Abstract The effects of warming on the buildup and depth‐related distribution of soil organic carbon (SOC) and nitrogen (N) in agricultural soil profiles remain incompletely understood. Using a long‐term field experiment initiated in 2012 in North China, we aimed to clarify whether warming would modify SOC and N accumulation and distribution in wheatland soil profiles. However, warming tended to boost wheat ( Triticum aestivum L.) aboveground biomass but reduced root biomass and root‐to‐shoot ratios by 25.5%–66.7% and 26.9%–57.6%, respectively, from 2016 to 2024. Since 2020, it decreased SOC, total nitrogen (TN), and C/N ratios in the 0–20 cm layer. Warming significantly increased SOC levels by 16.1% in the 20–40 cm layer but reduced them by 15.8% and 23.6% in the 0–20 cmand 40–60 cm soil depths, respectively. TN content rose significantly by 12.8% and 33.3% in the 20–40 cm and 60–80 cm soil layers, respectively. However, inorganic nitrogen (IN) content increased by 36.8%–166.5% across depths. C/N ratios declined by 9.7%–28.3% in 0–20 cm, 40–60 cm, and 60–80 cm. Consequently, warming enhanced C and N contents in the 20–80 cm soil layer, though this came with a decrease in topsoil C and N stocks. In the 1 m soil profile, long‐term warming significantly curtailed SOC storage by 10.8%, primarily due to topsoil depletion, while elevating IN accumulation by 54.8%. These insights are pivotal for understanding how warming influences C and N storage and distribution within a 1 m wheatland soil profile under anticipated future warming scenarios.
Li et al. (Sun,) studied this question.
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