格洛马林
土壤碳
生物量(生态学)
农学
环境科学
作物生产力
丛枝菌根真菌
根际细菌
土壤水分
生物肥料
种植制度
碳循环
开枪
化学
土壤有机质
土壤健康
生物炭
固碳
生产力
球囊菌门
微生物
土壤质量
营养物
种植
碳纤维
生物
土壤pH值
作物
根际
作物产量
农作物产量
作者
Muhammad Maqsood Ur Rehman,Yun-Li Xiao,Sidra Khattak,Ying Zhu,Awais Iqbal,Shi-Sheng Li,Muhammad Abrar,Asfa Batool,Yi-Bo Wang,You-Cai Xiong
标识
DOI:10.1016/j.jare.2026.01.076
摘要
Based on 989 observations, the meta-analysis reveals that both single and co-inoculation of AMF and PGPR significantly improve SOC levels. This increase is driven by enhancing key SOC fractions, including microbial biomass carbon, easily oxidizable carbon, dissolved, light fraction, and particulate organic carbon accumulation. The AMF-PGPR co-inoculation strategy is particularly effective across diverse conditions, significantly enhancing SOC in coarse (46%) and medium-textured (54%) soils across acidic (48%) and alkaline (48%) pH in various cropping systems by improving root and shoot traits. Different genera of AMF (Glomus, Rhizophagus) and PGPR (Bacillus, Pseudomonas) synergetically enhance SOC through glomalin production (48-51%), hyphal architecture (122%), phytochrome production (52%), and microbial enzymatic activities. AMF and PGPR co-inoculation enhances SOC accumulation by improving enzymatic activities (39-90%) and plant traits (44-251%). This meta-analysis concludes that AMF-PGPR co-incoulation is a sustainable strategy for increasing global soil carbon sequestration, thereby improving soil health and crop productivity in dryland ecosystems.
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