Insects employ iridoids to deter predatory attacks. Larvae of some Chrysomelina species are capable to produce those cyclopentanoid monoterpenes de novo. The iridoid biosynthesis proceeds via the mevalonate pathway to geranyl diphospate (GDP) subsequently converted into 8-hydroxygeraniol-8-O-β-d-glucoside followed by the transformation into the defensive compounds. We tested whether the glucoside, its aglycon or geraniol has an impact on the activity of 3-hydroxy-3-methylglutaryl-CoA reductase (HMGR), the key regulatory enzyme of the mevalonate pathway and also the iridoid biosynthesis. To address the inhibition site of the enzyme, initially a complete cDNA encoding full length HMGR was cloned from Phaedon cochleariae. Its catalytic portion...
Glandular chemical defence relying on the action of salicylaldehyde is characteristic for Chrysomela...
The biosynthesis of chrysomelidial and plagiodial was studied in the rove beetle subtribe Philonthin...
Friedrichs J, Schweiger R, Geisler S, Mix A, Wittstock U, Müller C. Novel glucosinolate metabolism i...
Insects employ iridoids to deter predatory attacks. Larvae of some Chrysomelina species are capable ...
Juveniles of the leaf beetle Phaedon cochleariae synthesize iridoid via the mevalonate pathway to re...
Larvae of the leaf beetles Phaedon amoraciae, Phaedon cochleariae, Gastrophysa viridula, and Plagiod...
Larvae of the leaf beetles Phaedon amoraciae, Phaedon cochleariae, Gastrophysa viridula, and Plagiod...
The drastic growth of the population on our planet requires the efficient and sustainable use of our...
From geraniol vis 8-oxocitral, leaf beetle larvae Produce dialdehydes such as 1 by a route analogous...
Iridoids, belonging to a group of cyclopentanoid monoterpenoids, are secreted by many species of lea...
From geraniol vis 8-oxocitral, leaf beetle larvae Produce dialdehydes such as 1 by a route analogous...
Larvae of the Chrysomelina species Phaedon cochleariae and Gastrophysa viridula produce monoterpenoi...
Plant-feeding insects are spread across the entire plant kingdom. Because they chew externally on le...
Larvae of the chrysomelid beetles Phaedon cochleariae and Gastrophysa viridula use iridoid monoterpe...
Chrysomelina larvae possess a sophisticated strategy in terms of chemical defense eminently adapted ...
Glandular chemical defence relying on the action of salicylaldehyde is characteristic for Chrysomela...
The biosynthesis of chrysomelidial and plagiodial was studied in the rove beetle subtribe Philonthin...
Friedrichs J, Schweiger R, Geisler S, Mix A, Wittstock U, Müller C. Novel glucosinolate metabolism i...
Insects employ iridoids to deter predatory attacks. Larvae of some Chrysomelina species are capable ...
Juveniles of the leaf beetle Phaedon cochleariae synthesize iridoid via the mevalonate pathway to re...
Larvae of the leaf beetles Phaedon amoraciae, Phaedon cochleariae, Gastrophysa viridula, and Plagiod...
Larvae of the leaf beetles Phaedon amoraciae, Phaedon cochleariae, Gastrophysa viridula, and Plagiod...
The drastic growth of the population on our planet requires the efficient and sustainable use of our...
From geraniol vis 8-oxocitral, leaf beetle larvae Produce dialdehydes such as 1 by a route analogous...
Iridoids, belonging to a group of cyclopentanoid monoterpenoids, are secreted by many species of lea...
From geraniol vis 8-oxocitral, leaf beetle larvae Produce dialdehydes such as 1 by a route analogous...
Larvae of the Chrysomelina species Phaedon cochleariae and Gastrophysa viridula produce monoterpenoi...
Plant-feeding insects are spread across the entire plant kingdom. Because they chew externally on le...
Larvae of the chrysomelid beetles Phaedon cochleariae and Gastrophysa viridula use iridoid monoterpe...
Chrysomelina larvae possess a sophisticated strategy in terms of chemical defense eminently adapted ...
Glandular chemical defence relying on the action of salicylaldehyde is characteristic for Chrysomela...
The biosynthesis of chrysomelidial and plagiodial was studied in the rove beetle subtribe Philonthin...
Friedrichs J, Schweiger R, Geisler S, Mix A, Wittstock U, Müller C. Novel glucosinolate metabolism i...