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The frugivory network properties of a simplified ecosystem: Birds and plants in a Neotropical periurban park

机译:简化生态系统的游人网络属性:鸟类和植物在新脑神经系统中

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摘要

Frugivory networks exhibit a set of properties characterized by a number of network theory‐derived metrics. Their structures often form deterministic patterns that can be explained by the functional roles of interacting species. Although we know lots about how these networks are organized when ecosystems are in a complete, functional condition, we know much less about how incomplete and simplified networks (such as those found in urban and periurban parks) are organized, which features are maintained, which ones are not, and why. In this paper, we examine the properties of a network between frugivorous birds and plants in a small Neotropical periurban park. We found a frugivory network composed of 29 species of birds and 23 of plants. The main roles in this network are played by four species of generalist birds (three resident, one migratory: , , , and ) and three species of plants (one exotic, two early successional: , sp., and ). When compared to reference data from other locations in the Neotropics, species richness is low, one important network‐level metric is maintained (modularity) whereas another one is not (nestedness). Nestedness, a metric associated with network specialists, is a feature this network lacks. Species‐level metrics such as degree, species strength, and module roles, are not maintained. Our work supports modularity as the most pervasive network‐level metric of altered habitats. From a successional point of view, our results suggest that properties revealed by species‐level indices may be developed at a later time, lagging the acquisition of structural elements.
机译:节省网络展现了一系列属性,其特征在于许多网络理论派生度量。它们的结构通常形成确定性模式,这些模式可以通过相互作用物种的功能作用来解释。虽然我们了解如何在生态系统处于完整,功能条件时举办的许多网络,但我们少了解了如何组织不完整和简化的网络(如城市和蠕虫公园中的那些)的少了解哪些功能,这些功能是维持的,这那些不是,为什么。在本文中,我们研究了一个小型新脑神经刺公园的游果鸟类和植物之间的网络的性质。我们发现一个由29种鸟类和23种植物组成的节日网络。这个网络的主要角色由四个一般的鸟类(三个居民,一个迁移:,,)和三种植物(一个异国情调,两个早期的:,sp。,和)。与来自NeoTropics中的其他位置的参考数据相比,物种丰富度低,维持一个重要的网络级度量(模块化),而另一个是不是(嵌套)。嵌套,与网络专家关联的度量,是这个网络缺乏的功能。没有维持等级级别度量,如程度,物种强度和模块角色。我们的工作支持模块化,作为改变栖息地的最普遍的网络级度量。从连续的角度来看,我们的结果表明,物种级别指数显示的性质可以在以后延续,落后于收购结构元素。

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