Arabidopsis (Arabidopsis thaliana) efficiently synthesizes the antifungal phytoalexin camalexin without the apparent release of bioactive intermediates, such as indole-3-acetaldoxime, suggesting that the biosynthetic pathway of this compound is channeled by the formation of an enzyme complex. To identify such protein interactions, we used two independent untargeted coimmunoprecipitation (co-IP) approaches with the biosynthetic enzymes CYP71B15 and CYP71A13 as baits and determined that the camalexin biosynthetic P450 enzymes copurified with these enzymes. These interactions were confirmed by targeted co-IP and Förster resonance energy transfer measurements based on fluorescence lifetime microscopy (FRET-FLIM). Furthermore, the interaction of...
MYB34, MYB51, and MYB122 transcription factors are known as decisive regulators of indolic glucosino...
Recognition of pathogens by plants initiates defense responses including activation of defense-relat...
Phytophthora capsici causes devastating diseases on a broad range of plant species. To better unders...
M.Sc.On exposure to abiotic or biotic stresses, plants initiate a cascade of metabolic reactions, so...
Phytoalexins are heterogeneous low molecular mass secondary metabolites with antimicrobial activity ...
We have analysed the role of tryptophan-derived secondary metabolites in disease resistance of Arabi...
Plants in their natural ecosystems interact with numerous microorganisms, but how they influence the...
Within the cell, biosynthetic pathways are embedded in protein-protein interaction networks. In Arab...
The model plant Arabidopsis thaliana contains a large arsenal of secondary metabolites that are not ...
Shih P-Y, Chou S-J, Müller C, Halkier BA, Deeken R, Lai E-M. Differential roles of glucosinolates an...
International audienceCamalexin has been reported to play defensive functions against several pathog...
In this manuscript, a fast and accurate identification and quantitation by mass spectrometry of indo...
Camalexin has been reported to play defensive functions against several pathogens in Arabidopsis. In...
Indole-3-acetaldoxime (IAOx) is a branch point compound of tryptophan (Trp) metabolism in glucosinol...
A novel Arabidopsis–oomycete pathosystem: differential interactions with Phytophthora capsici reveal...
MYB34, MYB51, and MYB122 transcription factors are known as decisive regulators of indolic glucosino...
Recognition of pathogens by plants initiates defense responses including activation of defense-relat...
Phytophthora capsici causes devastating diseases on a broad range of plant species. To better unders...
M.Sc.On exposure to abiotic or biotic stresses, plants initiate a cascade of metabolic reactions, so...
Phytoalexins are heterogeneous low molecular mass secondary metabolites with antimicrobial activity ...
We have analysed the role of tryptophan-derived secondary metabolites in disease resistance of Arabi...
Plants in their natural ecosystems interact with numerous microorganisms, but how they influence the...
Within the cell, biosynthetic pathways are embedded in protein-protein interaction networks. In Arab...
The model plant Arabidopsis thaliana contains a large arsenal of secondary metabolites that are not ...
Shih P-Y, Chou S-J, Müller C, Halkier BA, Deeken R, Lai E-M. Differential roles of glucosinolates an...
International audienceCamalexin has been reported to play defensive functions against several pathog...
In this manuscript, a fast and accurate identification and quantitation by mass spectrometry of indo...
Camalexin has been reported to play defensive functions against several pathogens in Arabidopsis. In...
Indole-3-acetaldoxime (IAOx) is a branch point compound of tryptophan (Trp) metabolism in glucosinol...
A novel Arabidopsis–oomycete pathosystem: differential interactions with Phytophthora capsici reveal...
MYB34, MYB51, and MYB122 transcription factors are known as decisive regulators of indolic glucosino...
Recognition of pathogens by plants initiates defense responses including activation of defense-relat...
Phytophthora capsici causes devastating diseases on a broad range of plant species. To better unders...