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作 者:高逖 李春喜[1] 周宝元[2] 徐光武[1] 马玮[2] 赵明[2] GAO Ti LI Chun-xi ZHOU Bao-yuan XU Guang-wu MA Wei ZHAO Ming(College of Life Science, Henan Normal University, Xinxiang 453000 Institute of Crop Sciences, Chinese Academy of Agricultural Sciences / Key Laboratory of Crop Eco-physiology and Cultivation, Ministry of Agriculture, Beijing 100081, China)
机构地区:[1]河南师范大学生命科学学院,河南新乡453000 [2]中国农业科学院作物科学研究所/农业部作物生理生态与栽培重点开放实验室,北京100081
出 处:《玉米科学》2017年第5期105-111,共7页Journal of Maize Sciences
基 金:国家科技支撑计划项目(2013BAD07B14;2013BAD07B07)
摘 要:以郑单958和中单909为试验材料,设4.5万、6.75万、9.0万株/km^2 3个种植密度和0、100、300、500 kg/km^2 4种施氮水平,分析种植密度与施氮量对夏玉米干物质积累量和氮肥利用率的影响。结果表明,玉米在种植密度9.0万株/hm^2,其叶面积指数、群体干物质积累量、总氮素积累量以及产量均显著高于4.5万株/hm^2密度处理。增施氮肥可显著增加玉米叶面积指数、单株干物质积累量、群体干物质积累量、总氮积累量和子粒产量。当施氮量为300~500 kg/hm^2时,叶面积指数、群体干物质积累量及产量不再提加,氮肥利用率和氮肥偏生产力大幅降低。结果表明,郑单958和中单909种植适宜模式为施氮量300~500 kg/hm^2、种植密度9.0万株/hm^2。The dry-matter accumulation and nitrogen utilization of summer maize were investigated with the varieties of Zhengdan958 and Zhongdan909 under the different planting densities(45 000, 67 500 and 90 000 plant/ha) and different nitrogen rates(N 0, 100, 300 and 500 kg/ha). The results showed that compared with the 45 000 plant/ ha, the leaf area index(LAI), total dry matter accumulation, total nitrogen accumulation and grain yield under 90 000 plant/ha treatment were significantly improved. The increase of nitrogen rate could effectively increase the LAI, dry matter accumulation amount per plant, biomass, total nitrogen accumulation and grain yield. LAI, total dry matter accumulation and grain yield were no more increased when nitrogen rate reached 300-500 kg/ha, and the nitrogen partial factor productivity and nitrogen partial factor productivity were significantly decreased. The most optimal nitrogen rate and plant density of Zhengdan958 and Zhongdan909 were both N 300-500 kg/ha and 90 000 plant/ha in this experiment.
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