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Incorporating environmental change over succession in an integral projection model of population dynamics of a forest herb

机译:将环境变化与演替结合到森林草本种群动态积分模型中

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Despite seemingly obvious effects of environmental drivers, mechanisms behind long-term changes in plant population sizes over time are often poorly known. We investigated how soil potassium concentration and seed predation are likely to change over time as a result of succession from deciduous forest to spruce forest, and how this affects population trajectories of Actaea spicata. Observations and addition experiments showed that high soil potassium concentration increased individual growth rates. Among-site comparisons showed that soil potassium concentration was lower where proportion spruce was higher. Incorporation of a gradual increase in spruce over time in an integral projection model where individual growth depended on potassium suggested a net decrease in A. spicata population sizes over forest succession. This result suggests that small changes in factors with small effects on individual performance can influence patterns of species occupancy along successional gradients. We incorporated also density independent and density dependent effects of pre-dispersal seed predation over succession into the same model. Seed predation influenced the tree composition at which A. spicata population growth was positive. However, significant effects of A. spicata population size on seed predation intensity did not translate into important feedback effects on population growth trajectories over succession. Our results illustrate how demographic models can be used to gain understanding of the mechanisms behind effects of environmental change on species abundances and distributions by the simultaneous inclusion of changing abiotic and biotic factors.
机译:尽管看似环境驱动因素的明显影响,但人们长期不了解植物种群规模随时间长期变化的背后机制。我们调查了从落叶林到云杉林演替的结果,土壤钾浓度和种子捕食如何随时间变化,以及这如何影响Actaea spicata的种群轨迹。观察和添加实验表明,高土壤钾浓度可提高个体生长速率。现场比较表明,土壤钾浓度较低,云杉比例较高。在个体生长依赖于钾的积分投影模型中,随着时间的推移,云杉的逐渐增加并入,表明随着森林演替,刺槐种群数量净减少。该结果表明,对个体绩效影响较小的因素的细微变化会影响沿梯度变化的物种占用模式。我们还在同一模型中将预分散种子捕食超过演替的密度无关和密度依赖性效应结合在一起。种子的捕食影响了香气曲霉种群正增长的树组成。但是,穗状线虫种群大小对种子捕食强度的显着影响并未转化为对种群演替过程中种群生长轨迹的重要反馈作用。我们的结果说明了人口模型如何通过同时包含变化的非生物和生物因素来了解环境变化对物种丰富度和分布的影响机理。

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