首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Bird population trends are linearly affected by climate change along species thermal ranges
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Bird population trends are linearly affected by climate change along species thermal ranges

机译:鸟类种群趋势受物种温度范围内的气候变化的线性影响

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摘要

Beyond the effects of temperature increase on local population trends and on species distribution shifts, how populations of a given species are affected by climate change along a species range is still unclear. We tested whether and how species responses to climate change are related to the populations locations within the species thermal range. We compared the average 20 year growth rates of 62 terrestrial breeding birds in three European countries along the latitudinal gradient of the species ranges. After controlling for factors already reported to affect bird population trends (habitat specialization, migration distance and body mass), we found that populations breeding close to the species thermal maximum have lower growth rates than those in other parts of the thermal range, while those breeding close to the species thermal minimum have higher growth rates. These results were maintained even after having controlled for the effect of latitude per se. Therefore, the results cannot solely be explained by latitudinal clines linked to the geographical structure in local spring warming. Indeed, we found that populations are not just responding to changes in temperature at the hottest and coolest parts of the species range, but that they show a linear graded response across their European thermal range. We thus provide insights into how populations respond to climate changes. We suggest that projections of future species distributions, and also management options and conservation assessments, cannot be based on the assumption of a uniform response to climate change across a species range or at range edges only.
机译:除了温度升高对当地人口趋势和物种分布变化的影响外,尚不清楚特定物种的种群在物种范围内如何受到气候变化的影响。我们测试了物种对气候变化的反应是否以及如何与物种热范围内的种群位置相关。我们按照物种范围的纬度梯度比较了三个欧洲国家的62种陆生繁殖鸟的平均20年生长速度。在控制了已经报告的影响鸟类种群趋势的因素(栖息地专业化,迁徙距离和体重)后,我们发现,接近物种热最大值的种群繁殖的生长速率低于温度范围其他部分的种群,而那些繁殖接近物种的最低热量具有较高的增长率。即使控制了纬度本身的影响,这些结果仍然得以保持。因此,结果不能仅由与局部春季变暖中地理结构有关的纬度来解释。实际上,我们发现种群不仅对物种最热和最冷的部分的温度变化做出响应,而且在整个欧洲热范围内表现出线性的梯度响应。因此,我们提供了有关人口如何应对气候变化的见解。我们建议,对未来物种分布的预测,以及管理方案和保护评估,不能基于对整个物种范围或仅在范围边缘对气候变化做出统一反应的假设。

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