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Impact of different moisture regimes and nitrogen rates on yield and yield attributes of maize (Zea mays L.)

机译:不同水分制度和施氮量对玉米产量和产量特性的影响

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Nitrogen and irrigation, both are essential to determine the yield and quality of maize (Zea mays?L.). A field study was accomplished to determine the upshots of different levels of irrigation and varying nitrogen rates on yield, yield contributing attributes and radiation use efficiency (RUE) of maize hybrid on sandy clay loam soil. Different nitrogen rates and moisture regime treatments comprised of N0?= 0, N1?= 100 and N2= 200kg N ha-1, I1?(25 mm water deficit), I2?(50 mm water deficit), I3?(three irrigations during vegetative development + one irrigation at tasseling stage) and I4?(three irrigations during vegetative development + one irrigation at tasseling stage + one irrigation at silking stage + one irrigation at grain filling stage), respectively. Results showed that maximum grain yield (7.04 t ha-1) was recorded when six irrigations were applied (three irrigations during vegetative development + one irrigation at tasseling stage + one irrigation at silking stage + one irrigation at grain filling stage) coupled with 200 kg N ha-1?(N2?× I4). The lowest grain yield (2.08 t ha-1) was obtained in response to 25 mm water deficits. Overall, N2?× I2?also gave a positive response in terms of yield attributes but highest plant height (160.80 cm), cob length (29.00 cm), number of grains per cob (308.33), 1000-grain weight (294.33 g) and biological yield (25.67 t ha-1) with maximum coefficient of correlation (R2) values (0.9399; 0.8851; 0.9161; 0.8743 and 0.9126), respectively, was attained with N2?× I4?treatment combinations. The superior (RUE) radiation use efficiency (5.33 g MJ-1) with higher R2?value (0.8821) was significantly affected by nitrogen rates and irrigation levels as obtained from N2?× I4?treatment. However, in all treatment combinations, N2?× I4?was superior by producing the highest maize grain yield.
机译:氮和灌溉对于确定玉米的产量和质量都是必不可少的(Zea mays?L。)。完成了一项田间研究,以确定不同灌溉水平和不同氮肥用量对沙质壤土壤土上玉米杂交种产量,产量贡献特性和辐射利用效率(RUE)的影响。 N0 = 0,N1 = 100和N2 = 200kg N ha-1,I1?(25 mm水分亏缺),I2?(50 mm水分亏缺),I3?(三灌溉) I4?(无性繁殖期间+抽穗期一次灌溉)和I4?(无性繁殖期间+抽穗期一次灌溉+ ing丝期一次灌溉+籽粒灌浆期一次灌溉)I4?。结果表明,当施以六种灌溉方式(无性发育过程中的三种灌溉方式+抽穗期的一种灌溉方式+蚕​​丝期的一种灌溉方式+籽粒灌浆阶段的一种灌溉方式)时,最高谷物产量(7.04 t ha-1)达到200千克N ha-1(N 2×X I4)。响应于25 mm的水分亏缺,获得了最低的谷物产量(2.08 t ha-1)。总体而言,N2××I2在产量方面也表现出积极的反应,但最高的株高(160.80 cm),穗轴长度(29.00 cm),每根穗粒数(308.33),1000粒重(294.33 g)用N2××I4 +处理组合分别获得最大相关系数(R2)值(0.9399; 0.8851; 0.9161; 0.8743和0.9126)的生物产量(25.67t ha-1)。 R2α值(0.8821)较高的RUE辐射利用效率(5.33 g MJ-1)受N2α×I4α处理获得的氮含量和灌溉水平的显着影响。但是,在所有处理组合中,N2→×I4→由于玉米产量最高而优越。

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