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生境配置在塑造动物种群过程中的作用:生成定量预测的框架。

The role of habitat configuration in shaping animal population processes: a framework to generate quantitative predictions.

机构信息

Department of Collective Behavior, Max Planck Institute of Animal Behavior, Konstanz, Germany.

Centre for the Advanced Study of Collective Behaviour, University of Konstanz, Konstanz, Germany.

出版信息

Oecologia. 2021 Jul;196(3):649-665. doi: 10.1007/s00442-021-04967-y. Epub 2021 Jun 22.

Abstract

By shaping where individuals move, habitat configuration can fundamentally structure animal populations. Yet, we currently lack a framework for generating quantitative predictions about the role of habitat configuration in modulating population outcomes. To address this gap, we propose a modelling framework inspired by studies using networks to characterize habitat connectivity. We first define animal habitat networks, explain how they can integrate information about the different configurational features of animal habitats, and highlight the need for a bottom-up generative model that can depict realistic variations in habitat potential connectivity. Second, we describe a model for simulating animal habitat networks (available in the R package AnimalHabitatNetwork), and demonstrate its ability to generate alternative habitat configurations based on empirical data, which forms the basis for exploring the consequences of alternative habitat structures. Finally, we lay out three key research questions and demonstrate how our framework can address them. By simulating the spread of a pathogen within a population, we show how transmission properties can be impacted by both local potential connectivity and landscape-level characteristics of habitats. Our study highlights the importance of considering the underlying habitat configuration in studies linking social structure with population-level outcomes.

摘要

通过塑造个体的移动路径,生境结构可以从根本上构建动物种群。然而,我们目前缺乏一个框架来对生境结构在调节种群结果方面的作用进行定量预测。为了解决这一差距,我们提出了一个受网络研究启发的建模框架,用于描述生境连通性。我们首先定义了动物生境网络,解释了它们如何整合有关动物生境不同构型特征的信息,并强调需要一个自下而上的生成模型来描绘生境潜在连通性的真实变化。其次,我们描述了一个用于模拟动物生境网络的模型(可在 R 包 AnimalHabitatNetwork 中使用),并展示了它根据经验数据生成替代生境配置的能力,这是探索替代生境结构后果的基础。最后,我们提出了三个关键的研究问题,并展示了我们的框架如何解决这些问题。通过在种群内模拟病原体的传播,我们展示了局部潜在连通性和栖息地的景观水平特征如何影响传播特性。我们的研究强调了在将社会结构与种群水平结果联系起来的研究中,考虑潜在生境结构的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b08d/8292241/ba4a3cda8cd2/442_2021_4967_Fig1_HTML.jpg

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