生态学
分解者
土壤碳
环境科学
热带和亚热带湿润阔叶林
碳循环
启动(农业)
生物
物种多样性
植物群落
亚热带
气候变化
森林砍伐(计算机科学)
全球变暖
农学
农林复合经营
全球变化
土壤有机质
生物多样性
微生物种群生物学
α多样性
温带森林
濒危物种
热带气候
社区
环境梯度
群落结构
土壤生物学
持久性(不连续性)
生物量(生态学)
生态系统
碳纤维
作者
Pengpeng Duan,Xinyi Yang,Andrew T. Nottingham,Chaoqun Wang,Luiz A. Domeignoz‐Horta,Wolfgang Wanek,Xinli Chen,Yuqi Zhou,Hongzhao Yuan,Hu Du,Kelin Wang,Dejun Li
出处
期刊:Ecology Letters
[Wiley]
日期:2026-05-01
卷期号:29 (5): e70400-e70400
被引量:1
摘要
Nature-based climate solutions rely on the assumption that restoring plant diversity enhances soil organic carbon (SOC) sequestration. However, the persistence of SOC is threatened by the positive priming effects, where fresh plant carbon inputs accelerate the decomposition of native SOC. It remains unclear how increasing plant diversity impacts the soil priming effects. Here, using a natural tree species diversity gradient in a subtropical forest, we show that higher tree diversity was strongly associated with suppressed soil priming effects, attributable to reduced mineral protection of SOC and alleviated microbial energy limitation. Microbial community consequently shifts toward fast-growing specialists that outcompete decomposers of chemically complex carbon. Our study reveals that tree species diversity is a key regulator of SOC persistence and demonstrates that the biodiversity-driven priming suppression should be explicitly incorporated into nature-based climate solutions and Earth system models to reduce critical uncertainties in carbon cycle projections.
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