首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Using Mechanistic Models to Understand Synchrony in Forest Insect Populations: The North American Gypsy Moth as a Case Study
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Using Mechanistic Models to Understand Synchrony in Forest Insect Populations: The North American Gypsy Moth as a Case Study

机译:使用机制模型了解森林昆虫种群的同步性:以北美吉普赛蛾为例

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In many forest insects, subpopulations fluctuate concurrently across large geographical areas, a phenomenon known as population synchrony. Because of the large spatial scales involved, empirical tests to identify the causes of synchrony are often impractical. Simple models are, therefore, a useful aid to understanding, but data often seem to contradict model predictions. For instance, chaotic population dynamics and limited dispersal are not uncommon among synchronous forest defoliators, yet both make it difficult to achieve synchrony in simple models. To test whether this discrepancy can be explained by more realistic models, we introduced dispersal and spatially correlated stochasticity into a mechanistic population model for the North American gypsy moth Lymantria dispar. The resulting model shows both chaotic dynamics and spatial synchrony, suggesting that chaos and synchrony can be reconciled by the incorporation of realistic dynamics and spatial structure. By relating alterations in model structure to changes in synchrony levels, we show that the synchrony is due to a combination of spatial covariance in environmental stochasticity and the origins of chaos in our multispecies model.
机译:在许多森林昆虫中,子种群在较大的地理区域内同时波动,这种现象称为种群同步。由于涉及的空间规模很大,因此无法确定用于确定同步原因的经验测试。因此,简单的模型有助于理解,但是数据似乎常常与模型的预测相矛盾。例如,混乱的种群动态和有限的扩散在同步的森林落叶者中并不少见,但是两者都使得在简单模型中难以实现同步。为了测试这种差异是否可以用更现实的模型来解释,我们将分散和空间相关的随机性引入了北美吉普赛蛾Lymantria dispar的机械种群模型中。结果模型同时显示了混沌动力学和空间同步性,表明可以通过合并现实动力学和空间结构来协调混沌和同步。通过将模型结构的变化与同步水平的变化相关联,我们表明同步是由于环境随机性的空间协方差和我们的多物种模型中混沌的起源的结合。

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