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A hybrid behavioural rule of adaptation and drift explains the emergent architecture of antagonistic networks

机译:适应和漂移的混合行为规则解释了对抗性网络的新兴架构

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摘要

Ecological processes that can realistically account for network architectures are central to our understanding of how species assemble and function in ecosystems. Consumer species are constantly selecting and adjusting which resource species are to be exploited in an antagonistic network. Here we incorporate a hybrid behavioural rule of adaptive interaction switching and random drift into a bipartite network model. Predictions are insensitive to the model parameters and the initial network structures, and agree extremely well with the observed levels of modularity, nestedness and node-degree distributions for 61 real networks. Evolutionary and community assemblage histories only indirectly affect network structure by defining the size and complexity of ecological networks, whereas adaptive interaction switching and random drift carve out the details of network architecture at the faster ecological time scale. The hybrid behavioural rule of both adaptation and drift could well be the key processes for structure emergence in real ecological networks.
机译:可以现实地解释网络体系结构的生态过程对于我们理解物种如何在生态系统中组装和发挥作用至关重要。消费者物种一直在选择和调整要在对抗性网络中开发的资源物种。在这里,我们将自适应交互切换和随机漂移的混合行为规则纳入了双向网络模型。预测对模型参数和初始网络结构不敏感,并且与所观察到的61个实际网络的模块性,嵌套性和节点度分布水平非常一致。进化和社区聚集的历史仅通过定义生态网络的大小和复杂性而间接影响网络结构,而自适应交互切换和随机漂移则在更快的生态时间尺度上揭示了网络结构的细节。适应和漂移的混合行为规则很可能是真实生态网络中结构出现的关键过程。

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