生物多样性
环境科学
物种丰富度
生态系统
土壤生物多样性
农学
氮气
多样性指数
土壤生物学
生态学
陆地生态系统
全球变化
土壤pH值
氮气循环
生物
土壤水分
物种多样性
土壤微生物学
土壤酸化
农林复合经营
微生物
植物多样性
植物群落
陆生植物
土壤生态学
土工试验
土壤肥力
大块土
土壤功能
真菌多样性
作者
Yu Song,Weibo Kong,Xiaorong Wei,Peter B. Reich,Liping Qiu,Josep Peñuelas,Leho Tedersoo,Mohammad Bahram,James M. Bullock,R. Bobbink,W. de Vries,Xiaoxu Jia,X. Wang,Xiaomei Gou,W. Li,Yaxian Hu,Tongchuan Li,Zhikun Chen,Zekun Zhong,Jintao Jiao
标识
DOI:10.1038/s41467-025-67815-0
摘要
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.
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