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Dynamics of range margins for metapopulations under climate change

机译:气候变化下人群的范围裕度动态

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We link spatially explicit climate change predictions to a dynamic metapopulation model. Predictions of species' responses to climate change, incorporating metapopulation dynamics and elements of dispersal, allow us to explore the range margin dynamics for two lagomorphs of conservation concern. Although the lagomorphs have very different distribution patterns, shifts at the edge of the range were more pronounced than shifts in the overall metapopulation. For Romerolagus diazi (volcano rabbit), the lower elevation range limit shifted upslope by approximately 700 m. This reduced the area occupied by the metapopulation, as the mountain peak currently lacks suitable vegetation. For Lepus timidus (European mountain hare), we modelled the British metapopulation. Increasing the dispersive estimate caused the metapopulation to shift faster on the northern range margin (leading edge). By contrast, it caused the metapopulation to respond to climate change slower, rather than faster, on the southern range margin (trailing edge). The differential responses of the leading and trailing range margins and the relative sensitivity of range limits to climate change compared with that of the metapopulation centroid have important implications for where conservation monitoring should be targeted. Our study demonstrates the importance and possibility of moving from simple bioclimatic envelope models to second-generation models that incorporate both dynamic climate change and metapopulation dynamics.
机译:我们将空间明确的气候变化预测链接到动态的人口模型。对物种对气候变化的反应的预测,结合了种群动态和扩散因素,使我们能够探索两种受保护的兔形体的范围裕度动态。尽管lagomorphs具有非常不同的分布模式,但在范围边缘的移动比总的总体种群的移动更为明显。对于Romerolagus diazi(火山兔),高程范围下限将上坡移动了大约700 m。由于山峰目前缺乏合适的植被,因此减少了人口迁移所占的面积。对于Lepus timidus(欧洲野兔),我们对英国的种群进行了建模。分散估计值的增加导致该种群在北部范围边缘(前沿)的移动速度更快。相比之下,它导致该种群在南部山脉边缘(后缘)对气候变化的响应变慢而不是更快。与后代范围质心相比,前缘和后缘裕度的不同响应以及范围限制对气候变化的相对敏感性,对应将保护监测作为目标的情况具有重要意义。我们的研究表明,从简单的生物气候包络模型转变为结合动态气候变化和种群动态的第二代模型的重要性和可能性。

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