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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Niche evolution, trophic structure, and species turnover in model food webs.
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Niche evolution, trophic structure, and species turnover in model food webs.

机译:模型食物网中的生态位演化,营养结构和物种更新。

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摘要

The features that govern the stability and persistence of species interaction networks, such as food webs, remain elusive, but recent work suggests that the distribution and strength of trophic links play an important role. Potential omnivory-stability relationships have been investigated and debated extensively, but we still have a relatively poor understanding of how levels of omnivory relate to the stability of diverse food webs. Here, we use an evolutionary assembly model to investigate how different trade-offs in resource use influence both food web structure and dynamic stability during the assembly process. We build on a previous model by allowing speciation along with the evolution of two traits: body size and feeding-niche width. Across a wide range of conditions, the level of omnivory in a food web is positively related to its dynamic instability (variability and species turnover). Parameter values favoring omnivory also allow a wider range of phenotypes to invade, often displacing existing species. This high species turnover leaves signatures in reconstructed phylogenies, with shorter branches connecting extant species in more omnivorous food webs. Our findings suggest that features of the environment may influence both trophic structure and dynamic stability, leading to emergent omnivory-stability relationships.
机译:控制诸如食物网之类的物种相互作用网络的稳定性和持久性的功能仍然难以捉摸,但是最近的工作表明,营养纽带的分布和强度起着重要的作用。潜在的杂食性与稳定性之间的关系已得到广泛研究和讨论,但对于杂食性水平与多种食物网的稳定性之间的关系,我们仍然知之甚少。在这里,我们使用进化组装模型来研究资源使用中的不同权衡如何在组装过程中影响食物网结构和动态稳定性。我们通过允许物种形成和两个特征的进化来建立先前的模型:体型和饲喂生态位宽度。在各种各样的条件下,食物网中的杂食性水平与其动态不稳定性(变异性和物种周转率)成正相关。有利于杂食性的参数值还允许更广泛的表型入侵,经常取代现有物种。如此高的物种周转率在重建的系统发育中留下了特征,较短的分支将杂食性食物网中的现存物种连接起来。我们的发现表明,环境特征可能会影响营养结构和动态稳定性,从而导致出现杂食性与稳定性之间的关系。

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