Quantifying the timing asynchrony between soil nitrogen availability and maize nitrogen uptake
作者:Yunjiao Zhu, Sotirios V. Archontoulis, Michael J. Castellano · 发表于:Plant and Soil · 年份:2025 · DOI:10.1007/s11104-025-07352-3 · 被引用次数:8 · 研究领域:Crop Yield and Soil Fertility、Plant nutrient uptake and metabolism、Rice Cultivation and Yield Improvement
In temperate annual cropping systems, an asynchrony between soil inorganic nitrogen (N) availability and plant N uptake is hypothesized to be a major source of poor N fertilizer use efficiency and environmental N losses. However, relationships between the timing of plant N uptake and soil N availability are poorly understood due to a lack of high-resolution time-series measurements. We measured soil inorganic N pool size from 0–30 cm and 30–60 cm as well as maize ( Zea mays ) N uptake at high temporal resolution throughout the growing season across nine site-years. Using these data, we developed models based on growing degree days (GDDs) to quantify the asynchrony between soil N pool size and crop N uptake We used absolute values (kg N ha −1 ) and standardized values as a percent of maximum soil and plant N pool sizes for each site-year. The maximum rate of maize N uptake lagged the maximum rate of soil inorganic N depletion by 91 and 185 GDDs for models of absolute and standardized data. By the cessation of maize N uptake, soil inorganic N pool size declined to < 20% of initial values (< 35 kg N ha −1 ). Our data provide a valuable resource to quantify and reduce asynchrony between soil N availability and maize N demand. The models developed herein can transfer across other locations. To improve N fertilizer management.