Enhanced early growth rates in high cumulative temperature requirement maize (Zea mays L.) varieties drive superior production potential in rainfed North China Plain
作者:Biwei Gao, Yuzhao Ma, Pingguo Yang, Yukui Fu, Baodi Dong, Yanfang Zhou, Qirui Chen, Yunzhou Qiao · 发表于:Journal of Agriculture and Food Research · 年份:2025 · DOI:10.1016/j.jafr.2025.102044 · 被引用次数:1 · 研究领域:Crop Yield and Soil Fertility、Rice Cultivation and Yield Improvement、Genetics and Plant Breeding
: The delayed onset of the rainy season in the North China Plain (NCP) frequently leads to postponed sowing or germination of summer maize in rainfed areas, thereby shortening the grain filling stage and reducing overall yield. Among the factors influencing maize production potential, cumulative temperature has emerged as a critical determinant. This two-year study assessed four maize varieties with differing cumulative temperature requirements: high cumulative temperature requirement maize varieties (H CTR , 2,800–2,990 °C; Zhengdan 958 and Xuntian 969) and low cumulative temperature requirement maize varieties (L CTR , 2,200–2,450 °C; Jifeng 2 and Junyi 86) under late sowing (end of June). Yield, biomass, leaf area index, photosynthetic characteristics, and crop growth rates were analyzed. Results showed H CTR varieties achieved significantly higher yields (19.8%–25.7%) than L CTR varieties, even with suboptimal cumulative temperatures (2,508.8°C in 2022; 2,694.2°C in 2023). H CTR varieties had superior hundred-grain weight (10.7%) and grain number per cob (12.5%). Aboveground biomass followed a logarithmic growth curve, with H CTR varieties outperforming L CTR throughout, especially at blister (R2, 29.0%–31.8%) and milk stages (R3, 9.0%–12.6%). This was due to earlier peak growth rates at R2 for H CTR , while L CTR peaked at R3. H CTR also showed higher relative chlorophyll content (5.9%) and net photosynthetic rate (14.1%) at R2, though these declined at R3 (4.4% and 13.0...