The physiology of Aspergillus niger was studied under different aeration conditions. Five different aeration rates were investigated in batch cultivations of A. niger grown on xylose. Biomass, intra- and extra-cellular metabolites profiles were determined and ten different enzyme activities in the central carbon metabolism were assessed. The focus was on organic acid production with a special interest in succinate production. The fermentations revealed that oxygen limitation significantly changes the physiology of the micro-organism. Changes in extra cellular metabolite profiles were observed, that is, there was a drastic increase in polyol production (erythritol, xylitol, glycerol, arabitol, and mannitol) and to a lesser extent in the prod...
Abstract Background The filamentous fungus Aspergillus niger is well-known as a producer of primary ...
Oxygenation is an important parameter involved in the design and operation of mixing-sparging biorea...
Abstract: The majority of black Aspergilli, including Aspergillus niger. Here, we provide to evidenc...
In industrial production of enzymes using the filamentous fungus Aspergilhis niger supply of suffici...
The influence of aeration on the fermentation of a mixture of glucose and xylose by the naturally xy...
A kinetic model for xylose catabolism in Aspergillus is proposed. From a thermodynamic analysis it w...
Oxygen enrichment (sparging bioreactors with oxygen-enriched air) ameliorates oxygen limitation in b...
The acuB gene of Aspergillus niger is an ortholog of facB in Aspergillus nidulans. Under carbon-repr...
The fungus Rhizopus oryzae converts both glucose and xylose under aerobic conditions into chirally p...
The filamentous fungus Aspergillus niger is well-known as an industrial producer of a number of orga...
In view of the high citric acid production capacity of Aspergillus niger, it should be well suited a...
Filamentous fungi have been of great importance in the biotechnology industry for many years, being ...
The physiological phenotype of Aspergillus nidulans was investigated for different genetic and envir...
Cultivations of Aspergillus niger cells in which oxygen was provided through the liquid-phase oxygen...
In its natural environment, the filamentous fungus Aspergillus niger grows on decaying fruits and pl...
Abstract Background The filamentous fungus Aspergillus niger is well-known as a producer of primary ...
Oxygenation is an important parameter involved in the design and operation of mixing-sparging biorea...
Abstract: The majority of black Aspergilli, including Aspergillus niger. Here, we provide to evidenc...
In industrial production of enzymes using the filamentous fungus Aspergilhis niger supply of suffici...
The influence of aeration on the fermentation of a mixture of glucose and xylose by the naturally xy...
A kinetic model for xylose catabolism in Aspergillus is proposed. From a thermodynamic analysis it w...
Oxygen enrichment (sparging bioreactors with oxygen-enriched air) ameliorates oxygen limitation in b...
The acuB gene of Aspergillus niger is an ortholog of facB in Aspergillus nidulans. Under carbon-repr...
The fungus Rhizopus oryzae converts both glucose and xylose under aerobic conditions into chirally p...
The filamentous fungus Aspergillus niger is well-known as an industrial producer of a number of orga...
In view of the high citric acid production capacity of Aspergillus niger, it should be well suited a...
Filamentous fungi have been of great importance in the biotechnology industry for many years, being ...
The physiological phenotype of Aspergillus nidulans was investigated for different genetic and envir...
Cultivations of Aspergillus niger cells in which oxygen was provided through the liquid-phase oxygen...
In its natural environment, the filamentous fungus Aspergillus niger grows on decaying fruits and pl...
Abstract Background The filamentous fungus Aspergillus niger is well-known as a producer of primary ...
Oxygenation is an important parameter involved in the design and operation of mixing-sparging biorea...
Abstract: The majority of black Aspergilli, including Aspergillus niger. Here, we provide to evidenc...