微生物群
生物群落
生物地球化学循环
环境科学
生态系统
生产力
土壤生物多样性
生物多样性
土壤微生物学
土壤功能
生态学
土壤水分
大块土
土壤生物学
陆地生态系统
土壤食物网
资源(消歧)
土壤碳
土壤pH值
农林复合经营
土层
土工试验
初级生产
生物地球化学
生态系统服务
红壤
温带气候
根际
气候变化
亚热带
土壤有机质
农学
横断面
生物
作者
Jieying Wang,Fazhu Zhao,Liyuan He,Xiaofeng Xu,Zhenghu Zhou,Chengjie Ren,Guiyao Zhou,Yaoxin Guo,Jun Wang,Sha Zhou,Manuel Delgado‐Baquerizo
摘要
Soil microbes are the planet's most abundant, diverse, and functionally vital organisms, yet only a small portion of these microbes actively drive soil processes. While resource availability is known to influence microbial physiological traits under multiple soil processes, how aboveground resource input structures the spatial distribution of the soil active microbiome remains virtually unknown. Here, we report the results from a continental standardized soil sampling at 601 sites across major biomes in China. We measured the proportion of the active microbiome (SAM%) using 5-cyano-2,3-ditolyl tetrazolium chloride (CTC) staining by flow cytometry and simultaneously evaluated their main environmental drivers. On average, < 2% of all microbes constitute the active soil microbiome. Forests supported the most active soil microbiomes (> 2%), while cropland harbored the lowest (< 1%). Aboveground productivity, peaking in tropical warmer and wetter regions, was the major environmental factor explaining variation in the active soil microbiome. Our study suggests that a less productive planet may result in drastic reductions in the active soil microbiome with consequences for supporting ecosystem function and biogeochemical cycles under climate change.
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