菌丝
土壤碳
单作
根际
植物
外生菌根
化学
丛枝菌根真菌
格洛马林
球囊菌门
生物
丛枝菌根
菌根
土壤生物学
丰度(生态学)
相对物种丰度
大块土
血球
土壤微生物学
丛枝菌根
不规则嗜根菌
共生
非生物成分
微生物种群生物学
真菌
碳纤维
生态系统
赖草
作文(语言)
农学
分解
光合作用
作者
Bo Tang,Xiaoming Lu,Yang Wang,Jing Man,Xuezhen Zhao,Shuijin Hu,Matthias C. Rillig,Yongfei Bai
摘要
Although arbuscular mycorrhizal fungi (AMF) have been assumed to facilitate soil organic carbon (SOC) sequestration, they also regulate SOC decomposition via specific interactions with saprotrophs. We tested AMF hyphal impacts on SOC dynamics (e.g. labile C vs persistent C) under monoculture conditions with different grasses (e.g. Leymus chinensis and Stipa grandis) using an in-growth core method. Although the total SOC pool was unaffected by the presence of AM fungal hyphae, the proportional composition of labile and persistent C within SOC pools differed significantly between treatments with and without hyphal access. The presence of AM fungal hyphae from L. chinensis was associated with increased abundances of actinomycetes and Gram-positive bacteria, alongside the higher activity of polyphenol oxidase that breaks down persistent soil C, leading to a higher proportion of labile C in the SOC pool. Under S. grandis, however, hyphal presence corresponded with a greater abundance of Gram-negative bacteria that often can degrade labile soil C, resulting in a higher proportion of persistent C in the SOC pool. The influence of AM fungal hyphae on SOC depends on the identity of host plants and thus shifts in plant community composition may strongly alter SOC dynamics in grasslands.
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