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Zebra finches have a light-dependent magnetic compass similar to migratory birds

机译:斑马雀有一个与候鸟相似的轻依赖性磁指南针

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Birds have a light-dependent magnetic compass that provides information about the spatial alignment of the geomagnetic field. It is proposed to be located in the avian retina and mediated by a lightinduced, radical-pair mechanism involving cryptochromes as sensory receptor molecules. To investigate how the behavioural responses of birds under different light spectra match with cryptochromes as the primary magnetoreceptor, we examined the spectral properties of the magnetic compass in zebra finches. We trained birds to relocate a food reward in a spatial orientation task using magnetic compass cues. The birds were well oriented along the trained magnetic compass axis when trained and tested under low-irradiance 521 nm green light. In the presence of a 1.4 MHz radio-frequency electromagnetic (RF)-field, the birds were disoriented, which supports the involvement of radical-pair reactions in the primary magnetoreception process. Birds trained and tested under 638 nm red light showed a weak tendency to orient similar to 45 deg clockwise of the trained magnetic direction. Under low-irradiance 460 nm blue light, they tended to orient along the trained magnetic compass axis, but were disoriented under higher irradiance light. Zebra finches trained and tested under high-irradiance 430 nm indigo light were well oriented along the trained magnetic compass axis, but disoriented in the presence of a RF-field. We conclude that magnetic compass responses of zebra finches are similar to those observed in nocturnally migrating birds and agree with cryptochromes as the primary magnetoreceptor, suggesting that light-dependent, radicalpair-mediated magnetoreception is a common property for all birds, including non-migratory species.
机译:鸟类具有光依赖性磁指南针,提供有关地磁场的空间对准的信息。提出它位于禽视网膜中,并由涉及CryptoChromes作为感觉受体分子的亮度诱导的自由基对机构介导​​。为了调查如何与母磁体的不同光谱与母磁体的不同光谱匹配的行为响应如何,我们检查了斑马雀的磁性指南针的光谱特性。我们培训了鸟类使用磁指南针在空间取向任务中重新安置食物奖励。在低辐照度521nm绿光下训练和测试时,鸟类沿着训练的磁指南轴线良好定向。在1.4MHz射频电磁(RF) - 菲尔德的存在下,鸟类被迷失方向,其支持基础对反应在初级磁体过程中的累积。在638 nm红光下训练和测试的鸟类显示出与训练磁方向的65°相似的弱趋势。在低辐照度460nm蓝光下,它们沿着训练有素的磁性罗盘轴定向,但在更高的辐照灯下迷失方向。在高辐照度430 nm靛蓝光下训练和测试的斑马雀沿着训练有素的磁性罗盘轴线良好,但在rf场存在下令人报而视。我们得出结论,斑马雀的磁性罗盘反应与在夜间迁移鸟类中观察到的磁罗向反应,并与初级磁体同意,表明光依赖性的自由基介导的磁磁体是所有鸟类的常见性,包括非迁徙物种。 。

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