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首页> 外文期刊>Ecological Monographs: Official Publication of the Ecological Society of America >Arms race between leaf rollers and parasitoids: diversification of plant-manipulation behavior and its consequences
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Arms race between leaf rollers and parasitoids: diversification of plant-manipulation behavior and its consequences

机译:卷叶植物和寄生虫之间的军备竞赛:植物操纵行为及其后果的多样化

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Understanding the determinants of community structure remains a challenging ecological task; the plant-host insect-parasitoid community is a particularly important community because of its overwhelming biomass in terrestrial ecosystems. Some ecological and phylogenetic factors are determinants of community structure; however, the relative importance of these factors remains to be entirely elucidated because we cannot separately analyze individual factors. Here, we compared parasitoid communities among 23 weevil species. We demonstrated that the parasitoid community structures were significantly influenced by types of maternal plant manipulation and larval feeding, but not by the phylogeny of the host plant or weevil, which has diverse feeding niches even within closely related species, through maternal plant manipulation for immature weevils (e.g., shoot/petiole/seed borers, leaf miners, and leaf roll feeders). Weevil phylogenetic data indicate that although plant-cutting behavior may have evolved as an adaptation to plant chemical defenses, some manipulation behaviors, such as cutting off plants with eggs or open and closed leaf roll construction, may be an innovative adaptation against parasitoids. However, we expect that an evolutionary arms race would exist between weevils with specific manipulations (e.g., constructing wrapped leaf rolls) and their specific parasitoids.
机译:了解社区结构的决定因素仍然是一项艰巨的生态任务。植物寄主昆虫类寄生生物群落由于在陆地生态系统中具有压倒性的生物量而成为特别重要的群落。一些生态和系统发育因素是群落结构的决定因素。但是,由于我们无法单独分析各个因素,因此这些因素的相对重要性仍有待完全阐明。在这里,我们比较了23种象鼻虫物种中的寄生蜂群落。我们证明,通过母体植物对未成熟象鼻虫的操纵,寄生植物群落结构受母体植物操纵和幼虫取食的类型的影响很大,但不受寄主植物或象鼻虫的系统发育的影响,即使在密切相关的物种内,母体植物或象鼻虫也具有多样的取食位。 (例如,芽/叶柄/种子se虫,矿工和卷叶给料机)。象鼻虫的系统发育数据表明,尽管植物砍伐行为可能已演变为对植物化学防御的适应,但某些操纵行为,例如用卵切下植物或开放和闭合的叶卷结构,可能是对寄生生物的创新适应。但是,我们预计在进行特殊操作(例如构建包裹的卷叶)的象鼻虫和它们的特定寄生虫之间将存在进化军备竞赛。

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