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Growth and yield of soybean as influenced by maize + soybean intercropping systems and nitrogen levels

机译:玉米+大豆间作系统和氮水平对大豆生长和产量的影响。

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A field investigation was conducted at Amar Singh College, Lakhaoti, Bulandshahr during kharif seasons of 2009 and 2010 to study the growth and yield performance of soybean under maize + soybean intercropping systems and nitrogen levels. Soybean grownas intercrop registered significantly higher growth and yield up to application of 40 kg N/ha to maize crop. The higher levels at 80 kg and 120 kg N/ha failed to produce significant effect. Similarly, the grain and stover yield showed significant improvement up to 80 kg N/ha. Increase in nitrogen upto 80 kg N/ha to maize crop did not show any adverse effect on soybean since except basal dose, the fertilizers were applied only to maize crop row zone. Maize + soybean intercropping led to efficient use ofland and higher economic return. Interaction effect between cropping systems and N levels was not significant. The benefit; cost ratio was enhanced with maize + soybean intercropping in additive series and was superior as soybean improved the fertilitystatus of soil.
机译:在2009年和2010年的哈里夫季期间,在Bulandshahr的Lakhaoti的Amar Singh学院进行了田野调查,研究了玉米+大豆间作系统和氮水平下大豆的生长和产量表现。间作大豆的生长和产量高达40 kg N / ha,明显高于玉米。 80 kg和120 kg N / ha的较高含量未能产生显着效果。同样,高达80 kg N / ha的谷物和秸秆单产也显着提高。氮肥增加至玉米作物高达80 kg N / ha对大豆没有任何不利影响,因为除基本剂量外,该肥料仅施用于玉米作物行区。玉米+大豆间作导致土地有效利用和更高的经济回报。种植系统与氮素水平之间的相互作用影响不显着。好处;玉米+大豆间作的添加剂系列可以提高成本比,而且由于大豆改善了土壤肥力状况,成本比更高。

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