Bacillus megaterium is a bacterium of great importance as a plant-beneficial bacterium in agricultural applications and in industrial bioproduction of proteins. Understanding intracellular processing of carbohydrates in this species is crucial to predicting natural carbon utilization as well as informing strategies in metabolic engineering. Here, we applied stable isotope-assisted metabolomics profiling and metabolic flux analysis to elucidate, at high resolution, the connections of the different catabolic routes for carbohydrate metabolism immediately following substrate uptake in B. megaterium QM B1551. We performed multiple 13C tracer experiments to obtain both kinetic and long-term 13C profiling of intracellular metabolites. In addition...
A recently discovered thermophilic bacterium, Geobacillus thermoglucosidasius M10EXG, ferments a ran...
We analyzed the carbon fluxes in the central metabolism of Geobacter metallireducens strain GS-15 u...
In this study, we show that glucose catabolism in Pseudomonas putida occurs through the simultaneous...
Bacillus megaterium is a bacterium of great importance as a plant-beneficial bacterium in agricultur...
We investigated the central carbon metabolism of Bacillus megaterium QM B1551 cells using various ca...
We investigated the central carbon metabolism of Bacillus megaterium QM B1551 cells using various ca...
Cellulolytic bacteria have the potential to perform lignocellulose hydrolysis and fermentation simul...
Cellulolytic bacteria have the potential to perform lignocellulose hydrolysis and fermentation simul...
Cellulolytic bacteria have the potential to perform lignocellulose hydrolysis and fermentation simul...
Commonly glucose is considered to be the only preferred substrate in Bacillus subtilis whose presenc...
Background: Aspergillus niger is widely used for enzyme production and achievement of high enzyme pr...
Gluconobacter oxydans 621H is used as an industrial production organism due to its exceptional abili...
Abstract Background l-Arabinose is the second most abundant component of hemicellulose in lignocellu...
The Gram-positive bacterium Corynebacterium glutamicum is used for the industrial production of amin...
International audienceBacillus methanolicus MGA3 is a thermotolerant and relatively fast-growing met...
A recently discovered thermophilic bacterium, Geobacillus thermoglucosidasius M10EXG, ferments a ran...
We analyzed the carbon fluxes in the central metabolism of Geobacter metallireducens strain GS-15 u...
In this study, we show that glucose catabolism in Pseudomonas putida occurs through the simultaneous...
Bacillus megaterium is a bacterium of great importance as a plant-beneficial bacterium in agricultur...
We investigated the central carbon metabolism of Bacillus megaterium QM B1551 cells using various ca...
We investigated the central carbon metabolism of Bacillus megaterium QM B1551 cells using various ca...
Cellulolytic bacteria have the potential to perform lignocellulose hydrolysis and fermentation simul...
Cellulolytic bacteria have the potential to perform lignocellulose hydrolysis and fermentation simul...
Cellulolytic bacteria have the potential to perform lignocellulose hydrolysis and fermentation simul...
Commonly glucose is considered to be the only preferred substrate in Bacillus subtilis whose presenc...
Background: Aspergillus niger is widely used for enzyme production and achievement of high enzyme pr...
Gluconobacter oxydans 621H is used as an industrial production organism due to its exceptional abili...
Abstract Background l-Arabinose is the second most abundant component of hemicellulose in lignocellu...
The Gram-positive bacterium Corynebacterium glutamicum is used for the industrial production of amin...
International audienceBacillus methanolicus MGA3 is a thermotolerant and relatively fast-growing met...
A recently discovered thermophilic bacterium, Geobacillus thermoglucosidasius M10EXG, ferments a ran...
We analyzed the carbon fluxes in the central metabolism of Geobacter metallireducens strain GS-15 u...
In this study, we show that glucose catabolism in Pseudomonas putida occurs through the simultaneous...