ABSTRACT The filamentous fungus Aspergillus nidulans has been a primary workhorse used to understand fungal genetics. Much of this work has focused on elucidating the genetics of biosynthetic gene clusters (BGCs) and the secondary metabolites (SMs) they produce. SMs are both niche defining in fungi and of great economic importance to humans. Despite the focus on A. nidulans, very little is known about the natural diversity in secondary metabolism within this species. We determined the BGC content and looked for evolutionary patterns in BGCs from whole-genome sequences of two clinical isolates and the A4 reference genome of A. nidulans. Differences in BGC content were used to explain SM profiles determined using liquid chromatography–high-re...
The fungal genus of Aspergillus is highly interesting, containing everything from industrial cell fa...
Filamentous fungi constitute a rich reservoir of pharmaceutically relevant bioactive small molecules...
Abstract: Background Ecological diversity in fungi is largely defined by metabolic traits, including...
The filamentous fungus Aspergillus nidulans has been a primary workhorse used to understand fungal g...
<div><p>Secondary metabolites (SMs) produced by <i>Aspergillus</i> have been extensively studied for...
Secondary metabolites (SMs) produced by Aspergillus have been extensively studied for their crucial ...
Fungal secondary metabolites are a rich source of medically useful compounds due to their pharmaceut...
Drivers of genetic diversity in secondary metabolic gene clusters within a fungal speciesFilamentous...
2012-07-25Natural products (secondary metabolites) are an abundant source of bioactive compounds. Th...
Fungi produce a wealth of pharmacologically bioactive secondary metabolites (SMs) from biosynthetic ...
Aspergillus section Nigri comprises filamentous fungi relevant to biomedicine, bioenergy, health, an...
Aspergillus section Nigri comprises filamentous fungi relevant to biomedicine, bioenergy, health, an...
2015-03-31Filamentous fungi, such as species found within the genus Aspergillus, are known to produc...
2018-05-02Filamentous fungi have historically been a rich source of therapeutically relevant natural...
<div><p>Filamentous fungi produce diverse secondary metabolites (SMs) essential to their ecology and...
The fungal genus of Aspergillus is highly interesting, containing everything from industrial cell fa...
Filamentous fungi constitute a rich reservoir of pharmaceutically relevant bioactive small molecules...
Abstract: Background Ecological diversity in fungi is largely defined by metabolic traits, including...
The filamentous fungus Aspergillus nidulans has been a primary workhorse used to understand fungal g...
<div><p>Secondary metabolites (SMs) produced by <i>Aspergillus</i> have been extensively studied for...
Secondary metabolites (SMs) produced by Aspergillus have been extensively studied for their crucial ...
Fungal secondary metabolites are a rich source of medically useful compounds due to their pharmaceut...
Drivers of genetic diversity in secondary metabolic gene clusters within a fungal speciesFilamentous...
2012-07-25Natural products (secondary metabolites) are an abundant source of bioactive compounds. Th...
Fungi produce a wealth of pharmacologically bioactive secondary metabolites (SMs) from biosynthetic ...
Aspergillus section Nigri comprises filamentous fungi relevant to biomedicine, bioenergy, health, an...
Aspergillus section Nigri comprises filamentous fungi relevant to biomedicine, bioenergy, health, an...
2015-03-31Filamentous fungi, such as species found within the genus Aspergillus, are known to produc...
2018-05-02Filamentous fungi have historically been a rich source of therapeutically relevant natural...
<div><p>Filamentous fungi produce diverse secondary metabolites (SMs) essential to their ecology and...
The fungal genus of Aspergillus is highly interesting, containing everything from industrial cell fa...
Filamentous fungi constitute a rich reservoir of pharmaceutically relevant bioactive small molecules...
Abstract: Background Ecological diversity in fungi is largely defined by metabolic traits, including...