有机氮和无机氮对小麦生长和产量的影响

M. Moniruzzaman, R. Rabbi, N. Paul, S. Imran, Md. Asif Mahamud, M. Islam, Md. Romij Uddin, U. Sarker
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引用次数: 1

摘要

为评估有机和无机氮肥对小麦产量和生长的影响,于2019年11月至2020年3月在迈门辛格孟加拉国农业大学农学田间实验室进行了一项田间试验。试验采用随机全区设计,共设3个重复。试验采用4个品种BARI Gom-28、BARI Gom-30、BARI Gom-31、BARI Gom-32和5个氮水平,即对照,以造粒尿素(PU) N hm -1为有机氮源,以造粒尿素(PU) N hm -1 57 kg + 3 t hm -1家禽粪(PM) N hm -1为有机氮源,以PU + 5 t hm -1牛粪N hm -1 62 kg为有机氮源,以PU + 4 t hm -1蚯蚓堆肥N hm -1 29 kg为有机氮源。试验结果表明,不同品种效应和施用有机氮肥与无机氮肥对小麦生长和产量有显著影响,但部分性状不显著。生长过程中,BARI Gom-32的总分蘖数和叶面积指数最高,而57 kg N hm -1 PU和3 t hm -1 PM在20、40、60和80 DAS时的总分蘖数和叶面积指数最高。收获时,BARI gm -32的有效分蘖数最高(2.82个),灌穗数最高(32.06个),千粒重最高(61.07 g),籽粒产量最高(3.94 t hm -1),秸秆产量最高(5.85 t hm -1),收获指数最高(40.11%)。施用57 kg N hm -1 PU和3 t hm -1 PM可获得最高株(95.49 cm)、总分蘖数-1(3.96)、有效分蘖数-1(3.20)、灌穗数-1(36.61)、千粒重(60.18 g)、籽粒产量(4.34 t hm -1)、秸秆产量(6.23 t hm -1)和收获指数(41.07%)。在57 kg N / ha-1尿素和3 t N / ha-1家禽粪的组合下,BARI gm -32的最大分蘖数为4.06个,有效分蘖数为3.46个,灌穗数为39.13个,千粒重为64.62 g,籽粒产量为4.38 t hm -1,秸秆产量为6.27 t hm -1,收获指数为41.16%。综上所述,BARI Gom-32配以57 kg N hm -1的造粒尿素和3 t hm -1的禽粪,产量潜力更大,可用于小麦栽培。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Organic and Inorganic Nitrogen on the Growth and Yield of Wheat
To assess the effects of organic and inorganic N fertilizers regarding wheat yield and growth a field experiment was carried out from November 2019 to March 2020 at the Agronomy Field Laboratory, Bangladesh Agricultural University, Mymensingh. There were three replications of the experiment, which was set up using a randomized full block design. The experiment comprises four varieties viz. BARI Gom-28, BARI Gom-30, BARI Gom-31, BARI Gom-32 and five levels of N viz. Control, 90 kg N ha-1 from prilled urea (PU), 57 kg N ha-1 from prilled urea (PU) + 3 t ha-1 poultry manure (PM) as organic N source, 62 kg N ha-1 from PU + 5 t ha-1 cowdung as organic N source, 29 Kg N ha-1 from PU + 4 t ha-1 vermicompost as organic N source. The outcome of the experiment revealed that there were substantial differences in the growth and yield of wheat due to different varietal effects and application of organic and inorganic nitrogen fertilizers, although some of the attributes were not found significant. At growth, BARI Gom-32 produced the highest number of total tillers hill-1 and leaf area index, while the highest number of total tillers hill-1 and leaf area index were obtained from 57 kg N ha-1 from PU and 3 t ha-1 PM at 20, 40, 60 and 80 DAS. At harvest, the highest number of effective tillers plant-1 (2.82), filled grain spike-1 (32.06), 1000-grain weight (61.07 g), grain yield (3.94 t ha-1), straw yield (5.85 t ha-1) and harvest index (40.11%) were obtained from BARI Gom-32. While, application of 57 kg N ha-1 from PU and 3 t ha-1 PM produced the tallest plant (95.49 cm), number of total tillers plant-1 (3.96), number of effective tillers plant-1 (3.20), filled grain spike-1 (36.61), 1000-grain weight (60.18 g from T5), grain yield (4.34 t ha-1), straw yield (6.23 t ha-1) and harvest index (41.07%). Again, the maximum number of total tillers plant-1 (4.06), number of effective tillers plant-1 (3.46), filled grain spike-1 (39.13), 1000-grain weight (64.62 g), grain yield (4.38 t ha-1), straw yield (6.27 t ha-1 ) and harvest index (41.16%) were found from BARI Gom-32 in combination with 57 kg N ha-1 from prilled urea and 3 t ha-1 poultry manure. Therefore, it can be concluded that BARI Gom-32 in combination with 57 kg N ha-1 from prilled urea and 3 t ha-1 poultry manure was more potential in terms of yield and would be suggested for the cultivation of wheat.
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