By Ring T. Cardé, Jocelyn G. Millar
8 chapters think of the newest study and suggestion within the examine of ways bugs use chemical indications to speak with one another or to have interaction with different species. Written via the world over well-known specialists, they specialise in issues similar to plant defenses opposed to bugs, floral odors that allure pollinators, host discovering via parasitic bugs, and pheromone-mediated interactions in cockroaches, moths, spiders, and mites. The publication is key studying for researchers and graduate scholars of chemically mediated communique in bugs.
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Extra info for Advances in Insect Chemical Ecology
2000 B B+C B+C Selected references Evidence Predator/parasitoid recruitment by herbivore-injured plants 29 tritrophic interactions are. The evidence is not equally conclusive in all cases, but behavioral observations and/or chemical analyses strongly indicate that induced plant volatiles play a key role in host or prey location. Current research in this area focusses on the mechanisms of induction and on questions concerning the ecological significance and evolutionary history of these interactions, as well as on the possibility of exploiting this indirect plant defense for crop protection.
They found that Cardiochiles nigriceps, a parasitoid that specializes on Heliothis virescens, is much more attracted to plants attacked by its host than by plants attacked by the closely related non-host H. zea. Volatile collections Predator/parasitoid recruitment by herbivore-injured plants 35 from maize and tobacco plants that had been subjected to feeding by these noctuids showed differences in the relative ratios of some of the major compounds. It remains to be determined whether these observed differences allow C.
Turlings and F. , 1993a). Similarly, Potting et al. (1995) found that stem borer regurgitant applied to mechanically damaged sites caused an increase in induced odor emissions in maize plants. In both cases, induced plants were more attractive to parasitoids than plants that were not induced. Volicitin (N-(17-hydroxylinolenoyl)-l-glutamine) was identified by Alborn et al. (1997) as the active substance in the regurgitant of Spodoptera exigua larvae. , 2000). , 1999). , 1998). , 1998). Spiteller et al.
Advances in Insect Chemical Ecology by Ring T. Cardé, Jocelyn G. Millar