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首页> 外文期刊>Journal of physiology, Paris. >Interactions between the visual and the magnetoreception system: Different effects of bichromatic light regimes on the directional behavior of migratory birds
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Interactions between the visual and the magnetoreception system: Different effects of bichromatic light regimes on the directional behavior of migratory birds

机译:视觉与磁感受系统之间的相互作用:双色光态对候鸟定向行为的不同影响

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When magnetic compass orientation of migratory robins was tested, the birds proved well oriented under low intensity monochromatic light of shorter wavelengths up to 565nm green; from 583nm yellow onward, they were disoriented. In the present study, we tested robins under bichromatic lights composed (1) of 424nm blue and 565nm green and (2) of 565nm green and 583nm yellow at two intensities. Under dim blue-green light with a total quantal flux of ca. 8??1015quanta/sm2, the birds were well oriented in their migratory direction by their inclination compass; under blue-green light of twice this intensity, their orientation became axial. In both cases, the magnetic directional information was mediated by the radical pair processes in the eye. When green and yellow light were combined, however, the nature of the behavior changed. Under green-yellow light of the higher intensity, the birds showed a 'fixed direction' response that was polar, no longer controlled by the normal inclination compass; under dim green-yellow light, the response became axial. Under these two light conditions, the respective directional information was mediated by the magnetite-based receptors in the skin of the upper beak. Apparently, yellow light leads to a change from one magnetoreception system to the other. How this change is effected is still unknown; it appears to reflect complex interactions between the visual and the two magnetoreception systems. ? 2012 Elsevier Ltd.
机译:当对迁徙知更鸟的磁罗盘方向进行测试时,证明这些鸟在短波长至565nm绿色的低强度单色光下方向良好。从583nm黄色开始,他们迷失了方向。在本研究中,我们在两种强度下在由(1)424nm蓝色和565nm绿色以及(2)565nm绿色和583nm黄色组成的双色光下测试了知更鸟。在暗蓝绿色光下,总量子通量约为8°1015quanta / sm2时,它们的倾斜罗盘使它们的迁徙方向正确。在两倍于此强度的蓝绿色光下,它们的方向变为轴向。在这两种情况下,磁方向信息都是由眼睛中的自由基对过程介导的。但是,当绿光和黄光组合在一起时,行为的性质发生了变化。在较高强度的绿黄光下,鸡只表现出极性的“固定方向”响应,不再受正常的倾斜罗盘控制;在暗黄绿色的灯光下,响应变为轴向。在这两种光照条件下,各自的方向信息由上喙皮肤中基于磁铁矿的受体介导。显然,黄光导致从一个磁接收系统变为另一个磁接收系统。这种变化是如何实现的仍然未知;它似乎反映了视觉系统与两个磁接收系统之间的复杂相互作用。 ? 2012爱思唯尔有限公司

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