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Plumbagin a Potent Naphthoquinone from

机译:朱敏素来自的强氧萘醌

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摘要

Some plant species are less susceptible to herbivore infestation than others. The reason for this is often unknown in detail but is very likely due to an efficient composition of secondary plant metabolites. Strikingly, carnivorous plants of the genus Nepenthes show extremely less herbivory both in the field and in green house. In order to identify the basis for the efficient defense against herbivorous insects in Nepenthes, we performed bioassays using larvae of the generalist lepidopteran herbivore, Spodoptera littoralis. Larvae fed with different tissues from Nepenthes x ventrata grew significantly less when feeding on a diet containing leaf tissue compared with pitcher-trap tissue. As dominating metabolite in Nepenthes tissues, we identified a naphthoquinone, plumbagin (5-hydroxy-2-methyl-1,4-naphthoquinone). When plumbagin was added at different concentrations to the diet of S. littoralis larvae, an EC50 value for larval growth inhibition was determined with 226.5 µg g−1 diet. To further determine the concentration causing higher larval mortality, sweet potato leaf discs were covered with increasing plumbagin concentrations in no-choice-assays; a higher mortality of the larvae was found beyond 60 µg plumbagin per leaf, corresponding to 750 µg g−1. Plant-derived insecticides have long been proposed as alternatives for pest management; plumbagin and derivatives might be such promising environmentally friendly candidates.
机译:一些植物物种易受食草动物侵扰的影响比其他物种易感。其原因通常详细未知,但是由于次生植物代谢物的有效组成,很可能是很可能。令人惊讶的是,尼姑儿院的食肉植物在田间和绿色房子里都表现出极薄的草食病。为了识别尼泊什中对食草昆虫的高效防御的基础,我们使用通用鳞翅目草食草植物的幼虫进行生物测定,Spodoptera Littoralis。当与投手捕集组织相比,含有来自尼姑X Ventrata的不同组织的幼虫在含有叶片组织的饮食中饲喂时较低。作为在培养基组织中的代谢物中占据代谢物,我们鉴定了萘醌,肢体(5-羟基-2-甲基-1,4-萘醌)。当以不同浓度加入肠甘球素到幼虫的饮食时,用226.5μgg-1饮食测定幼虫生长抑制的EC 50值。为了进一步确定导致幼虫死亡率较高的浓度,甘油果叶片覆盖着NO-Choice-Messays中的增加的肠球浓度;幼虫的较高死亡率在每叶中超过60μg肠道素,对应于750μgg-1。长期以来已经提出了植物衍生的杀虫剂作为害虫管理的替代品;朱敏宾和衍生物可能是如此有前途的环保候选人。

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