Productivity of winter maize as affected by varieties and fertilizer levels

B. H. Adhikary, B. R. Baral, Jiban Shrestha
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引用次数: 7

Abstract

Grain yield production of maize is greatly affected by varieties and fertilizer levels. This study was conducted to determine the effects of different rates of fertilizers (nitrogen, phosphorus, potassium fertilizers and farmyard manures) on grain yield and yield attributing traits of different maize varieties during winter seasons of 2009/10 and 2010/011 at the research farm of National Maize Research Program, Rampur, Chitwan, Nepal. Six levels of fertilizers [Control (Zero fertilizer), FYM @ 10 t/ha, FYM@ 10 t/ha plus 60:30 20 kg NPK/ha, FYM@ 10 t/ha plus 120: 60: 40 kg NPK/ha, FYM@ 10 t/ha plus 180: 90: 60 kg NPK/ha, and 120: 60: 40 kg NPK/ha] and four maize varieties (Rampur Composite, Manakamana-4, Across9942 × Across 9944 and S99TLYQ-B) were evaluated in randomized complete block design with three replications. The results showed that grain yield was non-significant for maize genotypes but the fertilizers levels were highly significant for grain yield. Rampur Composite produced the highest grain yield (5195 kg/ha), followed by Manakamana-4 (5074 kg/ha), Across9942 × Across9944 (5052 kg/ha) and S99TLYQ-B (4789 kg/ha) with the application of NPK 180: 90: 60 kg/ha plus FYM 10 t/ha. This information is useful in generating suitable fertilization packages for obtaining higher grain yield of maize varieties.
品种和施肥水平对冬玉米产量的影响
玉米的籽粒产量受品种和施肥水平的影响很大。在尼泊尔Chitwan Rampur国家玉米研究计划研究农场,研究了2009/10和2010/ 11冬季不同施肥量(氮、磷、钾和农家肥)对不同玉米品种籽粒产量和产量归属性状的影响。采用3个重复的随机完全区组设计对6个玉米品种(Rampur复合玉米、Manakamana-4、Across9942 × Across 9944和S99TLYQ-B)和6个不同施肥水平(对照(零施肥)、FYM@ 10 t/ha + 60:30 / 20 kg NPK/ha、FYM@ 10 t/ha + 120:60: 40 kg NPK/ha、FYM@ 10 t/ha + 180:90: 60 kg NPK/ha和120:60:40 kg NPK/ha)进行了评价。结果表明,玉米籽粒产量对玉米基因型影响不显著,但肥料水平对籽粒产量影响极显著。在氮磷钾180:90:60 kg/ha + FYM 10 t/ha的条件下,Rampur组合产量最高(5195 kg/ha),其次是Manakamana-4 (5074 kg/ha)、Across9942 × Across9944 (5052 kg/ha)和S99TLYQ-B (4789 kg/ha)。这一信息有助于制定合适的施肥方案,提高玉米品种的籽粒产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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