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« Previous Abstract"Herbivore-induced terpenoid emission in Medicago truncatula: concerted action of jasmonate, ethylene and calcium signaling"    Next AbstractAcquired immunity to herbivory and allelopathy caused by airborne plant emissions »

Plant Cell Physiol


Title:Chemical and molecular ecology of herbivore-induced plant volatiles: proximate factors and their ultimate functions
Author(s):Arimura G; Matsui K; Takabayashi J;
Address:"Center for Ecological Research, Kyoto University, Otsu 520-2113, Japan. garimura@ecology.kyoto-u.ac.jp"
Journal Title:Plant Cell Physiol
Year:2009
Volume:20090225
Issue:5
Page Number:911 - 923
DOI: 10.1093/pcp/pcp030
ISSN/ISBN:1471-9053 (Electronic) 0032-0781 (Linking)
Abstract:"In response to herbivory, plants emit specific blends of herbivore-induced plant volatiles (HIPVs). HIPVs mediate sizable arrays of interactions between plants and arthropods, microorganisms, undamaged neighboring plants or undamaged sites within the plant in various ecosystems. HIPV profiles vary according to the plant and herbivore species, and the developmental stages and conditions of the live plants and herbivores. To understand the regulatory mechanisms underling HIPV biosynthesis, the following issues are reviewed here: (i) herbivore-induced formation of plant volatile terpenoids and green leaf volatiles; (ii) initial activation of plant responses by feeding herbivores; and (iii) the downstream network of the signal transduction. To understand the ecological significance of HIPVs, we also review case studies of insect-plant and inter-/intraplant interactions mediated by HIPVs that have been documented in the field and laboratory in recent years"
Keywords:Animals Ecology Feeding Behavior Host-Parasite Interactions *Insecta Molecular Structure Plant Leaves/chemistry Plants/*chemistry Signal Transduction Terpenes/*chemistry Volatile Organic Compounds/*chemistry Volatilization;
Notes:"MedlineArimura, Gen-Ichiro Matsui, Kenji Takabayashi, Junji eng Research Support, Non-U.S. Gov't Review Japan 2009/02/28 Plant Cell Physiol. 2009 May; 50(5):911-23. doi: 10.1093/pcp/pcp030. Epub 2009 Feb 25"

 
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