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候鸟在紫外线下的定向

Orientation of migratory birds under ultraviolet light.

作者信息

Wiltschko Roswitha, Munro Ursula, Ford Hugh, Stapput Katrin, Thalau Peter, Wiltschko Wolfgang

机构信息

Fachbereich Biowissenschaften der, J.W.Goethe-Universität Frankfurt, Max von Laue Straße 13, 60438, Frankfurt am Main, Germany,

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2014 May;200(5):399-407. doi: 10.1007/s00359-014-0898-y. Epub 2014 Apr 10.

DOI:10.1007/s00359-014-0898-y
PMID:24718656
Abstract

In view of the finding that cryptochrome 1a, the putative receptor molecule for the avian magnetic compass, is restricted to the ultraviolet single cones in European Robins, we studied the orientation behaviour of robins and Australian Silvereyes under monochromatic ultraviolet (UV) light. At low intensity UV light of 0.3 mW/m(2), birds showed normal migratory orientation by their inclination compass, with the directional information originating in radical pair processes in the eye. At 2.8 mW/m(2), robins showed an axial preference in the east-west axis, whereas silvereyes preferred an easterly direction. At 5.7 mW/m(2), robins changed direction to a north-south axis. When UV light was combined with yellow light, robins showed easterly 'fixed direction' responses, which changed to disorientation when their upper beak was locally anaesthetised with xylocaine, indicating that they were controlled by the magnetite-based receptors in the beak. Orientation under UV light thus appears to be similar to that observed under blue, turquoise and green light, albeit the UV responses occur at lower light levels, probably because of the greater light sensitivity of the UV cones. The orientation under UV light and green light suggests that at least at the level of the retina, magnetoreception and vision are largely independent of each other.

摘要

鉴于有研究发现,作为鸟类磁罗盘假定受体分子的隐花色素1a在欧洲知更鸟中仅存在于紫外单锥细胞中,我们研究了知更鸟和澳大利亚银眼鸟在单色紫外光下的定向行为。在强度为0.3毫瓦/平方米的低强度紫外光下,鸟类通过倾斜罗盘表现出正常的迁徙定向,定向信息源于眼睛中的自由基对过程。在2.8毫瓦/平方米时,知更鸟在东西轴上表现出轴向偏好,而银眼鸟则偏好东方。在5.7毫瓦/平方米时,知更鸟的方向改变为南北轴。当紫外光与黄光结合时,知更鸟表现出向东的“固定方向”反应,当用赛罗卡因对上喙进行局部麻醉时,这种反应会变为定向障碍,这表明它们受喙中基于磁铁矿的受体控制。因此,紫外光下的定向似乎与在蓝光、蓝绿色光和绿光下观察到的定向相似,尽管紫外反应在较低光照水平下发生,这可能是因为紫外锥细胞对光的敏感性更高。紫外光和绿光下的定向表明,至少在视网膜水平上,磁感受和视觉在很大程度上是相互独立的。

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Orientation of migratory birds under ultraviolet light.候鸟在紫外线下的定向
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2014 May;200(5):399-407. doi: 10.1007/s00359-014-0898-y. Epub 2014 Apr 10.
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本文引用的文献

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Magnetoreception: activated cryptochrome 1a concurs with magnetic orientation in birds.磁受体:激活的隐花色素 1a 与鸟类的磁定向一致。
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S cones: Evolution, retinal distribution, development, and spectral sensitivity.S 视锥细胞:进化、视网膜分布、发育及光谱敏感性。
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Light-dependent structural change of chicken retinal Cryptochrome4.鸡视网膜隐花色素 4 的光依赖结构变化。
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Lidocaine is a nocebo treatment for trigeminally mediated magnetic orientation in birds.利多卡因是一种治疗鸟类三叉神经介导的磁性定向的拟安慰剂治疗。
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Magnetoreception in birds: II. Behavioural experiments concerning the cryptochrome cycle.鸟类的磁感受:II. 关于隐花色素循环的行为实验。
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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.视觉与磁感受系统之间的相互作用:双色光环境对候鸟定向行为的不同影响。
J Physiol Paris. 2013 Jan-Apr;107(1-2):137-46. doi: 10.1016/j.jphysparis.2012.03.003. Epub 2012 Apr 11.
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Avian ultraviolet/violet cones as magnetoreceptors: The problem of separating visual and magnetic information.鸟类的紫外/紫光视锥细胞作为磁感受器:分离视觉信息和磁信息的问题。
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Avian ultraviolet/violet cones identified as probable magnetoreceptors.鸟类的紫外/紫锥细胞被鉴定为可能的磁受体。
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Avian magnetoreception: elaborate iron mineral containing dendrites in the upper beak seem to be a common feature of birds.鸟类的磁受体:在上喙中含有树枝状结构的精细铁矿物似乎是鸟类的一个共同特征。
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Cryptochromes--a potential magnetoreceptor: what do we know and what do we want to know?隐花色素——一种潜在的磁受体:我们知道什么,我们想知道什么?
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