Nitrogen Availability Regulates Tree Mixture Effects on Soil Organic Carbon in Temperate Forests: Insights From a Meta‐Analysis and Long‐Term Experiment

生物群落 温带雨林 温带森林 温带气候 生态学 环境科学 热带和亚热带湿润阔叶林 非生物成分 土壤碳 生态系统 农林复合经营 亚热带 生物 土壤水分
作者
Tao Zhou,Chuankuan Wang,Zhenghu Zhou
出处
期刊:Global Ecology and Biogeography [Wiley]
卷期号:34 (6) 被引量:5
标识
DOI:10.1111/geb.70073
摘要

ABSTRACT Aim Forests are essential for maintaining global soil organic carbon (SOC) balance, especially in species‐rich ecosystems. However, the effect of tree diversity on SOC accumulation among different biomes remains poorly understood, owing to complex biotic–abiotic interactions. Location Global. Time Period 1983–2021. Major Taxa Studied Trees. Methods A comprehensive meta‐analysis was used to examine the effects of tree diversity on SOC across different forest biomes. In addition, a 34‐year manipulation experiment was used to investigate the mechanisms driving diversity effects on SOC in temperate forests. Results Tree mixtures increased SOC by 6.2% globally. The effects of tree mixtures on SOC showed significant biome‐specific variation, with positive effects in tropical/subtropical forests and no significant effects in temperate/boreal forests. However, tree mixtures with nitrogen‐fixing species significantly increased SOC by 13.2% in temperate forests. Furthermore, our temperate field experiment further suggested that increased tree diversity tends to negatively affect nitrogen availability, which may affect positive effect of tree mixtures on SOC. Main Conclusions Our results provide strong evidence that increasing tree diversity enhances SOC storage, especially in tropical/subtropical forests, underscoring the importance of mixed plantations for climate change mitigation. However, in nitrogen‐limited temperate forests, tree mixture effects are constrained by intensified plant‐microbe competition for nitrogen. Introducing nitrogen‐fixing tree species during afforestation or plantation management in temperate regions is expected to enhance SOC storage by alleviating nitrogen limitation.
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