Studies on induced defenses have predominantly focused on foliar induction by above-ground herbivores and pathogens. However, roots are attacked by as many if not more phytophages than shoots, so in reality plants are exposed to above- and below-ground attack. Here, we report effects of foliar and/or root damage on terpenoid aldehyde accumulation in cotton ( Gossypium herbaceum). Using HPLC, we analyzed concentrations of individual terpenoid aldehydes in foliage and root tissue. In undamaged plants, terpenoid aldehydes were concentrated in young immature main leaves. Concentrations in side leaves, branching from the main leaves, did not differ among leaf position. Above-ground feeding by Spodoptera exigua larvae on a mature leaf enhanced te...
A recent surge in attention devoted to the ecology of soil biota has prompted interest in quantifyin...
Herbivore-induced terpenes have been reported to function as ecological signals in plant–insect inte...
Stress-induced changes in the emissions of volatiles from many economically-important plants have be...
Studies on induced defenses have predominantly focused on foliar induction by above-ground herbivore...
Most studies on plant–herbivore interactions focus on either root or shoot herbivory in isolation, b...
Abstract Upland cotton (Gossypium hirsutum L.) produces terpenoid aldehydes (TAs) that protect the p...
Plants respond to insect herbivory by producing dynamic changes in an array of defense-related volat...
Plants are frequently attacked by both above- and belowground arthropod herbivores. Nevertheless, st...
Plants are frequently attacked by both above- and belowground arthropod herbivores. Nevertheless, st...
Key Word Index--Gossypium hirsutum; Malvaceae; cotton; volatiles; semiochemical; plant-insect intera...
The presence of lysigenous cavities filled with terpenoid aldehydes (generically termed \u27gossypol...
According to optimal defence theory (ODT) plants should invest in stronger defence in the most valua...
Indirect plant defences have largely been studied within the scope of above-ground interactions. Her...
Indirect plant defences have largely been studied within the scope of above-ground interactions. Her...
Cotton plants induce high levels of gossypol in response to herbivore damage. However, little is kno...
A recent surge in attention devoted to the ecology of soil biota has prompted interest in quantifyin...
Herbivore-induced terpenes have been reported to function as ecological signals in plant–insect inte...
Stress-induced changes in the emissions of volatiles from many economically-important plants have be...
Studies on induced defenses have predominantly focused on foliar induction by above-ground herbivore...
Most studies on plant–herbivore interactions focus on either root or shoot herbivory in isolation, b...
Abstract Upland cotton (Gossypium hirsutum L.) produces terpenoid aldehydes (TAs) that protect the p...
Plants respond to insect herbivory by producing dynamic changes in an array of defense-related volat...
Plants are frequently attacked by both above- and belowground arthropod herbivores. Nevertheless, st...
Plants are frequently attacked by both above- and belowground arthropod herbivores. Nevertheless, st...
Key Word Index--Gossypium hirsutum; Malvaceae; cotton; volatiles; semiochemical; plant-insect intera...
The presence of lysigenous cavities filled with terpenoid aldehydes (generically termed \u27gossypol...
According to optimal defence theory (ODT) plants should invest in stronger defence in the most valua...
Indirect plant defences have largely been studied within the scope of above-ground interactions. Her...
Indirect plant defences have largely been studied within the scope of above-ground interactions. Her...
Cotton plants induce high levels of gossypol in response to herbivore damage. However, little is kno...
A recent surge in attention devoted to the ecology of soil biota has prompted interest in quantifyin...
Herbivore-induced terpenes have been reported to function as ecological signals in plant–insect inte...
Stress-induced changes in the emissions of volatiles from many economically-important plants have be...