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White-throated sparrows calibrate their magnetic compass by polarized light cues during both autumn and spring migration.

机译:白喉麻雀在秋季和春季迁徙过程中通过偏振光线提示校准其磁罗经。

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摘要

The interaction and hierarchy of celestial and magnetic compass cues used by migratory songbirds for orientation has long been the topic of an intense debate. We have previously shown that migratory Savannah sparrows, Passerculus sandwichensis, use polarized light cues near the horizon at sunrise and sunset to recalibrate their magnetic compass. Birds exposed to a +/-90 deg. shifted artificial polarization pattern at sunrise or sunset recalibrated their magnetic compass, but only when given full access to celestial cues, including polarized light cues near the horizon. In the current study, we carried out cue conflict experiments with white-throated sparrows, Zonotrichia albicollis, during both spring and autumn migration in a transition zone between the species' breeding and wintering areas on the south shore of Lake Ontario. We show that white-throated sparrows also recalibrate their magnetic compass by polarized light cues at sunrise and sunset. Sunrise exposure to an artificial polarization pattern shifted relative to the natural magnetic field or exposure to a shift of the magnetic field relative to the natural sky both led to recalibration of the magnetic compass, demonstrating that artificial polarizing filters do not create an anomalous, unnatural orientation response. Our results further indicate that there is no evidence for a difference in compass hierarchy between different phases of migration, confirming previous work showing that polarized light cues near the horizon at sunrise and sunset provide the primary calibration reference both in the beginning and at the end of migration.
机译:迁徙鸣鸟使用天体和磁罗盘提示进行定向的交互作用和层次结构一直是激烈辩论的主题。先前我们已经证明,迁徙的大草原麻雀Passerculus sandwichensis在日出和日落时使用地平线附近的偏振光线索来重新校准其磁罗盘。鸟类暴露于+/- 90度。在日出或日落时改变了人工极化模式,重新校准了他们的磁罗盘,但前提是要完全获得天体线索,包括地平线附近的偏振光线索。在当前的研究中,我们在安大略湖南岸的物种繁殖和越冬地区之间的过渡带中,在春季和秋季迁徙期间,对白喉麻雀Zonotrichia albicollis进行了提示冲突实验。我们显示,白喉麻雀在日出和日落时也会通过偏振光提示重新校准其磁罗盘。日出暴露于相对于自然磁场偏移的人工极化模式或暴露于相对于自然天空的磁场偏移均导致磁罗盘的重新校准,表明人工极化滤光片不会产生异常的,不自然的方向响应。我们的结果进一步表明,在迁移的不同阶段之间指南针等级没有差异的证据,这证实了先前的工作表明日出和日落时地平线附近的偏振光提示在开始和结束时都提供了主要的校准参考。移民。

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