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作 者:邸伟[1] 金喜军[1] 马春梅[1] 龚振平[2] 董守坤[1] 张磊[3]
机构地区:[1]东北农业大学农学院,黑龙江哈尔滨150030 [2]国家大豆工程技术研究中心,黑龙江哈尔滨150030 [3]黑龙江省农业科学院土壤肥料与环境资源研究所,哈尔滨黑龙江150086
出 处:《核农学报》2010年第3期612-617,共6页Journal of Nuclear Agricultural Sciences
基 金:国家科技支撑项目(2007BAD89B05;2006BAD15B04);黑龙江省科技攻关项目(GA06B101;TB08B07)
摘 要:以绥农14为材料,利用砂培和15N标记的方法研究了施氮水平对大豆氮素积累及产量的影响。结果表明:随着施氮水平的提高,大豆全株氮素积累量及叶柄、荚皮、籽粒中氮素积累量呈现先增加后下降的趋势;高氮水平增加了叶片和茎中氮素积累量,N150较N0处理叶片的氮素积累量增加了3倍,而茎增加了5倍,但减少了根中氮素积累,降低了大豆全株和籽粒中根瘤固氮量及其所占比例,降低了肥料氮和根瘤氮的收获指数,其中根中氮素积累N150较N50处理降低了60.3%,全株根瘤氮和籽粒中根瘤氮N150较N0分别降低了74.9%、85.7%,肥料氮的收获指数N150较N50降低19.8%,根瘤氮的收获指数N150较N0降低25.5%。随着施氮水平的增加,大豆产量也呈现先增加后下降的趋势,施氮水平的增加促进了大豆植株株高、结荚高度和始荚节位的显著增加,但对节数没有明显影响,N150和N0比较株高增加了55.2%,结荚高度增加了199.7%,始荚节位增加了142.9%。Methods of sand cultre and 15N tracing were used to study the effects of nitrogen application on yield and nitrogen accumulation in soybean variety SN14. The results showed as follows: accumulated nitrogen in the whole plant, petiole,pod shell and seed increased at the beginning and then decreased with the increase of nitrogen levels; Nitrogen accumulation in leaf and stem increased in 3 and 5 times for N150 than that of N0,which indicated that high nitrogen levels promoted the nitrogen accumulation in leaf and stem,however compared with N0,nitrogen accumulation in root, Nodulation-N accumulated in the whole plant and seed of N150 decreased by 60. 3% ,74. 9% and 85. 7% respectively, and Fertilizer-N harvest index of N150 decreased,which was 19. 8% lower than that of N50,as well as Nodulation-N harvest index 25. 5% lower than that of N50. The nitrogen levels of soybean yield also firstly increased and then decreased; Compared with N0,plant height,pod height and lowest pod nodes of soybean treated with N150 increased by 55. 2% ,199. 7% and 142. 9% respectively,while no effects were found on node number.
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