AbstractChromatin modifications and heterochromatic marks have been shown to be involved in the regulation of secondary metabolism gene clusters in the fungal model system Aspergillus nidulans. We examine here the role of HEP1, the heterochromatin protein homolog of Fusarium graminearum, for the production of secondary metabolites. Deletion of Hep1 in a PH-1 background strongly influences expression of genes required for the production of aurofusarin and the main tricothecene metabolite DON. In the Hep1 deletion strains AUR genes are highly up-regulated and aurofusarin production is greatly enhanced suggesting a repressive role for heterochromatin on gene expression of this cluster. Unexpectedly, gene expression and metabolites are lower fo...
Background Genes for the production of a broad range of fungal secondary metabolites are frequently ...
Chromatin complexes control a vast number of epigenetic developmental processes. Filamentous fungi p...
The genome of the wheat pathogenic fungus, Zymoseptoria tritici, represents extensive presence-absen...
AbstractChromatin modifications and heterochromatic marks have been shown to be involved in the regu...
Das Heterochromatin Protein-1 (HP1) Ortholog "Hep1" wurde in Fusarium graminearum deletiert, um Chro...
Fungal secondary metabolites are small molecules that exhibit diverse biological activities exploite...
Fungal secondary metabolites are small molecules that exhibit diverse biological activities exploite...
The cereal pathogen Fusarium graminearum produces secondary metabolites toxic to humans and animals,...
The eukaryotic epigenetic machinery can be modified by bacteria to reprogram the response of eukaryo...
An outstanding feature of filamentous fungi is their ability to produce a wide variety of small bioa...
AU Through: Pleaseconfirmthatallheadinglevelsarerepresentedcorrectly the association of protein comp...
The filamentous fungus Aspergillus clavatus is known to produce a variety of secondary metabolites (...
Pathogenic fungi possess chromatin modification mechanisms that are involved in their virulence and ...
Histone modifications are crucial for the regulation of secondary metabolism in various filamentous ...
Fusarium is a species-rich group of mycotoxigenic plant pathogens that ranks as one of the most econ...
Background Genes for the production of a broad range of fungal secondary metabolites are frequently ...
Chromatin complexes control a vast number of epigenetic developmental processes. Filamentous fungi p...
The genome of the wheat pathogenic fungus, Zymoseptoria tritici, represents extensive presence-absen...
AbstractChromatin modifications and heterochromatic marks have been shown to be involved in the regu...
Das Heterochromatin Protein-1 (HP1) Ortholog "Hep1" wurde in Fusarium graminearum deletiert, um Chro...
Fungal secondary metabolites are small molecules that exhibit diverse biological activities exploite...
Fungal secondary metabolites are small molecules that exhibit diverse biological activities exploite...
The cereal pathogen Fusarium graminearum produces secondary metabolites toxic to humans and animals,...
The eukaryotic epigenetic machinery can be modified by bacteria to reprogram the response of eukaryo...
An outstanding feature of filamentous fungi is their ability to produce a wide variety of small bioa...
AU Through: Pleaseconfirmthatallheadinglevelsarerepresentedcorrectly the association of protein comp...
The filamentous fungus Aspergillus clavatus is known to produce a variety of secondary metabolites (...
Pathogenic fungi possess chromatin modification mechanisms that are involved in their virulence and ...
Histone modifications are crucial for the regulation of secondary metabolism in various filamentous ...
Fusarium is a species-rich group of mycotoxigenic plant pathogens that ranks as one of the most econ...
Background Genes for the production of a broad range of fungal secondary metabolites are frequently ...
Chromatin complexes control a vast number of epigenetic developmental processes. Filamentous fungi p...
The genome of the wheat pathogenic fungus, Zymoseptoria tritici, represents extensive presence-absen...