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Contemporary Ecological Interactions Improve Models of Past Trait Evolution

机译:当代生态互动改善过去特质演化的模型

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Despite the fact that natural selection underlies both traits and interactions, evolutionary models often neglect that ecological interactions may, and in many cases do, influence the evolution of traits. Herein, we explore the interdependence of ecological interactions and functional traits in the pollination associations of hawkmoths and flowering plants. Specifically, we develop an adaptation of the Ornstein-Uhlenbeck model of trait evolution that allows us to study the influence of plant corolla depth and observed hawkmoth-plant interactions on the evolution of hawkmoth proboscis length. Across diverse modelling scenarios, we find that the inclusion of contemporary interactions can provide a better description of trait evolution than the null expectation. Moreover, we show that the pollination interactions provide more-likely models of hawkmoth trait evolution when interactions are considered at increasingly fine-scale groups of hawkmoths. Finally, we demonstrate how the results of best-fit modeling approaches can implicitly support the association between interactions and trait evolution that our method explicitly examines. In showing that contemporary interactions can provide insight into the historical evolution of hawkmoth proboscis length, we demonstrate the clear utility of incorporating additional ecological information to models designed to study past trait evolution.
机译:尽管自然选择是具有特征和互动的基础,但进化模型往往忽视了生态互动可能,并且在许多情况下,影响特质的演变。在此,我们探讨了霍克马氏植物和开花植物授粉协会中生态相互作用和功能性状的相互依存。具体而言,我们开发了一种特征的特质演化模型,使我们能够研究植物花冠深度和观察Hawkmoth稳定长度的演变的影响。在不同的建模情景中,我们发现包含当代互动可以提供比空的期望更好地描述特质演化。此外,我们表明,当互动被认为是越来越精细的霍克马斯群体时,授粉相互作用提供了更可能的霍克马特特征演变模型。最后,我们展示了最佳拟合建模方法的结果如何隐含地支持我们的方法明确检查的交互与特质演化之间的关联。在表明当代互动可以提供对HawkMoth长度的历史演变的洞察力,我们展示了将额外生态信息纳入旨在研究过去特质演变的模型的清晰效用。

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