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Where do they go? The effects of topography and habitat diversity on reducing climatic debt in birds

机译:他们去哪里? 地形与栖息地多样性对减少鸟类气候债务的影响

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摘要

The spatial tracking of climatic shifts is frequently reported as a biodiversity response to climatic change. However, species' range shifts are often idiosyncratic and inconsistent with climatic shift predictions. At the community scale, this discrepancy can be measured by comparing the spatial shift in the relative composition of cold-vs. warm-adapted species in a local assemblage [the community temperature index (CTI)] with the spatial shift in temperature isotherms. While the local distribution of climate change velocity is a promising approach to downscaling climate change pressure and responses, CTI velocity has only been investigated on a continental or national scale. In this study, we coupled French Breeding Bird Survey data, collected from 2133 sites monitored between 2001 and 2012, with climatic data in order to estimate the local magnitude and direction of breeding season temperature shift, CTI shift, and their spatiotemporal divergence - the local climatic debt. We also tested whether landscape characteristics that are known to affect climate velocity and spatial tracking of climate change mediated the climatic debt on the local scale. We found a clear spatial structure, together with heterogeneity in both temperature and CTI spatial shifts. Local climatic debt decreased as the elevation, habitat diversity, and the naturalness of the landscape increased. These results suggest the complementary effects of the local topographic patterns sheltering more diverse microclimates and the increasing permeability of natural and diversified landscape. Our findings suggest that a more nuanced evaluation of spatial variability in climatic and biotic shifts is necessary in order to properly describe biodiversity responses to climate change rather than the oversimplified descriptions of uniform poleward shifts.
机译:气候变化的空间跟踪经常被报告为对气候变化的生物多样性反应。然而,物种的范围变化往往是特殊的,并且与气候移位预测不一致。在社区规模中,通过比较冷 - vs相对组合物中的空间偏移来测量这种差异。局部组装中的温暖适应物种[群落温度指数(CTI)],温度等温线的空间偏移。虽然气候变化速度的局部分布是缩小气候变化压力和反应的有希望的方法,但仅在大陆或国家规模上调查了CTI速度。在这项研究中,我们耦合法国育种鸟类调查数据,从2001年至2012年间监测的2133个网站收集,具有气候数据,以估计繁殖季节温度变化,CTI转变及其时空分歧的局部幅度和方向 - 当地气候债务。我们还测试了众所周知的景观特征是否影响气候变速和气候变化的空间跟踪介导当地规模的气候债务。我们发现了一种清晰的空间结构,以及温度和CTI空间偏移中的异质性。当地气候债务随着高程,栖息地多样性和景观的自然而减少。这些结果表明了局部地形模式庇护更多样化的微跨度的互补效果以及自然和多样化景观的渗透率。我们的研究结果表明,对于气候变化的气候变异性更加细致的空间可变性评估是必要的,以便适当地描述对气候变化的生物多样性反应而不是过度简化的均匀偏移的描述。

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