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Testing the Generalist-Specialist Dilemma: The Role of Pyrrolizidine Alkaloids in Resistance to Invertebrate Herbivores in Jacobaea Species

机译:测试通才-专家困境:吡咯烷嗪生物碱在Jacobaea物种对无脊椎动物食草动物的抗性中的作用

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摘要

Plants produce a diversity of secondary metabolites (SMs) to protect them from generalist herbivores. On the other hand, specialist herbivores use SMs for host plant recognition, feeding and oviposition cues, and even sequester SMs for their own defense. Therefore, plants are assumed to face an evolutionary dilemma stemming from the contrasting effects of generalist and specialist herbivores on SMs. To test this hypothesis, bioassays were performed with F2 hybrids from Jacobaea species segregating for their pyrrolizidine alkaloids (PAs), using a specialist flea beetle (Longitarsus jacobaeae) and a generalist slug (Deroceras invadens). Our study demonstrated that while slug feeding damage was negatively correlated with the concentration of total PAs and that of senecionine-like PAs, flea beetle feeding damage was not affected by PAs. It was positively correlated though, with leaf fresh weight. The generalist slug was deterred by senecionine-like PAs but the specialist flea beetle was adapted to PAs in its host plant. Testing other herbivores in the same plant system, it was observed that the egg number of the specialist cinnabar moth was positively correlated with jacobine-like PAs, while the silver damage of generalist thrips was negatively correlated with senecionine- and jacobine-like PAs, and the pupae number of generalist leaf miner was negatively correlated with otosenine-like PAs. Therefore, while the specialist herbivores showed no correlation whatsoever with PA concentration, the generalist herbivores all showed a negative correlation with at least one type of PA. We concluded that the generalist herbivores were deterred by different structural groups of PAs while the specialist herbivores were attracted or adapted to PAs in its host plants.Electronic supplementary materialThe online version of this article (doi:10.1007/s10886-015-0551-4) contains supplementary material, which is available to authorized users.
机译:植物会产生多种次要代谢产物(SM),以保护它们免受普通食草动物的侵害。另一方面,专门的食草动物将SM用作宿主植物的识别,进食和产卵的线索,甚至将SM隔离用于自身防御。因此,假定植物面临着进化论的困境,这是由于普通食草动物和特殊食草动物对SM的对比作用所致。为了验证这一假设,使用了专业的跳蚤甲虫(Longitarsus jacobaeae)和多头(Deroceras invadens),对来自雅可比树种的F2杂种进行了生物分析,分离出它们的吡咯并立啶生物碱(PAs)。我们的研究表明,的进食伤害与总PA的浓度和类似神经氨酸的PA的含量呈负相关,而跳蚤甲虫的进食伤害不受PA的影响。然而,它与叶鲜重呈正相关。通才的鼻涕虫被类似塞西宁的PA阻止,但专为跳蚤甲虫改编为其宿主植物中的PA。在相同的植物系统中测试其他草食动物,发现朱砂蛾的卵数与雅可宾类PA呈正相关,而通配蓟马的银损伤与衰老和类塞康宁和雅可宾类PA呈负相关。通才叶采食者的p数量与像otosenine的PAs呈负相关。因此,尽管专科食草动物与PA浓度无任何相关性,但通才食草动物均与至少一种PA呈负相关。我们得出的结论是,一般的草食动物受到PA的不同结构群的阻碍,而专业的草食动物被其寄主植物吸引或适应了PA。电子补充材料本文的在线版本(doi:10.1007 / s10886-015-0551-4)包含补充材料,授权用户可以使用。

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