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中国农学通报 ›› 2009, Vol. 25 ›› Issue (3): 117-121.

所属专题: 油料作物 园艺

• 农学 农业基础科学 • 上一篇    下一篇

油菜不同产量类型品种氮素吸收与利用特性研究

左青松,冷锁虎   

  • 收稿日期:2008-11-24 修回日期:2008-12-03 出版日期:2009-02-05 发布日期:2009-02-05

Characteristics of nitrogen absorption and utilization of rapeseed (Brassica napus L.) with different seed yield

  • Received:2008-11-24 Revised:2008-12-03 Online:2009-02-05 Published:2009-02-05

摘要: 摘要: 【研究目的】探讨甘蓝型油菜不同产量类型品种氮素吸收与利用特性。【方法】在不同土壤肥力条件下以甘蓝型油菜品种(2006-2007年度73个、2007-2008年度98个)为材料,成熟期测定各器官干物重、氮素含量,采用组内最小平方和动态聚类方法对供试品种产量进行聚类。研究不同产量类型品种氮素积累与分配差异。【结果】结果表明:供试品种间产量差异很大,类型间差异显著。随着产量增加,氮素吸收总量、氮素籽粒生产效率增加,籽粒氮素积累量增加,茎枝、果壳氮素分配比例下降,籽粒氮素比例增加。土壤肥力高,植株吸氮总量增加,氮素籽粒生产效率降低。【结论】增加氮素吸收总量,促进氮素向籽粒中输送,使得高产和高氮素利用效率统一。

关键词: 干柱层析, 干柱层析, 薄层色谱, 油茶总皂苷, 分离, 纯化

Abstract: Abstract:OBJECTIVETo study the characteristics of nitrogen absorption and utilization of rapeseed僾 (Brassica napus. L.) with different types of seed yield.METHODUnder different soil fertility conditions, 73 and 98 conventional rapeseed cultivars were cultured in 2006-2007 and 2007-2008, respectively. Through testing dry matter weight and the nitrogen content of different organs, The tested rapeseed cultivars were classified into 6 types based on seed yield by the MinSSw method, to study their characteristics of nitrogen accumulation and distribution.RESULTSThe results indicated that difference of seed yield in different types varied significantly. With increasing of seed yield, the total nitrogen amount of plant and nitrogen utilization efficiency for grain production increased. With increasing of seed yield, the nitrogen accumulation amount of seed increased, the ratio of nitrogen accumulation of stem and branches and shell to total nitrogen amount of plant reduced, and the ratio of nitrogen accumulation of seed to total nitrogen amount of plant increased. With increasing of soil fertility, the total amount of nitrogen accumulation increased, but the nitrogen utilization efficiency for grain production induced.CONCLUSIONTo get high seed yield and high nitrogen utilization efficiency in rapeseed production, increasing the total nitrogen amount of plant and making nitrogen translocate from nutritious organs to seed.