Unlocking soil nitrous oxide sink through labile carbon
Yiping Xu, Deqiang Zhao, Huadong Zang, Jørgen E. Olesen, Yiqi Luo, Pete Smith, Shunli Zhou, Yuan Wen
China Agricultural University Aarhus University Cornell University University of Aberdeen
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摘要与影响
Nitrous oxide (N 2 O), a potent greenhouse gas and the dominant ozone-depleting substance, is primarily emitted from soils. Understanding atmosphere-to-soil N 2 O uptake is crucial for harnessing the soil’s natural sink potential, yet its quantification and mechanistic drivers remain poorly constrained. Here, we disentangled gross N 2 O emission and uptake using the 15 N 2 O pool dilution method, revealing key drivers in five cropland soils across China and in labile carbon–amended soils. In particular, the ratio of gross N 2 O uptake to emission—driven by the soil labile carbon to inorganic nitrogen [dissolved organic carbon/dissolved inorganic nitrogen (DOC/DIN)] ratio—showed pronounced variability (0.28 to 0.79), revealing a powerful but previously underestimated lever for regulating net N 2 O fluxes. Mechanistically, an elevated DOC/DIN ratio promoted complete denitrification by increasing electron supply, stimulating oxygen-depleting respiration, and enhancing nosZ gene abundance, achieving up to 51% N 2 O mitigation. Our findings underscore soils as dynamic N 2 O regulators and propose a carbon-nitrogen–coupled regulation framework, where labile carbon plays a critical role in regulating N 2 O dynamics.
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学术脉络
学科主题
生物医学Soil Carbon and Nitrogen Dynamics
Plant Water Relations and Carbon Dynamics · Plant responses to elevated CO2
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