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Nat Commun2026Article

美国西部鸟类群落暴露于预测的高严重火灾

Exposure of western United States bird communities to predicted high severity fire

Kari E. Norman · Andrew N. Stillman · Sean A. Parks · Courtney L. Davis · Gavin M. Jones

1. 信息

DOI10.1038/s41467-026-68480-7

期刊Nature Communications / Nat Commun

类型Article

发表2026-01-17 (online)

卷期页17(1): 1775

收录2026-10-03

被浏览…

关键词wildfire severityfire regime changebird communitiesbird species richnessfunctional richnessbiodiversity hotspotsfire refugiafire predictionspecies distribution modelinghabitat loss

标签—

2. 摘要

火是一个普遍的生物地理过程,塑造着全球的生物多样性,并且正经历前所未有的变化。尽管火灾对生物多样性的影响有充分记录,但我们尚不清楚生物多样性在哪些方面最易受到火灾变化的影响。我们利用火灾预测和物种分布模型的最新进展,评估美国西部鸟类物种丰富度、群落独特性和功能丰富度在火灾模式变化下的影响。我们发现,55%-58%的生物多样性热点被归类为“避难区”,即高生物多样性与预测的低严重烧毁区交汇处。相比之下,24-30%的生物多样性热点被归类为“关注区”,即高生物多样性与预测的高严重烧毁区交汇。超过一半(52-60%)的“关注区域”发生在历史上火灾严重度较低的地理区域;火灾状况不匹配,表明对生物多样性存在潜在威胁。我们发现,偏好高密度植被且喙部较浅的物种最有可能暴露于高强度火灾,这表明具有这些特征的物种栖息地可能丧失。我们的发现强化了针对性管理的呼吁,以减少未来火灾影响,尤其是在预测火灾超出历史变异范围的情况下。

原文摘要(English)

Fire is a pervasive biogeographic process that shapes biodiversity globally and is now experiencing unprecedented changes. Despite well documented impacts of fires on biodiversity, we do not know where biodiversity might be most vulnerable to changing fire regimes. We leverage recent advancements in fire forecasting and species distribution modeling to assess the exposure of bird species richness, community uniqueness, and functional richness to altered fire regimes in the western United States. We find that 55-58% of biodiversity hotspots are classified as “refugia”, where high biodiversity intersects with predicted low severity burn areas. In contrast, 24-30% of biodiversity hotspots are classified as “areas of concern”, where high biodiversity intersected with predicted high severity burn areas. Over half (52-60%) of “areas of concern” occur in geographies with historically low-severity fire regimes; a fire regime mismatch indicating a potential threat to biodiversity. We find that species with a preference for high-density vegetation and with shallower beak depth are most likely to be exposed to high severity fire, indicating a potential for habitat losses for species with these traits. Our findings reinforce calls for targeted management to reduce impacts of future fire where it is predicted to be outside the historical range of variation.

3. 图表

文章图表 / 封面图

4. 引用

Norman K E, Stillman A N, Parks S A, et al. Exposure of western United States bird communities to predicted high severity fire[J]. Nature Communications, 2026, 17(1): 1775. DOI: 10.1038/s41467-026-68480-7.
查看 BibTeX
@article{norman2026,
  author = {Kari E. Norman and Andrew N. Stillman and Sean A. Parks and Courtney L. Davis and Gavin M. Jones},
  title = {Exposure of western United States bird communities to predicted high severity fire},
  journal = {Nature Communications},
  year = {2026},
  volume = {17},
  number = {1},
  pages = {1775},
  doi = {10.1038/s41467-026-68480-7},
  publisher = {Springer Science and Business Media LLC},
}

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