营养物
氮气
化学
产量(工程)
农学
磷
黄土高原
粮食产量
野外试验
根系
土壤碳
黄土
生物
作物产量
禾本科
植物
土壤养分
土壤水分
碳纤维
环境科学
植物营养
氮气循环
生物量(生态学)
根毛
总有机碳
作者
Yang Zhou,Yongqiao Zhang,Xinhua LYU,Jiaming Cui,Shuang Li,Pengjia Wu,Xiang Lin,Dong Wang
标识
DOI:10.1016/j.cj.2025.12.016
摘要
Layered nitrogen (N) application to wheat is intended to avert nutrient retention in the topsoil, which limits deep root development and grain yield. In a two-year field experiment on the Loess Plateau comparing two N treatments: 240 kg N ha −1 applied at the 8-cm soil depth or in a 1:2:1 ratio to the 8-, 16-, and 24-cm soil layers, the layered treatment increased grain yield, post-anthesis N accumulation, phosphorus (P) accumulation, root density, and soil organic carbon and available P in the 8−24-cm layers. It also upregulated N and P transporter genes in roots across different soil layers. Layered N application optimized the vertical nutrient distribution in the wheat root zone, induced adaptive root architectural development, and activated the transcriptional regulatory network of nutrient uptake, promoting post-anthesis nutrient assimilation and ultimately improving grain yield.
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