Chrysomeline larvae respond to disturbance and attack by everting dorsal glandular reservoirs, which release defensive secretions. The ancestral defense is based on the de novo synthesis of monoterpene iridoids. The catabolization of the host-plant O-g
Larvae of the chrysomelid beetles Phaedon cochleariae and Gastrophysa viridula use iridoid monoterpe...
Iridoids, belonging to a group of cyclopentanoid monoterpenoids, are secreted by many species of lea...
Pankoke H, Dobler S. Low rates of iridoid glycoside hydrolysis in two Longitarsus leaf beetles with ...
Chrysomeline larvae respond to disturbance and attack by everting dorsal glandular reservoirs, which...
Leaf beetles have developed an impressive repertoire of toxins and repellents to defend themselves a...
SummaryLeaf beetles have developed an impressive repertoire of toxins and repellents to defend thems...
Plant-feeding insects are spread across the entire plant kingdom. Because they chew externally on le...
Feeding larvae of Chrysomela lapponica (Coleoptera: Chrysomelidae) acquire characteristic O-glucosid...
Feeding larvae of Chrysomela lapponica (Coleoptera: Chrysomelidae) acquire characteristic O-glucosid...
Juveniles of the leaf beetles in subtribe Chrysomelina have efficient defense strategies against pre...
<div><p>Background</p><p>Phytophagous insects have emerged successfully on the planet also because o...
Insect herbivory is often restricted by glucosylated plant chemical defence compounds that are activ...
Glandular chemical defense of Chrysomelina larvae is either, not (iridoids), in part, or completely ...
, for example, secrete deterrents from specialized defensive glands on their back. The secretion pro...
Many insect herbivores sequester (accumulate) plant defense metabolites in their bodies to utilize t...
Larvae of the chrysomelid beetles Phaedon cochleariae and Gastrophysa viridula use iridoid monoterpe...
Iridoids, belonging to a group of cyclopentanoid monoterpenoids, are secreted by many species of lea...
Pankoke H, Dobler S. Low rates of iridoid glycoside hydrolysis in two Longitarsus leaf beetles with ...
Chrysomeline larvae respond to disturbance and attack by everting dorsal glandular reservoirs, which...
Leaf beetles have developed an impressive repertoire of toxins and repellents to defend themselves a...
SummaryLeaf beetles have developed an impressive repertoire of toxins and repellents to defend thems...
Plant-feeding insects are spread across the entire plant kingdom. Because they chew externally on le...
Feeding larvae of Chrysomela lapponica (Coleoptera: Chrysomelidae) acquire characteristic O-glucosid...
Feeding larvae of Chrysomela lapponica (Coleoptera: Chrysomelidae) acquire characteristic O-glucosid...
Juveniles of the leaf beetles in subtribe Chrysomelina have efficient defense strategies against pre...
<div><p>Background</p><p>Phytophagous insects have emerged successfully on the planet also because o...
Insect herbivory is often restricted by glucosylated plant chemical defence compounds that are activ...
Glandular chemical defense of Chrysomelina larvae is either, not (iridoids), in part, or completely ...
, for example, secrete deterrents from specialized defensive glands on their back. The secretion pro...
Many insect herbivores sequester (accumulate) plant defense metabolites in their bodies to utilize t...
Larvae of the chrysomelid beetles Phaedon cochleariae and Gastrophysa viridula use iridoid monoterpe...
Iridoids, belonging to a group of cyclopentanoid monoterpenoids, are secreted by many species of lea...
Pankoke H, Dobler S. Low rates of iridoid glycoside hydrolysis in two Longitarsus leaf beetles with ...