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Light-dependent magnetoreception: orientation behaviour of migratory birds under dim red light

机译:光依赖性磁感受:暗红色光下候鸟的定向行为

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Magnetic compass orientation in migratory birds has been shown to be based on radical pair processes and to require light from the short wavelength part of the spectrum up to 565 nm Green. Under dim red light of 645 nm wavelength and 1 mW m(-2) intensity, Australian silvereyes and European robins showed a westerly tendency that did not change between spring and autumn, identifying it as a 'fixed direction' response. A thorough analysis revealed that this orientation did not involve the inclination compass, but was a response based on the polarity of the magnetic field. Furthermore, in contrast to the orientation under short-wavelength light, it could be disrupted by local anaesthesia of the upper beak where iron-containing receptors are located, indicating that it is controlled by these receptors. The similarity of the response under dim red light to the response in total darkness suggests that the two responses may be identical. These findings indicate that the observed 'fixed direction' response under dim red light is fundamentally different from the normal compass orientation, which is based on radical pair processes.
机译:事实证明,候鸟的磁罗盘方向基于自由基对过程,并且需要光谱中短波长部分至565 nm Green的光。在645 nm波长和1 mW m(-2)强度的暗红色光下,澳大利亚银眼和欧洲知更鸟表现出西风趋势,在春季和秋季之间没有变化,将其识别为“固定方向”响应。彻底的分析表明,该方向不涉及倾斜罗盘,而是基于磁场极性的响应。此外,与短波光下的取向相反,它可能被含铁受体所在的上喙的局部麻醉打断,表明它受这些受体控制。在暗红色光下的响应与在完全黑暗中的响应相似,表明这两个响应可能是相同的。这些发现表明,在暗红色光下观察到的“固定方向”响应与正常的罗盘方向(基于自由基对过程)基本不同。

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