Winery-derived biomass waste was degraded by Penicillium chrysogenum under solid state fermentation over 8 days in a 2H2O-supplemented medium. Multivariate statistical analysis of the gas chromatography-mass spectrometry (GC-MS) data resulted in the identification of 94 significant metabolites, within 28 different metabolic pathways. The majority of biomass sugars were utilized by day 4 to yield products such as sugars, fatty acids, isoprenoids, and amino acids. The fungus was observed to metabolize xylose to xylitol, an intermediate of ethanol production. However, enzyme inhibition and autolysis were observed from day 6, indicating 5 days as the optimal time for fermentation. P. chrysogenum displayed metabolism of pentoses (to alcohols) an...
International audienceFusarium oxysporum is one of the few filamentous fungi capable of fermenting e...
International audienceAs a complex microbial ecosystem, wine is a particularly interesting model for...
The filamentous fungus Fusarium oxysporum is known for its ability to produce ethanol by simultaneou...
Winery-derived biomass waste was degraded by Penicillium chrysogenum under solid state fermentation ...
BACKGROUND: Ascomycetes are capable of considerable lignocellulose degradation. However, there is li...
This paper illustrates the application of an untargeted metabolic profiling analysis of winery-deriv...
This paper illustrates the application of an untargeted metabolic profiling analysis of winery-deriv...
BACKGROUND: Recently, winery wastes have been classified as pollutants by the European Union and pos...
Background: Penicillium species are important producers of bioactive secondary metabolites. However,...
Penicillium spp. are known to harbor a wide array of secondary metabolites with cryptic bioactivitie...
Hydrothermal-treated (autoclaved) winery waste was degraded by Trichoderma harzianum, Aspergillus ni...
Australia is sixth largest global wine grape producer with an annual production of 1.75 million metr...
This work aimed at studying metabolome variations of marine fungal strains along their growth to hig...
Anthracnose is a disease caused by a fungal Colletotrichum gleosporioides. It is a common disease to...
Within this thesis the glucose metabolism in Penicillium chrysogenum, the most important production ...
International audienceFusarium oxysporum is one of the few filamentous fungi capable of fermenting e...
International audienceAs a complex microbial ecosystem, wine is a particularly interesting model for...
The filamentous fungus Fusarium oxysporum is known for its ability to produce ethanol by simultaneou...
Winery-derived biomass waste was degraded by Penicillium chrysogenum under solid state fermentation ...
BACKGROUND: Ascomycetes are capable of considerable lignocellulose degradation. However, there is li...
This paper illustrates the application of an untargeted metabolic profiling analysis of winery-deriv...
This paper illustrates the application of an untargeted metabolic profiling analysis of winery-deriv...
BACKGROUND: Recently, winery wastes have been classified as pollutants by the European Union and pos...
Background: Penicillium species are important producers of bioactive secondary metabolites. However,...
Penicillium spp. are known to harbor a wide array of secondary metabolites with cryptic bioactivitie...
Hydrothermal-treated (autoclaved) winery waste was degraded by Trichoderma harzianum, Aspergillus ni...
Australia is sixth largest global wine grape producer with an annual production of 1.75 million metr...
This work aimed at studying metabolome variations of marine fungal strains along their growth to hig...
Anthracnose is a disease caused by a fungal Colletotrichum gleosporioides. It is a common disease to...
Within this thesis the glucose metabolism in Penicillium chrysogenum, the most important production ...
International audienceFusarium oxysporum is one of the few filamentous fungi capable of fermenting e...
International audienceAs a complex microbial ecosystem, wine is a particularly interesting model for...
The filamentous fungus Fusarium oxysporum is known for its ability to produce ethanol by simultaneou...