Climate-driven Connectivity Loss Impedes Species Adaptation to Warming in Deep Ocean
ID:8 View Protection:ATTENDEE Updated Time:2025-10-20 17:17:28 Hits:153 Oral Presentation

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Abstract
Marine life is expected to have fewer thermal barriers restricting their movement to adjacent habitats than terrestrial species do. However, it remains unknown how this warming-induced connectivity loss varies in different ocean strata, limiting the predictability of warming impacts on biodiversity in the whole ocean. Here, we developed a climate connectivity framework across seascape strata under different climate-change scenarios that combines thermal gradient, human impacts, and species tolerance thresholds. We show that warming may lead to connectivity loss, with its magnitude increasing with depth. Connectivity loss is projected to increase rapidly in 2050, particularly in deep strata, and may impair the movement capacity of deep-sea phyla in adapting to warming. With the compression of habitat ranges, over one quarter of deep-sea species inhabit areas may experience disrupted connectivity, threatening the maintenance of deep-sea biodiversity. Our results highlight the challenges climate change poses to biodiversity conservation through the disruption of deep-sea connectivity.
Keywords
Seascape Connectivity,Biodiversity Conservation,Climate Change
Speaker
Yi Li
Associate Professor Xiamen University

Submission Author
Yi Li Xiamen University
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Important Date
  • Conference Date

    Nov 20

    2025

    to

    Nov 24

    2025

  • Nov 10 2025

    Draft paper submission deadline

  • Nov 24 2025

    Registration deadline

Sponsored By
The Pacific Science Association
Organized By
Shantou University
Xiamen University
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