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番茄、害虫、寄生蜂和捕食者:涉及番茄属的三级营养相互作用。

Tomato, pests, parasitoids, and predators: tritrophic interactions involving the genus Lycopersicon.

作者信息

Kennedy George G

机构信息

Department of Entomology, North Carolina State University, Raleigh, North Carolina 27695-7630, USA.

出版信息

Annu Rev Entomol. 2003;48:51-72. doi: 10.1146/annurev.ento.48.091801.112733. Epub 2001 Sep 28.

Abstract

Insect-plant interactions involving the cultivated tomato and its relatives in the genus Lycopersicon have been intensively studied for several decades, resulting in one of the best documented and in-depth examples of the mechanistic complexities of insect-plant interactions, which encompass both herbivores and their natural enemies. Trichome-mediated defenses are particularly significant in L. hirsutum f. glabratum and have been extensively implicated in negative tritrophic effects mediated by direct contact of parasitoids and predators with trichomes, as well as indirect effects mediated through their hosts or prey. Both constitutive and inducible defense traits of L. esculentum exert effects on selected parasitoids and predators. The effects of any particular plant defense trait on parasitoids and predators depend on the specific attributes of the plant trait and the details of the physical, biochemical, and behavioral interaction between the natural enemy, its host (prey), and the plant.

摘要

几十年来,人们对涉及栽培番茄及其番茄属近缘种的昆虫与植物相互作用进行了深入研究,这使得昆虫与植物相互作用的机制复杂性成为有充分记录和深入研究的最佳实例之一,其中包括食草动物及其天敌。在多毛番茄光滑变种中,表皮毛介导的防御作用尤为显著,并且在寄生蜂和捕食者直接接触表皮毛介导的负三营养效应以及通过其寄主或猎物介导的间接效应中发挥了重要作用。栽培番茄的组成型和诱导型防御特性均对选定的寄生蜂和捕食者产生影响。任何特定植物防御特性对寄生蜂和捕食者的影响取决于植物特性的具体属性以及天敌、其寄主(猎物)和植物之间物理、生化和行为相互作用的细节。

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