This work aimed at studying metabolome variations of marine fungal strains along their growth to highlight the importance of the parameter “time” for new natural products discovery. An untargeted time-scale metabolomic study has been performed on two different marine-derived Penicillium strains. They were cultivated for 18 days and their crude extracts were analyzed by HPLC-DAD-HRMS (High Performance Liquid Chromatography-Diode Array Detector-High Resolution Mass Spectrometry) each day. With the example of griseofulvin biosynthesis, a pathway shared by both strains, this work provides a new approach to study biosynthetic pathway regulations, which could be applied to other metabolites and more particularly new ones. Moreover, the results of...
An LC-MS-based metabolomics approach was used to characterise the variation in secondary metabolite ...
Winery-derived biomass waste was degraded by Penicillium chrysogenum under solid state fermentation ...
Co-culture is known as an efficient way to explore the metabolic potential of fungal strains for new...
Un des axes de recherche porté par le laboratoire Mer-Molécules-Santé de l’Université de Nantes cons...
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...
In a screening of Basidiomycete cultures isolated from marine invertebrates collected along the Chil...
In recent years, the search for novel natural compounds with bioactive properties has received a rem...
Very little is known about chemical interactions between fungi and their mollusc host within marine ...
Marine fungi represent a huge potential for new natural products and an increased number of new meta...
Co-culture is known as an efficient way to explore the metabolic potential of fungal strains for new...
Discovery of novel bioactive metabolites from marine bacteria is becoming increasingly challenging, ...
Marine-derived fungi are an important source of many valuable compounds with original structures and...
Filamentous fungi constitute a rich reservoir of pharmaceutically relevant bioactive small molecules...
2013-04-25Fungi are known to produce a wide variety of secondary metabolites with biological activit...
An LC-MS-based metabolomics approach was used to characterise the variation in secondary metabolite ...
Winery-derived biomass waste was degraded by Penicillium chrysogenum under solid state fermentation ...
Co-culture is known as an efficient way to explore the metabolic potential of fungal strains for new...
Un des axes de recherche porté par le laboratoire Mer-Molécules-Santé de l’Université de Nantes cons...
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...
In a screening of Basidiomycete cultures isolated from marine invertebrates collected along the Chil...
In recent years, the search for novel natural compounds with bioactive properties has received a rem...
Very little is known about chemical interactions between fungi and their mollusc host within marine ...
Marine fungi represent a huge potential for new natural products and an increased number of new meta...
Co-culture is known as an efficient way to explore the metabolic potential of fungal strains for new...
Discovery of novel bioactive metabolites from marine bacteria is becoming increasingly challenging, ...
Marine-derived fungi are an important source of many valuable compounds with original structures and...
Filamentous fungi constitute a rich reservoir of pharmaceutically relevant bioactive small molecules...
2013-04-25Fungi are known to produce a wide variety of secondary metabolites with biological activit...
An LC-MS-based metabolomics approach was used to characterise the variation in secondary metabolite ...
Winery-derived biomass waste was degraded by Penicillium chrysogenum under solid state fermentation ...
Co-culture is known as an efficient way to explore the metabolic potential of fungal strains for new...