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气候驱动的迁徙通道变化和基于记忆的长距离迁徙。

Climate-driven flyway changes and memory-based long-distance migration.

机构信息

Key Laboratory of Animal Ecology and Conservation Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.

Cardiff University-Institute of Zoology Joint Laboratory for Biocomplexity Research, Chinese Academy of Sciences, Beijing, China.

出版信息

Nature. 2021 Mar;591(7849):259-264. doi: 10.1038/s41586-021-03265-0. Epub 2021 Mar 3.

DOI:10.1038/s41586-021-03265-0
PMID:33658718
Abstract

Millions of migratory birds occupy seasonally favourable breeding grounds in the Arctic, but we know little about the formation, maintenance and future of the migration routes of Arctic birds and the genetic determinants of migratory distance. Here we established a continental-scale migration system that used satellite tracking to follow 56 peregrine falcons (Falco peregrinus) from 6 populations that breed in the Eurasian Arctic, and resequenced 35 genomes from 4 of these populations. The breeding populations used five migration routes across Eurasia, which were probably formed by longitudinal and latitudinal shifts in their breeding grounds during the transition from the Last Glacial Maximum to the Holocene epoch. Contemporary environmental divergence between the routes appears to maintain their distinctiveness. We found that the gene ADCY8 is associated with population-level differences in migratory distance. We investigated the regulatory mechanism of this gene, and found that long-term memory was the most likely selective agent for divergence in ADCY8 among the peregrine populations. Global warming is predicted to influence migration strategies and diminish the breeding ranges of peregrine populations of the Eurasian Arctic. Harnessing ecological interactions and evolutionary processes to study climate-driven changes in migration can facilitate the conservation of migratory birds.

摘要

数以百万计的候鸟在北极地区季节性地占据有利的繁殖地,但我们对北极鸟类的迁徙路线的形成、维持和未来以及迁徙距离的遗传决定因素知之甚少。在这里,我们建立了一个大陆规模的迁徙系统,该系统使用卫星跟踪来跟踪来自欧亚北极繁殖的 6 个种群的 56 只游隼(Falco peregrinus),并对其中 4 个种群的 35 个基因组进行了重测序。繁殖种群使用了 5 条横跨欧亚大陆的迁徙路线,这些路线可能是由末次冰期到全新世过渡期间繁殖地的经向和纬向变化形成的。目前,这些路线之间的环境差异似乎维持着它们的独特性。我们发现,ADCY8 基因与种群水平的迁徙距离差异有关。我们研究了该基因的调控机制,发现长期记忆是游隼种群中 ADCY8 差异的最可能的选择因素。预计全球变暖将影响迁徙策略,并减少欧亚北极游隼种群的繁殖范围。利用生态相互作用和进化过程来研究气候变化对迁徙的影响,可以促进候鸟的保护。

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