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Nat Clim Chang2026Article

气候变暖导致热冲击加剧和淡水栖息地破碎化加速

Climate warming drives thermal shocks and accelerated freshwater habitat fragmentation

Hong Wang · Junguo Liu · Joseph Holden · Penghan Chen · Valerio Barbarossa · Megan Klaar

1. 信息

DOI10.1038/s41558-026-02731-9

期刊Nature Climate Change / Nat. Clim. Chang.

类型Article

发表2026-08-24 (online)

卷期页16(9): 1061-1067

收录2026-10-10

被浏览…

关键词global warmingtemperature extremesfreshwater fishhabitat fragmentationthermal fragmentationrange contractionlocal extinction riskspecies vulnerabilitywater temperaturetropical species

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2. 摘要

Climate change is exposing freshwater fish to warmer temperatures, causing widespread range contraction and population declines. However, how climate-driven disruptions will affect freshwater fish persistence under future thermal extremes remains poorly understood. Here, using weekly water temperature data (1976–2099), we assess the vulnerability of 9,809 freshwater species to short- and long-term thermal extremes and show that gradual warming can trigger abrupt thermal exposure. Tropical regions experience a high proportion of species at risk, whereas non-tropical regions face severe thermal extremes. We introduce the concept of thermal fragmentation exposure to understand how heterogeneous warming fragments freshwater habitat, thereby amplifying local extinction risks. Around 63% of riverine fish will experience more persistent thermal barriers under a high-emissions scenario, with thermal fragmentation accelerating over time. These findings underscore the urgent need for targeted conservation strategies to safeguard freshwater fish biodiversity.

3. 图表

文章图表 / 封面图

4. 引用

Wang H, Liu J, Holden J, et al. Climate warming drives thermal shocks and accelerated freshwater habitat fragmentation[J]. Nature Climate Change, 2026, 16(9): 1061-1067. DOI: 10.1038/s41558-026-02731-9.
查看 BibTeX
@article{wang2026,
  author = {Hong Wang and Junguo Liu and Joseph Holden and Penghan Chen and Valerio Barbarossa and Megan Klaar},
  title = {Climate warming drives thermal shocks and accelerated freshwater habitat fragmentation},
  journal = {Nature Climate Change},
  year = {2026},
  volume = {16},
  number = {9},
  pages = {1061-1067},
  doi = {10.1038/s41558-026-02731-9},
  publisher = {Springer Science and Business Media LLC},
}

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