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Geomagnetic field affects spring migratory direction in a long distance migrant

机译:地磁场影响长距离迁移的春季迁移方向

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摘要

Night-migrating song birds travel to and from their wintering and breeding areas often separated thousands of kilometers apart and are clearly capable of finding intended goal areas from a distant location. Displacement experiments provide a useful way to highlight orientation and navigational skills in migrants. To investigate which cues birds actually use to compensate for displacement and the exact mechanism of each cue, experiments with manipulation of single cues are required. We conducted a simulated displacement of lesser whitethroats Sylvia curruca on spring migration. Birds were displaced not geographically but in geomagnetic space only, north and south of their breeding area to test whether they incorporate information from the geomagnetic field to find their breeding area. Lesser whitethroats held in southeast Sweden but experiencing a simulated displacement north of their breeding area (Norway) failed to show a consistent direction of orientation, whereas birds displaced south of their breeding area (Czech Republic) exhibited consistent northerly orientation, close to the expected seasonally appropriate direction, after displacement toward the trapping location. The absence of a clear compensatory direction in birds displaced north might be due to unfamiliar magnetic information or lack of sufficient information such as a magnetic gradient when moving around. By isolating one orientation cue, the geomagnetic field, we have been able to show that lesser whitethroats might incorporate geomagnetic field information to determine latitude during spring migration.
机译:夜迁移的鸣鸟往返于其越冬和繁殖区域,它们通常相距数千公里,显然能够从遥远的位置找到目标区域。流离失所实验提供了一种有用的方法来突出移民中的定向和导航技能。为了研究鸟类实际上使用哪些提示来补偿位移以及每种提示的确切机制,需要对单个提示进行操纵的实验。我们对春季迁徙中的小白喉西尔维亚·卡卢卡进行了模拟位移。鸟类不是在地理上而是在繁殖区域的北部和南部被放置在地磁空间中,以测试它们是否结合了来自地磁场的信息来寻找其繁殖区域。瑞典东南部的白喉较少,但在繁殖区域(挪威)以北发生了模拟位移,未能显示出一致的方向,而在繁殖区域(捷克共和国)以南发生位移的鸟呈现出一致的北向,接近预期的季节性朝诱捕位置移动后,向正确的方向移动。向北移动的鸟类缺乏明确的补偿方向可能是由于不熟悉的磁信息或在走动时缺少足够的信息(如磁梯度)所致。通过隔离一个方向提示,即地磁场,我们已经能够证明,较少的白喉可能会合并地磁场信息来确定春季迁徙期间的纬度。

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