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Maize response to time of nitrogen application and planting seasons

机译:玉米对氮素施用时间和种植季节的响应

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Nitrogen (N) response by maize differs due to growing seasons, growth stages, duration and growing domain as N losses is higher due to leaching as well as volatilization. Objective of this study was to know the response of split applications of N and growing seasons on maize under Chitwan environments. Field experiments were conducted for two consecutive years at the research field of NMRP Rampur during the winter, spring, and summer seasons of 2012/013 and 2013/014. Experiments were laid out in factorial randomized complete block design with four replications for all the seasons. Early maturing maize genotype Arun-1 EV was used for the experiments. Five splits of recommended dose of N were tested. Grain yield, days to flowering, plant height, ear height, kernel rows per ear, no. of kernels per row, ear length and thousand grain weight significantly differed due to growing seasons and split applications of N. Significantly higher grain yield (3911 kg ha-1) was obtained with the application of 30 kg N ha-1 each at 30, 45, 60, and 75 days after sowing as compared to control (2801 kg ha-1). Regarding the growing seasons, highest grain yield was obtained in winter (4393 kg ha-1) followed by spring (3791 kg ha-1) and summer (2468 kg ha-1) season, respectively. Results of these studies revealed that four splits of N viz. application of 30 kg N each at 30, 45, 60, and 75 days after sowing respectively, would be more economical to minimize N losses from the soil and efficient use of N at critical growth and development stages of maize.
机译:玉米对氮(N)的反应因生长季节,生长阶段,持续时间和生长域而异,因为淋失和挥发使氮损失较高。这项研究的目的是了解在奇旺环境下,氮素的不同施用和生长季节对玉米的响应。在NMRP Rampur的研究领域,在2012/013和2013/014的冬季,春季和夏季连续两年进行了现场试验。实验以因子随机完整块设计进行,所有季节重复四次。实验使用了早熟玉米基因型Arun-1 EV。测试了五次推荐剂量的N。籽粒产量,开花天数,株高,穗高,每穗籽粒行数。每季玉米粒,穗长和千粒重的差异因生长季节和氮素的分批施用而显着不同。在30,与对照(2801 kg ha-1)相比,播种后45、60和75天。关于生长季节,分别在冬季(4393 kg ha-1)和春季(3791 kg ha-1)和夏季(2468 kg ha-1)获得最高的谷物产量。这些研究的结果表明,N viz有四个分裂。分别在播种后30、45、60和75天分别施用30 kg氮更为经济,以最大程度地减少土壤中的氮损失,并在玉米的关键生长和发育阶段有效利用氮。

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