1. Optimal defence allocation theory (ODT) is one of the most prominent theoretical frameworks to explain the allocation of defence compounds within plants. It predicts that the most valuable and vulnerable plant organs have the highest levels of chemical defence. The ODT has been well worked out and experimentally tested for shoot defences, but not for root defences. To assess if ODT principles apply similarly to roots and shoots, we examined glucosinolates in aboveground and belowground organs of nine plant species belonging to two families. 2. In order to evaluate whether ODT equally applies to shoot and root organs, we designed a conceptual model in which aboveground and belowground organs were assigned to orders of importance to plant ...
Background The optimal defence hypothesis (ODH) predicts that tissues that contribute most to a plan...
Belowground-feeding herbivores may be very destructive to plants. Roots are known to produce various...
Background The optimal defence hypothesis (ODH) predicts that tissues that contribute most to a plan...
1. Optimal defence allocation theory (ODT) is one of the most prominent theoretical frameworks to ex...
1. Optimal defence allocation theory (ODT) is one of the most prominent theoretical frameworks to ex...
1. Optimal defence allocation theory (ODT) is one of the most prominent theoretical frameworks to ex...
1. Herbivore-induced defences in plants are considered a strategy to manage multiple interactions wh...
1. Herbivore-induced defences in plants are considered a strategy to manage multiple interactions wh...
Plants employ highly variable chemical defenses against a broad community of herbivores, which vary ...
Plants employ highly variable chemical defenses against a broad community of herbivores, which vary ...
Plants employ highly variable chemical defenses against a broad community of herbivores, which vary ...
Plants employ highly variable chemical defenses against a broad community of herbivores, which vary ...
Plants employ highly variable chemical defenses against a broad community of herbivores, which vary ...
Contains fulltext : 176861.pdf (publisher's version ) (Closed access
P>1. Root herbivores and pathogens interfere with basic below-ground plant function, and can ther...
Background The optimal defence hypothesis (ODH) predicts that tissues that contribute most to a plan...
Belowground-feeding herbivores may be very destructive to plants. Roots are known to produce various...
Background The optimal defence hypothesis (ODH) predicts that tissues that contribute most to a plan...
1. Optimal defence allocation theory (ODT) is one of the most prominent theoretical frameworks to ex...
1. Optimal defence allocation theory (ODT) is one of the most prominent theoretical frameworks to ex...
1. Optimal defence allocation theory (ODT) is one of the most prominent theoretical frameworks to ex...
1. Herbivore-induced defences in plants are considered a strategy to manage multiple interactions wh...
1. Herbivore-induced defences in plants are considered a strategy to manage multiple interactions wh...
Plants employ highly variable chemical defenses against a broad community of herbivores, which vary ...
Plants employ highly variable chemical defenses against a broad community of herbivores, which vary ...
Plants employ highly variable chemical defenses against a broad community of herbivores, which vary ...
Plants employ highly variable chemical defenses against a broad community of herbivores, which vary ...
Plants employ highly variable chemical defenses against a broad community of herbivores, which vary ...
Contains fulltext : 176861.pdf (publisher's version ) (Closed access
P>1. Root herbivores and pathogens interfere with basic below-ground plant function, and can ther...
Background The optimal defence hypothesis (ODH) predicts that tissues that contribute most to a plan...
Belowground-feeding herbivores may be very destructive to plants. Roots are known to produce various...
Background The optimal defence hypothesis (ODH) predicts that tissues that contribute most to a plan...