环境科学
生态系统
生态学
生物多样性
土壤生物学
微型动物
土壤生物多样性
土壤功能
生态系统服务
森林生态学
生物群
生态稳定性
栖息地
陆地生态系统
土壤生态学
氮气循环
均质化(气候)
土壤水分
农业
农林复合经营
自行车
土地利用
生态系统工程师
恢复生态学
生产力
植物群落
营养循环
初级生产
生态系统健康
土壤分类
横断面
土壤质量
生物地球化学
土壤化学
土壤退化
农业生态系统
作者
Xuan Zhou,Shengen Liu,Bing Wang,Liji Wu,Ying Wu,Hui-Ling Zhang,Dima Chen
标识
DOI:10.1038/s43247-025-02909-7
摘要
Abstract The conversion of natural forests to agricultural land threatens soil biodiversity and ecosystem stability, but its integrated impacts on soil multitrophic communities remain poorly understood. Here, we examined the relationships between forest-to-agriculture conversion, soil multitrophic community diversity, and temporal stability along a 3000 km transect in the Yangtze River Basin. Forest conversion increased the α-diversity of copiotrophic bacteria, but decreased the α-diversity of mycorrhizal fungi, parasitic protists, and most nematode functional groups. Crucially, it consistently decreased β-diversity across all functional groups, homogenizing soil communities. This homogenization destabilized ecosystem productivity by impairing soil nitrogen cycling and weakening plant–soil feedbacks. While the loss of α-diversity was observed in certain groups, it was the decline in β-diversity, or spatial variation, that emerged as the primary driver of reduced ecosystem stability. Our findings challenge conventional conservation paradigms by demonstrating that preserving ecosystem stability requires prioritizing β-diversity through sustainable agriculture and habitat protection.
科研通智能强力驱动
Strongly Powered by AbleSci AI