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大西洋海鹦的弥散性迁徙及其对迁徙导航的影响。

A dispersive migration in the Atlantic Puffin and its implications for migratory navigation.

机构信息

Department of Zoology, University of Oxford, Oxford, Oxfordshire, United Kingdom.

出版信息

PLoS One. 2011;6(7):e21336. doi: 10.1371/journal.pone.0021336. Epub 2011 Jul 20.

Abstract

Navigational control of avian migration is understood, largely from the study of terrestrial birds, to depend on either genetically or culturally inherited information. By tracking the individual migrations of Atlantic Puffins, Fratercula arctica, in successive years using geolocators, we describe migratory behaviour in a pelagic seabird that is apparently incompatible with this view. Puffins do not migrate to a single overwintering area, but follow a dispersive pattern of movements changing through the non-breeding period, showing great variability in travel distances and directions. Despite this within-population variability, individuals show remarkable consistency in their own migratory routes among years. This combination of complex population dispersion and individual route fidelity cannot easily be accounted for in terms of genetic inheritance of compass instructions, or cultural inheritance of traditional routes. We suggest that a mechanism of individual exploration and acquired navigational memory may provide the dominant control over Puffin migration, and potentially some other pelagic seabirds, despite the apparently featureless nature of the ocean.

摘要

鸟类迁徙的导航控制,主要通过对陆生鸟类的研究,被认为依赖于遗传或文化继承的信息。通过使用地理定位器连续数年追踪大西洋海鹦(Fratercula arctica)的个体迁徙,我们描述了一种显然与这种观点不一致的远洋海鸟的迁徙行为。海鹦不会迁徙到一个单一的越冬地,而是在非繁殖期内呈现分散的运动模式,其旅行距离和方向变化很大。尽管存在这种种群内的变异性,但个体在多年间的迁徙路线上表现出显著的一致性。这种复杂的种群分散和个体路线的保真度的结合,不能简单地用罗盘指令的遗传继承或传统路线的文化继承来解释。我们认为,个体探索和获得的导航记忆机制可能会对海鹦的迁徙提供主导控制,并且可能对一些其他远洋海鸟也提供控制,尽管海洋表面看起来没有明显的特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2840/3140476/2e7cd24b4133/pone.0021336.g001.jpg

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