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Inconsistent Range Shifts within Species Highlight Idiosyncratic Responses to Climate Warming

机译:物种内范围的变化不一致突出了对气候变暖的特质反应

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摘要

Climate in part determines species’ distributions, and species’ distributions are shifting in response to climate change. Strong correlations between the magnitude of temperature changes and the extent of range shifts point to warming temperatures as the single most influential factor causing shifts in species’ distributions species. However, other abiotic and biotic factors may alter or even reverse these patterns. The importance of temperature relative to these other factors can be evaluated by examining range shifts of the same species in different geographic areas. When the same species experience warming in different geographic areas, the extent to which they show range shifts that are similar in direction and magnitude is a measure of temperature’s importance. We analyzed published studies to identify species that have documented range shifts in separate areas. For 273 species of plants, birds, mammals, and marine invertebrates with range shifts measured in multiple geographic areas, 42-50% show inconsistency in the direction of their range shifts, despite experiencing similar warming trends. Inconsistency of within-species range shifts highlights how biotic interactions and local, non-thermal abiotic conditions may often supersede the direct physiological effects of temperature. Assemblages show consistent responses to climate change, but this predictability does not appear to extend to species considered individually.
机译:气候部分决定了物种的分布,而物种的分布正在响应气候变化而变化。温度变化幅度与范围变化幅度之间的密切相关性表明温度升高是造成物种分布变化的最重要影响因素。但是,其他非生物和生物因素可能会改变甚至逆转这些模式。温度相对于其他因素的重要性可以通过检查不同地理区域中同一物种的距离变化来评估。当同一物种在不同地理区域经历变暖时,它们在方向和大小上表现出相似范围变化的程度可以衡量温度的重要性。我们对已发表的研究进行了分析,以识别在不同区域中记录有范围变化的物种。对于在多个地理区域测得的距离变化的273种植物,鸟类,哺乳动物和海洋无脊椎动物,尽管经历了相似的变暖趋势,但42-50%的动物在距离变化方向上显示不一致。种内范围变化的不一致突出了生物相互作用和局部非热非生物条件通常如何取代温度的直接生理效应。集合显示出对气候变化的一致反应,但是这种可预测性似乎没有扩展到单独考虑的物种。

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