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Persistence and spread of stage-structured populations in heterogeneous landscapes

机译:在异构景观中舞台结构群体的持久性和传播

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摘要

Conditions for population persistence in heterogeneous landscapes and formulas for population spread rates are important tools for conservation ecology and invasion biology. To date, these tools have been developed for unstructured populations, yet many, if not all, species show two or more distinct phases in their life cycle. We formulate and analyze a stage-structured model for a population in a heterogeneous habitat. We divide the population into pre-reproductive and reproductive stages. We consider an environment consisting of two types of patches, one where population growth is positive, one where it is negative. Individuals move randomly within patches but can show preference towards one patch type at the interface between patches. We use linear stability analysis to determine persistence conditions, and we derive a dispersion relation to find spatial spread rates. We illustrate our results by comparing the structured population model with an appropriately scaled unstructured model. We find that a long pre-reproductive state typically increases habitat requirements for persistence and decreases spatial spread rates, but we also identify scenarios in which a population with intermediate maturation rate spreads fastest.
机译:异构景观的人口持久性和人口差价公式的条件是保护生态和入侵生物学的重要工具。迄今为止,已经为非结构化人群制定了这些工具,但如果不是全部,则物种在其生命周期中显示出两个或多个不同的阶段。我们制定和分析异构栖息地中的人口舞台结构化模型。我们将人口分成了预生殖和生殖阶段。我们考虑一个由两种类型的补丁组成的环境,其中人口增长是积极的,其中一个是负面的。个人在补丁中随机移动,但可以在补丁之间的界面上显示对一个补丁类型的首选项。我们使用线性稳定性分析来确定持久性条件,我们得出了分散关系以找到空间扩展率。我们通过将结构化人口模型与适当缩放的非结构化模型进行比较来说明我们的结果。我们发现长期生育状态通常会增加持续性的栖息地要求,并降低空间扩展率,但我们还确定了中间成熟率速度最快的人群的情景。

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