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Nat Ecol Evol2026Article

未来气候和土地利用变化下植物入侵风险的全球地理分布

The global geography of plant invasion risk under future climate and land-use changes

Ali Omer · Stefan Dullinger · Johannes Wessely · Bernd Lenzner · Adrián García-Rodríguez · Anna Schertler · Dietmar Moser · Andreas Gattringer · Amy J. S. Davis · Wayne Dawson · Trevor S. Fristoe · Matthias Grenié · Nicole L. Kinlock · Holger Kreft · Jan Pergl · Petr Pyšek · Mark van Kleunen · Patrick Weigelt · Marten Winter · Damaris Zurell · Franz Essl

1. 信息

DOI10.1038/s41559-026-03040-2

期刊Nature Ecology & Evolution / Nat Ecol Evol

类型Article

发表2026-03-27 (online)

卷期页10(5): 952-960

收录2026-10-04

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关键词plant invasion riskbiological invasionsnaturalized plantsspecies distribution modelingclimate change impactsland use changeinvasion hotspotsspecies turnoverplant species richness

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2. 摘要

植物入侵对生物多样性构成日益严重的威胁。本文模拟了9701种归化外来植物物种当前和未来的潜在分布,以预测它们到21世纪末的潜在扩散范围。分析表明,全球33.9%的陆地表面适宜至少10%的此类物种生存,从而确定了入侵的关键热点区域。在未来的气候和土地利用情景下,这些热点区域预计将分别在温和变化和剧烈变化情景下适度扩张至陆地表面的37.7%和36.6%。然而,这种适度的绝对增长掩盖了热点区域位置的显著空间变化,即向目前较为凉爽的地区扩张,以及向更炎热、更干燥的地区收缩。此外,我们观察到区域归化植物库中物种更替显著,这不仅表明植物入侵风险增加,也表明外来植物物种库的组成发生了变化。我们的模型预测,归化植物的丰富度和物种库组成对气候和土地利用变化的响应存在区域差异。

原文摘要(English)

Biological invasions by plants pose a growing threat to biodiversity. Here we model potential current and future distributions of 9,701 naturalized alien plant species to project their potential spread by the end of the twenty-first century. Our analysis reveals that 33.9% of the global land surface is suitable for at least 10% of these species, identifying key hotspots for invasion. Under future climate and land-use scenarios, these hotspots are projected to expand moderately to 37.7% and 36.6% of land surface under mild and severe changes, respectively. However, this moderate absolute increase conceals substantial spatial shifts in hotspot locations, with expansion into currently cooler regions and contraction in hotter, drier areas. Additionally, we observe substantial species turnover within regional naturalized plant pools, indicating not only increases in plant invasion risk, but also shifts in the composition of the alien plant species pools. Our models predict regionally divergent responses of naturalized plant richness and species pool composition to climate and land-use changes.

3. 图表

文章图表 / 封面图

4. 引用

Omer A, Dullinger S, Wessely J, et al. The global geography of plant invasion risk under future climate and land-use changes[J]. Nature Ecology & Evolution, 2026, 10(5): 952-960. DOI: 10.1038/s41559-026-03040-2.
查看 BibTeX
@article{omer2026,
  author = {Ali Omer and Stefan Dullinger and Johannes Wessely and Bernd Lenzner and Adrián García-Rodríguez and Anna Schertler and Dietmar Moser and Andreas Gattringer and Amy J. S. Davis and Wayne Dawson and Trevor S. Fristoe and Matthias Grenié and Nicole L. Kinlock and Holger Kreft and Jan Pergl and Petr Pyšek and Mark van Kleunen and Patrick Weigelt and Marten Winter and Damaris Zurell and Franz Essl},
  title = {The global geography of plant invasion risk under future climate and land-use changes},
  journal = {Nature Ecology \& Evolution},
  year = {2026},
  volume = {10},
  number = {5},
  pages = {952-960},
  doi = {10.1038/s41559-026-03040-2},
  publisher = {Springer Science and Business Media LLC},
}

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