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Global warming and Bergmann’s rule: do central European passerines adjust their body size to rising temperatures?

机译:全球气候变暖和伯格曼的法则:欧洲中部的雀形目鸟会随着体温的升高而调节体型吗?

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摘要

Recent climate change has caused diverse ecological responses in plants and animals. However, relatively little is known about homeothermic animals’ ability to adapt to changing temperature regimes through changes in body size, in accordance with Bergmann’s rule. We used fluctuations in mean annual temperatures in south-west Germany since 1972 in order to look for direct links between temperature and two aspects of body size: body mass and flight feather length. Data from regionally born juveniles of 12 passerine bird species were analysed. Body mass and feather length varied significantly among years in eight and nine species, respectively. Typically the inter-annual changes in morphology were complexly non-linear, as was inter-annual variation in temperature. For six (body mass) and seven species (feather length), these inter-annual fluctuations were significantly correlated with temperature fluctuations. However, negative correlations consistent with Bergmann’s rule were only found for five species, either for body mass or feather length. In several of the species for which body mass and feather length was significantly associated with temperature, morphological responses were better predicted by temperature data that were smoothed across multiple years than by the actual mean breeding season temperatures of the year of birth. This was found in five species for body mass and three species for feather length. These results suggest that changes in body size may not merely be the result of phenotypic plasticity but may hint at genetically based microevolutionary adaptations.Electronic supplementary materialThe online version of this article (doi:10.1007/s00442-009-1446-2) contains supplementary material, which is available to authorized users.
机译:最近的气候变化已导致动植物的生态反应多样化。然而,根据伯格曼法则,关于恒温疗法动物通过体型变化适应温度变化的能力知之甚少。自1972年以来,我们一直使用德国西南部的年均温度波动来寻找温度与体重两个方面之间的直接联系:体重和飞行羽毛长度。分析了来自12种雀形目鸟类的区域出生幼体的数据。体重和羽毛长度分别在八种和九种中随年变化很大。通常,形态的年际变化与温度的年际变化是复杂的非线性关系。对于六个(体重)和七个物种(羽毛长度),这些年际波动与温度波动显着相关。但是,仅在五个物种(体重或羽毛长度)中发现了符合Bergmann规则的负相关关系。在一些体重和羽毛长度与温度显着相关的物种中,通过多年平滑的温度数据比通过出生年份的实际平均繁殖季节温度更好地预测了形态反应。这在体重的五个物种和羽毛的长度的三个物种中被发现。这些结果表明,体型的改变不仅可能是表型可塑性的结果,而且可能暗示了基于遗传的微进化适应。电子补充材料本文的在线版本(doi:10.1007 / s00442-009-1446-2)包含补充材料,可供授权用户使用。

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