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Detecting phylogenetic signal in mutualistic interaction networks using a Markov process model

机译:使用马尔可夫过程模型检测相互影响网络中的系统发生信号

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摘要

Ecological interaction networks, such as those describing the mutualistic interactions between plants and their pollinators or between plants and their frugivores, exhibit non-random structural properties that cannot be explained by simple models of network formation. One factor affecting the formation and eventual structure of such a network is its evolutionary history. We argue that this, in many cases, is closely linked to the evolutionary histories of the species involved in the interactions. Indeed, empirical studies of interaction networks along with the phylogenies of the interacting species have demonstrated significant associations between phylogeny and network structure. To date, however, no generative model explaining the way in which the evolution of individual species affects the evolution of interaction networks has been proposed. We present a model describing the evolution of pairwise interactions as a branching Markov process, drawing on phylogenetic models of molecular evolution. Using knowledge of the phylogenies of the interacting species, our model yielded a significantly better fit to 21% of a set of plant – pollinator and plant – frugivore mutualistic networks. This highlights the importance, in a substantial minority of cases, of inheritance of interaction patterns without excluding the potential role of ecological novelties in forming the current network architecture. We suggest that our model can be used as a null model for controlling evolutionary signals when evaluating the role of other factors in shaping the emergence of ecological networks.
机译:生态相互作用网络(例如描述植物与其授粉媒介之间或植物与节食动物之间相互相互作用的网络)具有非随机的结构特性,无法通过简单的网络形成模型来解释。影响这种网络的形成和最终结构的一个因素是其演化历史。我们认为,在许多情况下,这与参与相互作用的物种的进化历史密切相关。确实,对相互作用网络以及相互作用物种的系统发育的实证研究表明,系统发育和网络结构之间存在显着关联。然而,迄今为止,还没有提出用于解释单个物种的进化影响相互作用网络的进化的生成模型。我们提出了一个模型,将成对相互作用的演化描述为一个分支马尔科夫过程,借鉴了分子进化的系统发育模型。利用对相互作用物种的系统发育的了解,我们的模型得出的结果显着更好地适合了21%的植物-传粉媒介和植物-节食性互惠网络。这突显了在极少数情况下交互模式继承的重要性,而又不排除生态新颖性在形成当前网络体系结构方面的潜在作用。我们建议,当评估其他因素在塑造生态网络出现时的作用时,我们的模型可以用作控制进化信号的无效模型。

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