根际
农学
人类受精
大块土
营养物
化学
作物生产力
氮气
农业生态系统
生产力
土壤水分
生长季节
环境科学
野外试验
微生物群
黄杆菌
生态系统
生物
土壤肥力
作者
Yang Zhou,Muhammad Fraz Ali,Bowei Zhou,Biyao Yan,Pengjia Wu,Dong Wang
标识
DOI:10.1021/acs.jafc.6c06837
摘要
Layered nitrogen (N) fertilization has been proposed to improve wheat productivity, yet its rhizosphere mechanisms remain unclear. In a four-year field experiment, we compared layered fertilization (N1–2–1), surface application (N8), and no N input (NCK). Layered fertilization increased grain yield, anthesis-stage N accumulation, root biomass, and soil nutrient availability relative to N8. It also reshaped rhizosphere microbiomes and metabolomes, reducing overall microbial richness but enriching a Flavobacterium -enriched bacterial module. Network and correlation analyses linked this module with key metabolites, particularly β-thujaplicin and Ingenol mebutate, which were associated with yield, root traits, and improved soil fertility. These findings suggest that layered fertilization enhances wheat performance by coordinating root architecture, rhizosphere metabolite signals, and selective bacterial recruitment. The study provides a mechanistic basis for precision N placement to regulate rhizosphere processes and improve wheat productivity under sustainable management.
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