shibae utilizes aerobic respiration and anaerobic...
Dinoroseobacter shibae living in the photic zone of marine ecosystems is frequently exposed to oxyge...
Dinoroseobacter shibae is a member of the Roseobacter clade, a dominant group of marine bacteria. Th...
The Roseobacter clade is a ubiquitous group of marine a-proteobacteria. To gain insight into the ver...
<div><p>The <i>Roseobacter</i> clade is a ubiquitous group of marine <i>α</i>-<i>proteobacteria</i>....
Marine bacteria face many biotic and abiotic challenges in their natural environment. These include ...
Marine bacteria essentially contribute to the marine life and are thus globally of importance. Howev...
Roseobacter litoralis OCh149 is a type strain of aerobic anoxygenic phototrophic bacteria in marine ...
Aerobic anoxygenic phototrophs (AAPs) as being photoheterotrophs require organic substrates for grow...
Bakterielle aerobe anoxygene Photosynthese (AAP) ist ein bedeutenter Mechanismus zur Energiegewinnun...
Oceans are powered by active, metabolically diverse microorganisms, which are important in regulatin...
<div><p>Aerobic anoxygenic phototrophs (AAPs) as being photoheterotrophs require organic substrates ...
Dinoroseobacter shibae is an aerobic anoxygenic phototroph and able to utilize light energy to suppo...
Aerobic anoxygenic phototrophic bacteria (AAP) are abundant in the photic zone of the marine environ...
Dinoroseobacter shibae is a marine bacterium and belongs to the ubiquitously found Roseobacter clade...
The heterotrophic marine bacterium Dinoroseobacter shibae utilizes aerobic respiration and anaerobic...
Dinoroseobacter shibae living in the photic zone of marine ecosystems is frequently exposed to oxyge...
Dinoroseobacter shibae is a member of the Roseobacter clade, a dominant group of marine bacteria. Th...
The Roseobacter clade is a ubiquitous group of marine a-proteobacteria. To gain insight into the ver...
<div><p>The <i>Roseobacter</i> clade is a ubiquitous group of marine <i>α</i>-<i>proteobacteria</i>....
Marine bacteria face many biotic and abiotic challenges in their natural environment. These include ...
Marine bacteria essentially contribute to the marine life and are thus globally of importance. Howev...
Roseobacter litoralis OCh149 is a type strain of aerobic anoxygenic phototrophic bacteria in marine ...
Aerobic anoxygenic phototrophs (AAPs) as being photoheterotrophs require organic substrates for grow...
Bakterielle aerobe anoxygene Photosynthese (AAP) ist ein bedeutenter Mechanismus zur Energiegewinnun...
Oceans are powered by active, metabolically diverse microorganisms, which are important in regulatin...
<div><p>Aerobic anoxygenic phototrophs (AAPs) as being photoheterotrophs require organic substrates ...