不同氮素水平和种群对Chitwan谷地冬杂交种玉米产量的响应

Goma Dhital, S. Marahatta, T. Karki, K. B. Basnet
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引用次数: 0

摘要

采用随机完全区组设计(RCBD),于2015/16冬季在Chitwan Rampur国家玉米研究计划(NMRP)研究农场进行了“不同氮素水平和植物种群下杂交玉米的生产性能”田间试验,以确定冬季杂交玉米的最佳氮素水平和植物种群。无氮对照的籽粒产量(2.38 Mt ha-1)显著低于其他所有水平(70、140和210 Kg N ha-1)。此外,210 Kg N ha-1处理的籽粒产量(5.45 Mt ha-1)显著优于70 Kg N ha-1 (3.83 Mt ha-1),但与140 Kg N ha-1 (5.02 Mt ha-1)持平,两者差异也显著。此外,101010株ha-1群体记录的籽粒产量(4.98 Mt ha-1)显著优于55,555株(3.34 Mt ha-1)和69,444株(3.90 Mt ha-1),但与85,470株ha-1 (4.46 Mt ha-1)相近,也显著高于69,444株和55,555株ha-1。对氮素和种群对籽粒产量的影响进行回归分析,籽粒产量为145 Kg N ha-1,种群为87445株ha-1。因此,杂交玉米(RML95/RML96)在冬季可以通过施用145 Kg N / 1和维持8.7万株/ 1的种群数量来获得较高的籽粒产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Response of Different Levels of Nitrogen and Plant Population to Grain Yield of Winter Hybrid Maize in Chitwan Valley
A field experiment on “Performance of hybrid maize under different levels of nitrogen and plant population” was conducted in Randomized complete block design (RCBD) at the research farm of the National Maize Research Program (NMRP), Rampur, Chitwan during the winter season of 2015/16 to determine the optimum level of nitrogen and plant population for winter season hybrid maize. The grain yield (2.38 Mt ha-1) obtained in control without nitrogen was significantly lower in comparison to its all other levels (70, 140 and 210 Kg N ha-1). Moreover, grain yield (5.45 Mt ha-1) produced by the application 210 Kg N ha-1 was significantly superior over 70 Kg N ha-1 (3.83 Mt ha-1) but remained at par with 140 Kg N ha-1 (5.02 Mt ha-1) which also differed significantly. Moreover, the grain yield (4.98 Mt ha-1) recorded with the population of 101010 plants ha-1 was significantly superior over 55,555 (3.34 Mt ha-1) and 69,444 (3.90 Mt ha-1) plants ha-1 but similar to that of 85,470 plants ha-1 (4.46 Mt ha-1) which was also significantly higher as compared to 69,444 and 55,555 plants ha-1 which were at par with each other. Regression analysis for the effect of nitrogen and plant population on grain yield showed the grain yield was 145 Kg N ha-1 and plant population was 87445 plants ha-1. Thus, hybrid maize (RML95/RML96) can be successfully grown by applying 145 Kg N ha-1 and maintaining a population of 87 thousand plants ha-1 to achieve a higher grain yield during the winter season.
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