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The role of migration in a spatial extension of the Webworld eco-evolutionary model

机译:迁移在WebWorld生态进化模型的空间扩展中的作用

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We extend an eco-evolutionary food web model to a spatially-explicit metacommunity model which features migration of populations between multiple local sites on the same time-scale as feeding and reproduction. We study how factors including the implementation and rate of dispersal, properties of the local environments, and the spatial topology of the metacommunity interact to determine the local and global diversity and the degree of synchronisation between local food webs. We investigate the influence of migration on the stability of local networks to perturbation, and simulate a 5 x 5 spatial arrangement of cells, demonstrating that combining adaptive migration and heterogeneous habitats allows distinct food webs to coevolve from the beginning of the simulation. When coupling food webs by diffusion migration after an initial period of isolation, the Webworld model can construct metacommunities of distinct food webs if the local sites have spatially-homogeneous environmental parameters. If the sites have heterogeneous parameters, synchronisation between food webs increases greatly, but this can be offset by a greater number of sites and less-connected spatial topologies.
机译:我们将生态进化食品Web模型扩展到空间显式的MetaCoConity模型,该模型在同一时间尺度与喂养和再现相同的时间尺度之间具有群体迁移。我们研究了因素,包括散勤,本地环境的特性,地区的空间拓扑,以确定当地和全球多样性以及当地食品网之间的同步程度。我们调查迁移对局部网络稳定性对扰动的影响,并且模拟了5×5的细胞空间排列,表明组合自适应迁移和异质栖息地允许不同的食物纤维网从模拟开始时共同共用。当在初始隔离后通过扩散迁移耦合食物纤维网时,如果局部位点具有空间 - 均匀的环境参数,则WebWorld模型可以构建不同食物纤维网的MetaConities。如果网站具有异质参数,食物纤维网之间的同步大大增加,但这可以通过更多的网站和较少连接的空间拓扑来抵消。

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