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吲哚类次生代谢物可保护拟南芥免受卵菌病原菌芸薹根肿菌的侵害。

Indolic secondary metabolites protect Arabidopsis from the oomycete pathogen Phytophthora brassicae.

机构信息

Department of Biology, University of Fribourg, Fribourg, Switzerland.

出版信息

Plant Signal Behav. 2010 Sep;5(9):1099-101. doi: 10.4161/psb.5.9.12410.

Abstract

The model plant Arabidopsis thaliana contains a large arsenal of secondary metabolites that are not essential in development but have important ecological functions in counteracting attacks of pathogens and herbivores. Preformed secondary compounds are often referred to as phytoanticipins and metabolites, that are synthesized de novo in response to biotic stress are known as phytoalexins. Camalexin is the typical phytoalexin of Arabidopsis. It has antimicrobial activity towards some pathogens and was shown to be an important component of disease resistance in several plant pathogen interactions. Glucosinolates (GS) are characteristic phytoanticipins of the Brassicaceae family including Arabidopsis. GS are best known as repellents or attractants for herbivorous insects and their predators whereas their antimicrobial potential has received relatively little attention. The GS are glucosides and the biologically active aglycone is released upon biotic stress by glucohydrolase enzymes commenly called myrosinases. Because an Arabidopsis mutant susceptible to the oomycete pathogen Phytophthora brassicae shows a partial deficiency in both camalexin and iGS accumulation we became intrigued by the role of these secondary compounds in disease resistance. Our results show that disease resistance of Arabidopsis to P. brassicae is established by the combined action of iGS and camalexin.

摘要

模式植物拟南芥含有大量的次生代谢产物,这些次生代谢产物在发育中不是必需的,但在抵御病原体和草食动物的攻击方面具有重要的生态功能。预先形成的次生化合物通常被称为植物抗毒素,而那些响应生物胁迫新合成的代谢物被称为植物防御素。拟南芥中的典型植物防御素是 camalexin。它对一些病原体具有抗菌活性,并且在几种植物病原体互作中被证明是抗病性的重要组成部分。硫代葡萄糖苷(GS)是包括拟南芥在内的十字花科植物的特征性植物抗毒素。GS 最著名的作用是作为草食性昆虫及其捕食者的驱避剂或引诱剂,而其抗菌潜力则相对较少受到关注。GS 是葡萄糖苷,生物活性的糖苷配基在生物胁迫下由通常称为黑芥子酶的糖苷水解酶释放。由于对卵菌病原体芸薹根肿菌敏感的拟南芥突变体在 camalexin 和 iGS 积累方面表现出部分缺陷,我们对这些次生化合物在抗病性中的作用产生了兴趣。我们的结果表明,拟南芥对 P. brassicae 的抗病性是由 iGS 和 camalexin 的共同作用建立的。

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