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Nat Commun2026Article

全球氮富集对植物多样性的影响大于土壤、细菌和真菌多样性:荟萃分析

Global nitrogen enrichment impacts plant diversity more than soil bacterial and fungal diversity: a meta-analysis

Yu Song · Weibo Kong · Xiaorong Wei · Peter B. Reich · Liping Qiu · Josep Peñuelas · Leho Tedersoo · Mohammad Bahram · James M. Bullock · Roland Bobbink · Wim de Vries · Xiaoxu Jia · Xiang Wang · Xiaomei Gou · Wei Li · Yaxian Hu · Tongchuan Li · Zhikun Chen · Zekun Zhong · Jintao Jiao · Mingan Shao · Gehong Wei

1. 信息

2. 摘要

人为氮肥富集对植物和土壤生物多样性在本地到全球范围内都有显著影响,但氮诱导的植物多样性变化与土壤生物在多个生态系统和气候条件下的变化有何不同,仍几乎未知。通过综合全球植物和土壤研究(共458篇文章共3,816条配对观察),我们证明氮肥富集对植物多样性的负面影响更强,但对土壤细菌和真菌多样性的影响却出人意料地微乎其微甚至微乎其微。平均而言,氮肥富集导致植物物种丰富度和香农指数分别降低8.3%和10.3%。相比之下,土壤细菌减少1.9%和0.2%,土壤真菌减少<0.4%。氮诱导的土壤酸化调节土壤生物多样性变化,并结合地面生物量调节植物生物多样性变化。我们的研究结果为全球氮肥集对地下和地下生物多样性的不同影响提供了视角,强调了整合生物多样性保护策略的必要性。

原文摘要(English)

Anthropogenic nitrogen enrichment has significant effects on plant and soil biodiversity across local to global scales, yet how the nitrogen-induced changes in plant diversity differ from those in soil organisms across multiple ecosystems and climatic conditions remains virtually unknown. By synthesizing plant and soil studies globally (3,816 paired observations from 458 articles), we demonstrate that nitrogen enrichment has stronger negative effects on plant diversity but surprisingly modest to negligible effects on soil bacterial and fungal diversity. On average, nitrogen enrichment results in 8.3% and 10.3% reductions in species richness and Shannon index for plants. In contrast, it leads to 1.9% and 0.2% reductions for soil bacteria and <0.4% changes for soil fungi, respectively. The nitrogen-induced soil acidification modulates soil biodiversity change and, in conjunction with aboveground biomass, regulates plant biodiversity change. Our findings provide a perspective on the differential impacts of global nitrogen enrichment on above- and below-ground biodiversity, highlighting the need for integrated biodiversity conservation strategies. Addressing how the nitrogen-induced changes in plant diversity differ from those in soil organisms is critical. This global meta-analysis suggests that nitrogen enrichment has stronger negative effects on plant diversity but modest to negligible effects on soil bacterial and fungal diversity.

3. 图表

文章图表 / 封面图

4. 引用

Song Y, Kong W, Wei X, et al. Global nitrogen enrichment impacts plant diversity more than soil bacterial and fungal diversity: a meta-analysis[J]. Nature Communications, 2026, 17(1): 1057. DOI: 10.1038/s41467-025-67815-0.
查看 BibTeX
@article{song2026,
  author = {Yu Song and Weibo Kong and Xiaorong Wei and Peter B. Reich and Liping Qiu and Josep Peñuelas and Leho Tedersoo and Mohammad Bahram and James M. Bullock and Roland Bobbink and Wim de Vries and Xiaoxu Jia and Xiang Wang and Xiaomei Gou and Wei Li and Yaxian Hu and Tongchuan Li and Zhikun Chen and Zekun Zhong and Jintao Jiao and Mingan Shao and Gehong Wei},
  title = {Global nitrogen enrichment impacts plant diversity more than soil bacterial and fungal diversity: a meta-analysis},
  journal = {Nature Communications},
  year = {2026},
  volume = {17},
  number = {1},
  pages = {1057},
  doi = {10.1038/s41467-025-67815-0},
  publisher = {Springer Science and Business Media LLC},
}

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