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Migratory shorebird adheres to Bergmann's Rule by responding to environmental conditions through the annual lifecycle

机译:通过年生命周期响应环境条件,迁移岸鸟崇拜博格曼的规则

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摘要

The inverse relationship between body size and environmental temperature is a widespread ecogeographic pattern. However, the underlying forces that produce this pattern are unclear in many taxa. Expectations are particularly unclear for migratory species, as individuals may escape environmental extremes and reorient themselves along the environmental gradient. In addition, some aspects of body size are largely fixed while others are environmentally flexible and may vary seasonally. Here, we used a long-term dataset that tracked multiple populations of the migratory piping plover Charadrius melodus across their breeding and non-breeding ranges to investigate ecogeographic patterns of phenotypically flexible (body mass) and fixed (wing length) size traits in relation to latitude (Bergmann's Rule), environmental temperature (heat conservation hypothesis), and migratory distance. We found that body mass was correlated with both latitude and temperature across the breeding and non-breeding ranges, which is consistent with predictions of Bergmann's Rule and heat conservation. However, wing length was correlated with latitude and temperature only on the breeding range. This discrepancy resulted from low migratory connectivity across seasons and the tendency for individuals with longer wings to migrate farther than those with shorter wings. Ultimately, these results suggest that wing length may be driven more by conditions experienced during the breeding season or tradeoffs related to migration, whereas body mass is modified by environmental conditions experienced throughout the annual lifecycle.
机译:身体尺寸与环境温度之间的反向关系是广泛的生成过程。然而,在许多分类群中不清楚产生这种模式的潜在力量。对于迁徙物种特别不清楚,由于个人可以逃避环境极端并沿环境梯度重新定位自己的期望。此外,身体尺寸的某些方面在很大程度上是固定的,而其他方面则是环保的,并且可能会季节性变化。在这里,我们使用了一个长期的数据集,这些数据集跟踪了迁移管道地块的多个群体,跨繁殖和非育种范围探讨了与之相关的表型柔性(体积)和固定(翼长度)尺寸特征的生成模式。纬度(Bergmann的规则),环境温度(热保守假设)和候补距离。我们发现体重与育种和非育种范围的纬度和温度都与纬度和非育种范围相关联,这与Bergmann的规则和热保守的预测一致。然而,仅在育种范围内与纬度和温度相关的翼长度。这种差异是由于季节的低迁移连通性以及具有较长翼翅膀的人的倾向,比翅膀较短的翅膀更远。最终,这些结果表明,在繁殖季节或与迁移相关的权衡期间,翼长度可以更多地驱动,而体重被整个生命周期所经历的环境条件修改。

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