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Subsoiling reduces N2O emissions by altering the relative gas diffusivity, O2 status and microbial communities in grazed pasture soil

作者:Juan Liu, Timothy J. Clough, Sam Carrick, Jiafa Luo, Andriy Podolyan, Naomi S. Wells, Chris Chisholm, Jupei Shen, Peng Li, Lianfeng Du, Hong Pan, L. Zhang, Hong Di · 发表于:Geoderma · 年份:2026 · DOI:10.1016/j.geoderma.2026.117716 · 被引用次数:2 · 研究领域:Soil Carbon and Nitrogen Dynamics、Soil and Water Nutrient Dynamics、Soil erosion and sediment transport

• Subsoiling enhanced soil macroporosity, O 2 status and relative gas diffusivity at 0–20 depth. • Subsoiling reduced cumulative N 2 O emissions by 52% and 81% for non-urine and urine-treated plots, respectively. • Relative gas diffusivity explained 59–87% of N 2 O flux variation during the first 15 days after urine application. • Subsoiling decreased nirK gene abundance linked to denitrification activity. Nitrous oxide (N 2 O) is a potent greenhouse gas predominantly emitted from grazed pasture through denitrification, driven by soil oxygen (O 2 ) availability and urine-derived nitrogen (N). Pasture soils are vulnerable to compaction from animal treading, restricting gas diffusion and enhancing N 2 O emissions. Although subsoiling alleviates compaction, its impact on soil O 2 status and N 2 O emissions, particularly under high urine N load, remain poorly understood and rarely investigated. This in-situ field study (March-August 2023) evaluated the effect of subsoiling on soil moisture, O 2 content, relative gas diffusivity (D p /D o ), functional gene abundance, N 2 O emissions, and pasture production. Treatments included non-subsoiling or subsoiling, each with or without synthetic ruminant urine (713 kg N ha −1 ). Subsoiling improved macroporosity, enhanced O 2 availability, increased D p /D o at 5, 10 and 20 cm depth ( P < 0.001 ), and reduced moisture at 10 cm depth ( P < 0.001 ). Subsoiling significantly reduced N 2 O emissions by 52% and 81% of non-subsoiled plots for n...