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Macro- and microclimatic interactions can drive variation in species' habitat associations

机译:宏观和微观气候相互作用可以驱动物种栖息地关联的变化

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Many species are more restricted in their habitat associations at the leading edges of their range margins, but some species have broadened their habitat associations in these regions during recent climate change. We examine the effects of multiple, interacting climatic variables on spatial and temporal patterns of species' habitat associations, using the speckled wood butterfly, Pararge aegeria, in Britain, as our model taxon. Our analyses reveal that this species, traditionally regarded as a woodland-dependent insect, is less restricted to woodland in regions with warmer winters and warmer and wetter summers. In addition, over the past 40years of climate change, the species has become less restricted to woodland in locations where temperature and summer rainfall have increased most. We show that these patterns arise mechanistically because larval growth rates are slower in open (i.e. nonwoodland) habitats associated with colder microclimates in winter and greater host plant desiccation in summer. We conclude that macro- and microclimatic interactions drive variation in species' habitat associations, which for our study species resulted predominantly in a widening of habitat associations under climate change. However, species vary in their climatic and nonclimatic requirements, and so complex spatial and temporal patterns of changes in habitat associations are likely to be observed in future as the climate changes.
机译:许多物种在其范围边缘的最前沿的栖息地协会受到更多限制,但是在最近的气候变化期间,一些物种在这些地区扩大了它们的栖息地协会。我们以英国的斑点木蝴蝶Pararge aegeria为例,研究了多种相互作用的气候变量对物种栖息地协会的时空格局的影响。我们的分析表明,该物种在传统上被认为是依赖林地的昆虫,在冬季温暖,夏季温暖湿润的地区,对林地的限制较小。此外,在过去40年的气候变化中,该物种在温度和夏季降雨量增加最多的地方已不再局限于林地。我们显示出这些模式是机械产生的,因为幼虫的生长速度在开放(即非林地)栖息地较慢,与冬天的小气候寒冷和夏天的寄主植物干燥有关。我们得出的结论是,宏观和微观气候相互作用推动了物种栖息地协会的变化,对于我们的研究物种而言,这种变化主要导致气候变化下栖息地协会的范围扩大。但是,物种对气候和非气候的要求各不相同,因此,随着气候的变化,未来可能会观察到栖息地协会变化的复杂时空格局。

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