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硫代葡萄糖苷在昆虫与植物关系及多营养级相互作用中的作用。

Role of glucosinolates in insect-plant relationships and multitrophic interactions.

作者信息

Hopkins Richard J, van Dam Nicole M, van Loon Joop J A

机构信息

Department of Ecology, Swedish University of Agricultural Sciences, Uppsala S-750 07, Sweden.

出版信息

Annu Rev Entomol. 2009;54:57-83. doi: 10.1146/annurev.ento.54.110807.090623.

Abstract

Glucosinolates present classical examples of plant compounds affecting insect-plant interactions. They are found mainly in the family Brassicaceae, which includes several important crops. More than 120 different glucosinolates are known. The enzyme myrosinase, which is stored in specialized plant cells, converts glucosinolates to the toxic isothiocyanates. Insect herbivores may reduce the toxicity of glucosinolates and their products by excretion, detoxification, or behavioral adaptations. Glucosinolates also affect higher trophic levels, via reduced host or prey quality or because specialist herbivores may sequester glucosinolates for their own defense. There is substantial quantitative and qualitative variation between plant genotypes, tissues, and ontogenetic stages, which poses specific challenges to insect herbivores. Even though glucosinolates are constitutive defenses, their levels are influenced by abiotic and biotic factors including insect damage. Plant breeders may use knowledge on glucosinolates to increase insect resistance in Brassica crops. State-of-the-art techniques, such as mutant analysis and metabolomics, are necessary to identify the exact role of glucosinolates.

摘要

硫代葡萄糖苷是影响昆虫与植物相互作用的植物化合物的典型例子。它们主要存在于十字花科植物中,十字花科包括几种重要的农作物。已知有120多种不同的硫代葡萄糖苷。存在于植物特化细胞中的黑芥子酶可将硫代葡萄糖苷转化为有毒的异硫氰酸盐。昆虫食草动物可通过排泄、解毒或行为适应来降低硫代葡萄糖苷及其产物的毒性。硫代葡萄糖苷还会通过降低寄主或猎物的质量,或者因为专食性食草动物可能会为自身防御而储存硫代葡萄糖苷,从而影响更高的营养级。植物基因型、组织和个体发育阶段之间存在显著的数量和质量差异,这给昆虫食草动物带来了特殊挑战。尽管硫代葡萄糖苷是组成型防御物质,但其含量会受到包括昆虫侵害在内的非生物和生物因素的影响。植物育种者可以利用有关硫代葡萄糖苷的知识来提高十字花科作物的抗虫性。需要采用诸如突变分析和代谢组学等先进技术来确定硫代葡萄糖苷的确切作用。

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