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Wing morphology covaries with migration distance in a highly aerial insectivorous songbird

机译:高度空中食虫鸣禽的翅膀形态与迁徙距离共变

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摘要

According to classical prediction of aerodynamic theory, birds and other powered fliers that migrate over long distances should have longer and more pointed wings than those that migrate less. However, the association between wing morphology and migratory behavior can be masked by contrasting selective pressures related to foraging behavior, habitat selection and predator avoidance, possibly at the cost of lower flight energetic efficiency. We studied the handwing morphology of Eurasian barn swallows Hirundo rustica from four populations representing a migration distance gradient. This species is an aerial insectivore, so it flies extensively while foraging, and may migrate during the day using a ‘fly-and-forage’ migration strategy. Prolonged foraging flights may reinforce the effects of migration distance on flight morphology. We found that two wings’ aerodynamic properties—isometric handwing length and pointedness, both favoring energetically efficient flight, were more pronounced in barn swallows from populations undertaking longer seasonal migrations compared to less migratory populations. Our result contrast with two recent interspecific comparative studies that either reported no relationship or reported a negative relationship between pointedness and the degree of migratory behavior in hirundines. Our results may thus contribute to confirming the universality of the rule that longer migrations are associated with more pointed wings.
机译:根据空气动力学理论的经典预测,长距离迁徙的鸟类和其他动力飞行者应该比那些迁移较少的鸟类拥有更长、更尖的翅膀。然而,翅膀形态与迁徙行为之间的关联可以通过与觅食行为、栖息地选择和捕食者避开相关的对比选择压力来掩盖,这可能是以较低的飞行能量效率为代价的。我们研究了来自代表迁徙距离梯度的四个种群的欧亚谷仓燕 Hirundo rustica 的手翼形态。该物种是一种空中食虫动物,因此它在觅食时广泛飞行,并可能在白天使用“飞行和觅食”迁移策略进行迁移。长时间的觅食飞行可能会加强迁徙距离对飞行形态的影响。我们发现,与迁徙较少的种群相比,两个翅膀的空气动力学特性——等长手翼长度和尖度,都有利于高能量高效的飞行,在进行较长季节性迁移的种群的谷仓燕子中更为明显。我们的结果与最近的两项种间比较研究形成鲜明对比,这两项研究要么报告了尖锐度与毛茸茸的迁徙行为程度之间没有关系,要么报告了负相关关系。因此,我们的结果可能有助于证实更长的迁移与更尖的翅膀相关的规则的普遍性。

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