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Indole-3-Acetonitrile Production from Indole Glucosinolates Deters Oviposition by Pieris rapae1[W][OA]

机译:吲哚芥子油苷生产吲哚-3-乙腈阻止菜青虫产卵。[W] [OA]

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摘要

Like many crucifer-specialist herbivores, Pieris rapae uses the presence of glucosinolates as a signal for oviposition and larval feeding. Arabidopsis thaliana glucosinolate-related mutants provide a unique resource for studying the in vivo role of these compounds in affecting P. rapae oviposition. Low indole glucosinolate cyp79B2 cyp79B3 mutants received fewer eggs than wild type, confirming prior research showing that indole glucosinolates are an important oviposition cue. Transgenic plants overexpressing epithiospecifier protein, which shifts glucosinolate breakdown toward nitrile formation, are less attractive to ovipositing P. rapae females. Exogenous application of indol-3-ylmethylglucosinolate breakdown products to cyp79B2 cyp79B3 mutants showed that oviposition was increased by indole-3-carbinol and decreased by indole-3-acetonitrile (IAN). P. rapae larvae tolerate a cruciferous diet by using a gut enzyme to redirect glucosinolate breakdown toward less toxic nitriles, including IAN, rather than isothiocyanates. The presence of IAN in larval regurgitant contributes to reduced oviposition by adult females on larvae-infested plants. Therefore, production of nitriles via epithiospecifier protein in cruciferous plants, which makes the plants more sensitive to generalist herbivores, may be a counter-adaptive mechanism for reducing oviposition by P. rapae and perhaps other crucifer-specialist insects.
机译:像许多十字花科植物的食草动物一样,菜青虫利用芥子油苷的存在作为产卵和幼虫摄食的信号。拟南芥芥子油苷相关的突变体提供了独特的资源来研究这些化合物在体内影响菜青虫产卵的作用。低吲哚芥子油苷cyp79B2 cyp79B3突变体收到的卵子少于野生型,这证实了先前的研究表明吲哚芥子油苷是重要的产卵线索。过表达表位硫代指示剂蛋白的转基因植物,使芥子油苷分解向腈形成转变,对产卵菜青虫雌性的吸引力较小。在cyp79B2 cyp79B3突变体上外用吲哚-3-基甲基芥子油苷分解产物显示,吲哚-3-甲醇增加产卵,吲哚-3-乙腈(IAN)减少产卵。通过使用肠酶将芥子油苷分解重新定向到毒性较小的腈(包括IAN)上,而不是异硫氰酸酯上,菜青虫的幼虫可以忍受十字花科的饮食。幼虫反刍动物中IAN的存在有助于成年雌性在受幼虫侵染的植物上减少产卵。因此,在十字花科植物中通过Epithiospecifier蛋白生产腈,这使植物对普通食草动物更加敏感,这可能是减少菜青虫和其他十字花科专业昆虫产卵的反适应机制。

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