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将动物迁徙与生态系统过程相联系:食草迁徙动物繁殖体扩散的数据驱动模拟

Linking animal migration and ecosystem processes: Data-driven simulation of propagule dispersal by migratory herbivores.

作者信息

Somveille Marius, Ellis-Soto Diego

机构信息

Department of Biology Colorado State University Fort Collins Colorado USA.

Department of Genetics, Evolution and Environment, Centre for Biodiversity and Environment Research University College London London UK.

出版信息

Ecol Evol. 2022 Oct 18;12(10):e9383. doi: 10.1002/ece3.9383. eCollection 2022 Oct.

Abstract

Animal migration is a key process underlying active subsidies and species dispersal over long distances, which affects the connectivity and functioning of ecosystems. Despite much research describing patterns of where animals migrate, we still lack a framework for quantifying and predicting how animal migration affects ecosystem processes. In this study, we aim to integrate animal movement behavior and ecosystem functioning by developing a predictive modeling framework that can inform ecosystem management and conservation.We propose a framework to model individual-level migration trajectories between populations' seasonal ranges as well as the resulting dispersal and fate of propagules carried by the migratory animals, which can be calibrated using empirical data at every step of the modeling process. As a case study, we applied our framework to model the spread of guava seeds, , by a population of migratory Galapagos tortoises, , across Santa Cruz Island. Galapagos tortoises are large herbivores that transport seeds and nutrients across the island, while Guava is one of the most problematic invasive species in the Galapagos archipelago.Our model can predict the pattern of spread of guava seeds alongside tortoises' downslope migration range, and it identified areas most likely to see establishment success. Our results show that Galapagos tortoises' seed dispersal may particularly contribute to guava range expansion on Santa Cruz Island, due to both long gut retention time and tortoise's long-distance migration across vegetation zones. In particular, we predict that tortoises are dispersing a significant amount of guava seeds into the Galapagos National Park, which has important consequences for the native flora.The flexibility and modularity of our framework allow for the integration of multiple data sources. It also allows for a wide range of applications to investigate how migratory animals affect ecosystem processes, including propagule dispersal but also other processes such as nutrient transport across ecosystems. Our framework is also a valuable tool for predicting how animal-mediated propagule dispersal can be affected by environmental change. These different applications can have important conservation implications for the management of ecosystems that include migratory animals.

摘要

动物迁徙是主动补贴和物种远距离扩散的关键过程,它影响着生态系统的连通性和功能。尽管有许多研究描述了动物迁徙的地点模式,但我们仍然缺乏一个用于量化和预测动物迁徙如何影响生态系统过程的框架。在本研究中,我们旨在通过开发一个预测建模框架来整合动物运动行为和生态系统功能,该框架可为生态系统管理和保护提供信息。我们提出了一个框架,用于模拟种群季节性分布范围之间的个体水平迁徙轨迹,以及迁徙动物携带的繁殖体的扩散和归宿,在建模过程的每一步都可以使用经验数据进行校准。作为一个案例研究,我们应用我们的框架来模拟加拉帕戈斯陆龟种群在圣克鲁斯岛上传播番石榴种子的情况。加拉帕戈斯陆龟是大型食草动物,它们在岛上运输种子和养分,而番石榴是加拉帕戈斯群岛最具问题的入侵物种之一。我们的模型可以预测番石榴种子随陆龟下坡迁徙范围的传播模式,并确定最有可能实现成功定植的区域。我们的结果表明,由于肠道保留时间长以及陆龟在植被区的远距离迁徙,加拉帕戈斯陆龟的种子传播可能特别有助于圣克鲁斯岛上番石榴范围的扩大。特别是,我们预测陆龟正在将大量番石榴种子传播到加拉帕戈斯国家公园,这对当地植物群有重要影响。我们框架的灵活性和模块化允许整合多个数据源。它还允许进行广泛的应用,以研究迁徙动物如何影响生态系统过程,包括繁殖体扩散以及其他过程,如生态系统间的养分运输。我们的框架也是预测动物介导的繁殖体扩散如何受到环境变化影响的宝贵工具。这些不同的应用对于包括迁徙动物在内的生态系统管理可能具有重要的保护意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28eb/9577414/1f17d9e23faf/ECE3-12-e9383-g003.jpg

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