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首页> 外文期刊>Movement Ecology >Automated telemetry reveals age specific differences in flight duration and speed are driven by wind conditions in a migratory songbird
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Automated telemetry reveals age specific differences in flight duration and speed are driven by wind conditions in a migratory songbird

机译:自动遥测技术揭示了迁徙鸣禽的风力条件驱动着特定年龄的飞行时间和速度差异

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BackgroundGiven that winds encountered on migration could theoretically double or half the energy expenditure of aerial migrants, there should be strong selection on behaviour in relation to wind conditions aloft. However, evidence suggests that juvenile songbirds are less choosy about wind conditions at departure relative to adults, potentially increasing energy expenditure during flight. To date, there has yet to be a direct comparison of flight efficiency between free-living adult and juvenile songbirds during migration in relation to wind conditions aloft, likely because of the challenges of following known aged individual songbirds during flight. We used an automated digital telemetry array to compare the flight efficiency of adult and juvenile Savannah sparrows ( Passerculus sandwichensis ) as they flew nearly 100?km during two successive stages of their fall migration; a departure flight from their breeding grounds out over the ocean and then a migratory flight along a coast. Using a multilevel path modelling framework, we evaluated the effects of age, flight stage, tailwind component, and crosswind component on flight duration and groundspeed. ResultsWe found that juveniles departed under wind conditions that were less supportive relative to adults and that this resulted in juveniles taking 1.4 times longer to complete the same flight trajectories as adults. We did not find an effect of age on flight duration or groundspeed after controlling for wind conditions aloft, suggesting that both age groups were flying at similar airspeeds. We also found that groundspeeds were 1.7 times faster along the coast than over the ocean given more favourable tailwinds along the coast and because birds appeared to be climbing in altitude over the ocean, diverting some energy from horizontal to vertical movement. ConclusionsOur results provide the first evidence that adult songbirds have considerably more efficient migratory flights than juveniles, and that this efficiency is driven by the selection of more supportive tailwind conditions aloft. We suggest that the tendency for juveniles to be less choosy about wind conditions at departure relative to adults could be adaptive if the benefits of having a more flexible departure schedule exceed the time and energy savings realized during flight with more supportive winds.
机译:背景技术鉴于在迁移过程中遇到的风在理论上可以使空中迁移者的能源消耗增加一倍或一半,因此应针对与高空风况相关的行为进行强有力的选择。但是,有证据表明,幼鸟相对于成年鸟而言,离场时对风况的选择较少,这可能会增加飞行过程中的能量消耗。迄今为止,尚没有直接比较自由活动的成年和少年鸣鸟在迁徙期间相对于高空风向的飞行效率的信息,这可能是由于在飞行过程中跟随已知的成年个体鸣鸟的挑战。我们使用自动数字遥测阵列比较了成年和幼年的萨凡纳麻雀(Passerculus sandwichensis)在秋季迁移的两个连续阶段飞行近100公里时的飞行效率。从繁殖地出发,飞越海洋,然后沿着海岸迁移。使用多级路径建模框架,我们评估了年龄,飞行阶段,顺风分量和侧风分量对飞行持续时间和地面速度的影响。结果我们发现,少年在相对于成年人的支撑力较小的风力条件下起飞,这导致少年花费1.4倍的时间才能完成与成年人相同的飞行轨迹。在控制了高空风力条件后,我们没有发现年龄对飞行时间或地面速度的影响,这表明两个年龄组都以相似的空速飞行。我们还发现,由于沿海地区的顺风顺风更为有利,沿海地区的地面速度比海洋快1.7倍,并且由于鸟类似乎正在越过海洋的高处爬升,将一些能量从水平运动转移到了垂直运动。结论我们的结果提供了第一个证据,表明成年鸣禽的迁徙飞行比幼鸟有效得多,而且这种效率是由选择高空顺风条件而驱动的。我们建议,如果具有更灵活的出发时间安排的好处超过了在支持风较大的飞行过程中实现的时间和能量节省,那么青少年相对于成年人在出发时对风况选择较少的趋势可以适应。

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