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Climate change could overturn bird migration: Transarctic flights and high-latitude residency in a sea ice free Arctic

机译:气候变化可能翻转鸟类迁移:横根航班和高纬度居住在海冰免疫北极

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Climate models predict that by 2050 the Arctic Ocean will be sea ice free each summer. Removing this barrier between the Atlantic and the Pacific will modify a wide range of ecological processes, including bird migration. Using published information, we identified 29 arctic-breeding seabird species, which currently migrate in the North Atlantic and could shift to a transarctic migration towards the North Pacific. We also identified 24 arctic-breeding seabird species which may shift from a migratory strategy to high-arctic year-round residency. To illustrate the biogeographical consequences of such drastic migratory shifts, we performed an in-depth study of little auks (Alle alle), the most numerous artic seabird. Coupling species distribution models and climatic models, we assessed the adequacy of future wintering and breeding areas for transarctic migrants and high-arctic year-round residents. Further, we used a mechanistic bioenergetics model (Niche Mapper), to compare the energetic costs of current little auk migration in the North Atlantic with potential transarctic and high-arctic residency strategies. Surprisingly, our results indicate that transarctic little auk migration, from the North Atlantic towards the North Pacific, may only be half as costly, energetically, than high-arctic residency or migration to the North Atlantic. Our study illustrates how global warming may radically modify the biogeography of migratory species, and provides a general methodological framework linking migratory energetics and spatial ecology.
机译:气候模型预测,到2050年,北冰洋每年夏天都会自由。在大西洋和太平洋之间移除这一屏障将改变各种生态过程,包括鸟迁移。使用已发布的信息,我们确定了29个北极育种海鸟物种,目前在北大西洋迁移,可以转向横向迁移到北太平洋。我们还确定了24种北极育种海鸟物种,可能从候补战略转向高北极全年居住。为了说明这种激烈移位的生物地图后果,我们对小型古怪(Alle Alle)进行了深入的研究,这是最多的艺术海鸟。耦合物种分布模型和气候模型,我们评估了横向移民和高北极全年居民的未来越冬和育种区域的充分性。此外,我们使用了机械生物能器模型(Niche Mapper),比较了北大西洋中当前小Auk迁移的能量成本与潜在的横向和高北极居住策略。令人惊讶的是,我们的结果表明,从北大西洋走向北太平洋的横笛小Auk迁移,可能只有一半的成本,积极地,比高北极居住或迁移到北大西洋。我们的研究说明了全球变暖如何彻底改变迁徙物种的生物地,并提供与迁徙能量和空间生态学的一般方法论框架。

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