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Spatially autocorrelated disturbances and patterns in population synchrony

机译:空间自相关扰动和人口同步模式

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Spatially synchronous population dynamics have been documented in many taxa. The prevailing view is that the most plausible candidates to explain this pattern are extrinsic disturbances (the Moan effect) and dispersal. In most cases disentangling these factors is difficult. Theoretical studies have shown that dispersal between subpopulations is more likely to produce a negative relationship between population synchrony and distance between the patches than perturbations. As analyses of empirical data frequently show this negative relationship between the level of synchrony and distance between populations, this has emphasized the importance of dispersal as a synchronizing agent. However, several weather patterns show spatial autocorrelation, which could potentially produce patterns in population synchrony similar to those caused by dispersal. By using spatially extended versions of several population dynamic models, we show that this is indeed the case. Our results show that, especially when both factors (spatially autocorrelated perturbations and distance-dependent dispersal) act together, there may exist groups of local populations in synchrony together but fluctuating asynchronously with some other groups of local populations. We also show, by analysing 56 long-term population data sets, that patterns of population synchrony similar to those found in our simulations are found in natural populations as well. This finding highlights the subtlety in the interactions of dispersal and noise in organizing spatial patterns in population fluctuations.
机译:空间同步人口动态已在许多生物分类中得到了证明。普遍的看法是,解释这种模式的最合理的候选者是外部干扰(Mo吟效应)和扩散。在大多数情况下,很难弄清这些因素。理论研究表明,亚群之间的分散比扰动更可能在种群同步性和斑块之间的距离之间产生负相关关系。由于对经验数据的分析经常显示出同步水平与总体之间距离之间的这种负相关关系,因此这强调了分散作为同步剂的重要性。但是,一些天气模式显示出空间自相关,这可能潜在地产生人口同步模式,类似于由散布引起的模式。通过使用几个人口动态模型的空间扩展版本,我们证明确实是这种情况。我们的结果表明,尤其是当两个因素(空间自相关扰动和距离相关的散布)共同作用时,可能会存在一组本地人口同步在一起,但会与其他一些本地人群异步地波动。通过分析56个长期人口数据集,我们还显示,在自然种群中也发现了与我们的模拟相似的种群同步模式。这一发现突显了在组织人口波动的空间格局时,分散与噪声相互作用的微妙之处。

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