Drivers of genetic diversity in secondary metabolic gene clusters within a fungal speciesFilamentous fungi produce a diverse array of secondary metabolites (SMs) critical for defense, virulence, and communication. The metabolic pathways that produce SMs are found in contiguous gene clusters in fungal genomes, an atypical arrangement for metabolic pathways in other eukaryotes. Comparative studies of filamentous fungal species have shown that SM gene clusters are often either highly divergent or uniquely present in one or a handful of species, hampering efforts to determine the genetic basis and evolutionary drivers of SM gene cluster divergence. Here, we examined SM variation in 66 cosmopolitan strains of a single species, the opportunistic ...
We present the genome sequences of a new clinical isolate of the important human pathogen, Aspergill...
Shifts in fundamental ecological niche and competitive strategies are apparent in many lineages of A...
Aspergillus fumigatus is a deadly agent of human fungal disease, where virulence heterogeneity is th...
Extensive adaptability and diversity in fungi, even among closely related species, enable them to oc...
Fungi produce a wealth of pharmacologically bioactive secondary metabolites (SMs) from biosynthetic ...
Secondary metabolites (SMs) produced by Aspergillus have been extensively studied for their crucial ...
ABSTRACT The filamentous fungus Aspergillus nidulans has been a primary workhorse used to understand...
<p>The tree is midpoint rooted and all branches with bootstrap support less than 80% are collapsed. ...
Ecological diversity in fungi is largely defined by metabolic traits, including the ability to produ...
<div><p>Secondary metabolites (SMs) produced by <i>Aspergillus</i> have been extensively studied for...
Abstract: Background Ecological diversity in fungi is largely defined by metabolic traits, including...
Gene clusters comprise genomically co-localized and potentially co-regulated genes that tend to be c...
<div><p>Fungi contain a remarkable range of metabolic pathways, sometimes encoded by gene clusters, ...
THESIS 8605Filamentous fungi are important producers of secondary metabolites (SMs), together with p...
<div><p>Genomic analyses of fungal genome structure have revealed the presence of physically-linked ...
We present the genome sequences of a new clinical isolate of the important human pathogen, Aspergill...
Shifts in fundamental ecological niche and competitive strategies are apparent in many lineages of A...
Aspergillus fumigatus is a deadly agent of human fungal disease, where virulence heterogeneity is th...
Extensive adaptability and diversity in fungi, even among closely related species, enable them to oc...
Fungi produce a wealth of pharmacologically bioactive secondary metabolites (SMs) from biosynthetic ...
Secondary metabolites (SMs) produced by Aspergillus have been extensively studied for their crucial ...
ABSTRACT The filamentous fungus Aspergillus nidulans has been a primary workhorse used to understand...
<p>The tree is midpoint rooted and all branches with bootstrap support less than 80% are collapsed. ...
Ecological diversity in fungi is largely defined by metabolic traits, including the ability to produ...
<div><p>Secondary metabolites (SMs) produced by <i>Aspergillus</i> have been extensively studied for...
Abstract: Background Ecological diversity in fungi is largely defined by metabolic traits, including...
Gene clusters comprise genomically co-localized and potentially co-regulated genes that tend to be c...
<div><p>Fungi contain a remarkable range of metabolic pathways, sometimes encoded by gene clusters, ...
THESIS 8605Filamentous fungi are important producers of secondary metabolites (SMs), together with p...
<div><p>Genomic analyses of fungal genome structure have revealed the presence of physically-linked ...
We present the genome sequences of a new clinical isolate of the important human pathogen, Aspergill...
Shifts in fundamental ecological niche and competitive strategies are apparent in many lineages of A...
Aspergillus fumigatus is a deadly agent of human fungal disease, where virulence heterogeneity is th...