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河网动态的生态水文建模——第2部分:在集合种群动态中的应用

Eco-hydrological modelling of channel network dynamics-part 2: application to metapopulation dynamics.

作者信息

Bertassello Leonardo E, Durighetto Nicola, Botter Gianluca

机构信息

Department of Civil and Environmental Engineering and Earth Sciences, University of Notre Dame, Notre Dame, IN, USA.

Department of Civil, Environmental and Architectural Engineering, University of Padua, Padova, Italy.

出版信息

R Soc Open Sci. 2022 Nov 30;9(11):220945. doi: 10.1098/rsos.220945. eCollection 2022 Nov.

Abstract

Temporal variations in the configuration of the flowing portion of stream networks are observed in the large majority of rivers worldwide. However, the ecological implications of river network expansions/retractions remain poorly understood, owing to the lack of computationally efficient modelling tools conceived for the long-term simulation of river network dynamics. Here, we couple a stochastic approach for the simulation of channel network expansion and retraction (described in a companion paper) with a dynamic version of a stochastic occupancy metapopulation model. The coupled eco-hydrological model is used to analyse the impact of pulsing river networks on species persistence under different hydroclimatic scenarios. Our results unveil the existence of a climate-dependent detrimental effect of network dynamics on species spread and persistence. This effect is enhanced by dry climates, where flashy expansions and retractions of the flowing channels induce metapopulation extinction. Survival probabilities are particularly reduced in settings where the spatial heterogeneity of network connectivity is pronounced. The analysis indicates that accounting for the temporal variability of the flowing river network and its connectivity is a fundamental prerequisite for analysing in-stream metapopulation dynamics.

摘要

在世界上绝大多数河流中,都观察到了河网流动部分形态的时间变化。然而,由于缺乏为长期模拟河网动态而设计的计算效率高的建模工具,河网扩张/收缩的生态影响仍然知之甚少。在此,我们将一种用于模拟河道网络扩张和收缩的随机方法(在一篇配套论文中描述)与随机占据集合种群模型的动态版本相结合。耦合的生态水文模型用于分析不同水文气候情景下脉动河网对物种持久性的影响。我们的结果揭示了网络动态对物种扩散和持久性存在依赖气候的有害影响。在干旱气候下,这种影响会增强,流动河道的快速扩张和收缩会导致集合种群灭绝。在网络连通性空间异质性明显的环境中,生存概率尤其降低。分析表明,考虑流动河网的时间变异性及其连通性是分析河流中集合种群动态的基本前提。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d955/9853332/c9627d02b8e6/rsos220945f01.jpg

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