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Host plant taxonomy and phenotype influence the structure of a neotropical host plant-hispine beetle food web

机译:寄主植物的分类学和表型影响新热带寄主植物的结构

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1. Past studies of plant-phytophage communities have encountered both nested and modular/compartmented food web structures, revealing potentially important differences in the nature of interactions.2. We analysed qualitatively and quantitatively a taxonomically resolved plant-hispine beetle food web from Panama (lower Central America) to characterise its structure. The study included all beetles in the subfamily Cassidinae (Chrysomelidae) found feeding on common monocotyledonous plants in the Tropical forest understorey and edge habitats.3. Nestedness, a structural property common to many food webs, was not observed in this study, however strong evidence for a modular structure was uncovered.4. Our findings suggest the feeding niches of hispine beetles are constrained within module boundaries, which largely correspond to plant ordinal and familial limits, and secondarily to plant attributes, including the morphology of immature leaves.5. We conclude that modularity in this food web is largely a product of narrow, discrete hispine beetle host specificity for larger phylogenetically related plant taxa.
机译:1.过去对植物-噬菌体群落的研究遇到了嵌套和模块化/隔室食物网结构,揭示了相互作用本质上潜在的重要差异。我们定性和定量分析了来自巴拿马(中美洲中部)的分类学分类的植物-山葵甲虫食物网,以表征其结构。研究包括了以热带森林下层和边缘生境中常见的单子叶植物为食的卡西迪亚科的所有甲虫。3。在这项研究中未观察到嵌套性,这是许多食物网所共有的结构特性,但未发现有明显的模块化结构证据。4。我们的研究结果表明,甲虫的进食位被限制在模块边界内,这在很大程度上与植物的序数和家族限制相对应,其次与植物的属性有关,包括未成熟叶片的形态。5。我们得出的结论是,这种食物网中的模块性很大程度上是针对较大的系统发育相关植物类群的狭窄,离散的组氨酸甲虫宿主特异性的产物。

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