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Seasonally specific responses to wind patterns and ocean productivity facilitate the longest animal migration on Earth

机译:对风模式和海洋生产力的季节性特定反应有助于地球上最长的动物迁移

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摘要

Migratory strategies of animals are broadly defined by species' eco-evolutionary dynamics, while behavioural plasticity according to the immediate environmental conditions en route is crucial for energy efficiency and survival. The Arctic tern Sterna paradisaea is known for its remarkable migration capacity, as it performs the longest migration known by any animal. Yet, little is known about the ecology of this record-breaking journey. Here, we tested how individual migration strategies of Arctic terns are adapted to wind conditions and fuelling opportunities along the way. To this end, we deployed geolocators on adult birds at their breeding sites in Svalbard, Norway. Our results confirm fundamental predictions of optimal migration theory: Arctic terns tailor their migration routes to profit from (1) tailw-ind support during the movement phase and (2) food-rich ocean areas during the stopover phase. We also found evidence for seasonally distinct migration strategies: terns prioritize fuelling in areas of high ocean productivity during the southbound autumn migration and rapid movement relying on strong tailwind support during the northbound spring migration. Travel speed in spring was 1.5 times higher compared to autumn, corresponding to an increase in experienced wind support. Furthermore, with their pole-to-pole migration, Arctic terns experience approximately 80% of all annual daylight on Earth (the most by any animal), easing their strictly diurnal foraging behaviour. However, our results indicate that during migration daylight duration is not a limiting factor. These findings provide strong evidence for the importance of interaction between migrants and the environment in facilitating the longest animal migration on Earth.
机译:动物的迁移策略由物种的生态进化动态广泛定义,而行为可塑性根据直接环境条件的途径对于能效和生存至关重要。北极Tern STerna Paradisaea以其显着的迁移能力而闻名,因为它表现了任何动物已知的最长的迁移。然而,对这一纪录突然的旅程的生态知之甚少。在这里,我们测试了北极燕鸥的个人迁移策略如何适应风力条件和沿途的机会。为此,我们在挪威斯瓦尔巴特的繁殖场地部署了成人鸟类的地理偶。我们的结果证实了最佳迁移理论的基本预测:北极燕鸥定制他们的迁移路线以在移动阶段和(2)贫粮海洋地区在拆迁阶段的富含食物的海洋地区来获利。我们还发现了季节性不同的移民策略的证据:燕鸥在南行秋季迁徙期间高海洋生产力领域的燃料优先顺序,依靠北行春季迁徙期间依靠强大的尾风支撑。与秋季相比,春季的旅行速度比秋季更高1.5倍,对应于经验丰富的风力支持。此外,由于杆头迁移,北极燕鸥体验到地球上所有年度白天的80%(最多的动物),缓解了严格的昼夜觅食行为。但是,我们的结果表明,在迁移时,日光持续时间不是限制因素。这些调查结果为移民与环境之间的互动的重要性提供了强有力的证据,促进了地球上最长的动物迁移。

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  • 来源
    《Oceanographic Literature Review》 |2020年第10期|2230-2230|共1页
  • 作者单位

    Department of Zoology Palacky University Olomouc 771 46 Czech Republic;

    Department of Zoology Palacky University Olomouc 771 46 Czech Republic;

    Department of Zoology Palacky University Olomouc 771 46 Czech Republic;

    Department of Zoology Palacky University Olomouc 771 46 Czech Republic;

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