Lichen-forming fungi produce a variety of secondary metabolites including bioactive polyketides. Advances in DNA and RNA sequencing have led to a growing database of new lichen gene clusters encoding polyketide synthases (PKS) and associated ancillary activities. Definitive assignment of a PKS gene to a metabolic product has been challenging in the lichen field due to a lack of established gene knockout or heterologous gene expression systems. Here, we report the reconstitution of a non-reducing PKS gene from the lichen Pseudevernia furfuracea and successful heterologous expression of the synthetic lichen PKS gene in engineered Saccharomyces cerevisiae. We show that P. furfuracea PFUR17_02294 produces lecanoric acid, the depside dimer of or...
Fungi involved in lichen symbioses produce a large array of secondary metabolites that are often dia...
We characterize the transcript of a polyketide synthase gene (PKS) from the cultured mycobiont of Xa...
Lichens are known to produce many novel bioactive metabolites. To date, approximately 1,000 secondar...
Polyketides are a group of secondary metabolites produced by a wide range of living organisms – bact...
Lichens produce a diverse array of secondary metabolites that have shown various biological activiti...
Lichens produce a diverse array of secondary metabolites that have shown various biological activiti...
Primary biosynthetic enzymes involved in the synthesis of lichen polyphenolic compounds depsides and...
Primary biosynthetic enzymes involved in the synthesis of lichen polyphenolic compounds depsides and...
Primary biosynthetic enzymes involved in the synthesis of lichen polyphenolic compounds depsides and...
Lichenized and non-lichenized fungi produce a wide range of secondary metabolites. So far, type I po...
Usnic acid is a unique polyketide produced by lichens. To characterize usnic acid biosynthesis, the ...
Lichen-forming fungi produce a vast number of unique natural products with a wide variety of biologi...
Lichen-forming fungi produce a vast number of unique natural products with a wide variety of biologi...
Lichen-forming fungi produce a vast number of unique natural products with a wide variety of biologi...
Lichens are symbionts of fungi and algae that produce diverse secondary metabolites with useful prop...
Fungi involved in lichen symbioses produce a large array of secondary metabolites that are often dia...
We characterize the transcript of a polyketide synthase gene (PKS) from the cultured mycobiont of Xa...
Lichens are known to produce many novel bioactive metabolites. To date, approximately 1,000 secondar...
Polyketides are a group of secondary metabolites produced by a wide range of living organisms – bact...
Lichens produce a diverse array of secondary metabolites that have shown various biological activiti...
Lichens produce a diverse array of secondary metabolites that have shown various biological activiti...
Primary biosynthetic enzymes involved in the synthesis of lichen polyphenolic compounds depsides and...
Primary biosynthetic enzymes involved in the synthesis of lichen polyphenolic compounds depsides and...
Primary biosynthetic enzymes involved in the synthesis of lichen polyphenolic compounds depsides and...
Lichenized and non-lichenized fungi produce a wide range of secondary metabolites. So far, type I po...
Usnic acid is a unique polyketide produced by lichens. To characterize usnic acid biosynthesis, the ...
Lichen-forming fungi produce a vast number of unique natural products with a wide variety of biologi...
Lichen-forming fungi produce a vast number of unique natural products with a wide variety of biologi...
Lichen-forming fungi produce a vast number of unique natural products with a wide variety of biologi...
Lichens are symbionts of fungi and algae that produce diverse secondary metabolites with useful prop...
Fungi involved in lichen symbioses produce a large array of secondary metabolites that are often dia...
We characterize the transcript of a polyketide synthase gene (PKS) from the cultured mycobiont of Xa...
Lichens are known to produce many novel bioactive metabolites. To date, approximately 1,000 secondar...