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针叶树对昆虫和病原体的组成型和诱导型防御中萜类多样性的基因、酶和化学物质

Genes, enzymes and chemicals of terpenoid diversity in the constitutive and induced defence of conifers against insects and pathogens.

作者信息

Keeling Christopher I, Bohlmann Jörg

机构信息

Michael Smith Laboratories, 301-2185 East Mall, University of British Columbia, Vancouver, BC V6T 1Z4, Canada.

出版信息

New Phytol. 2006;170(4):657-75. doi: 10.1111/j.1469-8137.2006.01716.x.

Abstract

Insects select their hosts, but trees cannot select which herbivores will feed upon them. Thus, as long-lived stationary organisms, conifers must resist the onslaught of varying and multiple attackers over their lifetime. Arguably, the greatest threats to conifers are herbivorous insects and their associated pathogens. Insects such as bark beetles, stem- and wood-boring insects, shoot-feeding weevils, and foliage-feeding budworms and sawflies are among the most devastating pests of conifer forests. Conifer trees produce a great diversity of compounds, such as an enormous array of terpenoids and phenolics, that may impart resistance to a variety of herbivores and microorganisms. Insects have evolved to specialize in resistance to these chemicals -- choosing, feeding upon, and colonizing hosts they perceive to be best suited to reproduction. This review focuses on the plant-insect interactions mediated by conifer-produced terpenoids. To understand the role of terpenoids in conifer-insect interactions, we must understand how conifers produce the wide diversity of terpenoids, as well as understand how these specific compounds affect insect behaviour and physiology. This review examines what chemicals are produced, the genes and proteins involved in their biosynthesis, how they work, and how they are regulated. It also examines how insects and their associated pathogens interact with, elicit, and are affected by conifer-produced terpenoids.

摘要

昆虫会选择它们的宿主,但树木无法选择哪些食草动物会以它们为食。因此,作为长寿的固定生物,针叶树在其一生中必须抵御各种各样、多重攻击者的侵袭。可以说,对针叶树最大的威胁是食草昆虫及其相关病原体。树皮甲虫、蛀干和蛀木昆虫、取食嫩梢的象鼻虫以及取食树叶的卷叶蛾和叶蜂等昆虫是针叶林最具毁灭性的害虫。针叶树会产生多种多样的化合物,比如大量的萜类化合物和酚类化合物,这些化合物可能赋予其对多种食草动物和微生物的抗性。昆虫已经进化出专门针对这些化学物质的抗性——选择、取食并在它们认为最适合繁殖的宿主上定殖。本综述聚焦于由针叶树产生的萜类化合物介导的植物-昆虫相互作用。为了理解萜类化合物在针叶树-昆虫相互作用中的作用,我们必须了解针叶树如何产生种类繁多的萜类化合物,以及这些特定化合物如何影响昆虫的行为和生理。本综述探讨了产生了哪些化学物质、其生物合成过程中涉及的基因和蛋白质、它们如何发挥作用以及如何受到调控。它还探讨了昆虫及其相关病原体如何与针叶树产生的萜类化合物相互作用、引发其产生以及受到其影响。

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