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Impact of tillage, plant population and mulches on weed management and grain yield of maize

机译:耕作,植物种群和覆盖物对玉米杂草治理和谷物产量的影响

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Field experiments were conducted during 2006 and 2007 in Peshawar, using open pollinated maize variety "Azam" in RCB design with split-split plot arrangements having three factors viz., tillage, maize populations and mulches. The tillage levels (zero and conventional) were assigned to main plots, populations (90000, 60000 and 30000 plants ha-1) to sub-plots and the mulches (weeds mulch, black plastic mulch, white plastic mulch and mungbean as living mulch), a hand weeding and a weedy check were allotted to sub-sub plots. Data were recorded on fresh weed biomass (kg ha-1), grains cob-1, 1000-grain weight (g) and grain yield (kg ha-1). Grain yield was 2271 kg ha-1in zero-tillage compared to 2429 kg ha-1in conventional tillage. Increasing crop population increased the yield i.e. 2055, 2412 and 2483 kg ha-1in 30000,60000, and 90000 plants ha-1, respectively. However, grains cob-1and 1000-grain weight of individual plants were affected negatively with increase in crop population. Higher grain yield (2863 kg) was recorded in hand weeding and statistically at par with black plastic mulch (2813 kg), followed by weeds mulch (2460 kg), white plastic (2398 kg) and living mulch (2145 kg ha-1), respectively as compared to weedy check (1422 kg ha-1). Zero tillage resulted in higher fresh weed biomass (183 kg ha-1) than in conventional tillage (165 kg ha-1). Lower weed biomass (158 kg) was recorded in 90000 crop plants ha-1as compared to 60000 (168 kg) and 30000 (196 kg ha-1), respectively. Less fresh weed biomass was observed in hand weeding (112 kg) which was at par with black plastic mulch (120 kg), followed by weeds mulch (164 kg), white plastic mulch (191 kg) and living mulch (195 kg) as compared to check (260 kg ha-1). In light of two years study, conventional tillage with 90000 plants ha-1along with hand weeding or black plastic mulch proved to be the best in terms of weed management and grain yield.
机译:2006年和2007年在白沙瓦进行了田间试验,使用RCB设计中的开放授粉玉米品种“ Azam”,采用分耕法布置,具有耕种,玉米种群和覆盖三个因素。耕作水平(零耕种和常规耕作)分配给主要地块,种群(90000、60000和30000公顷ha-1)分配给次耕地和覆盖物(杂草覆盖物,黑塑料覆盖物,白塑料覆盖物和绿豆作为活覆盖物) ,将子除草和除草检查分配给子分区。记录了有关新鲜杂草生物量(kg ha-1),谷物cob-1、1000粒重(g)和谷物产量(kg ha-1)的数据。零耕作的谷物产量为2271 kg ha-1,而传统耕作的谷物产量为2429 kg ha-1。作物数量的增加分别增加了产量,即30000,60000和90000株ha-1中的2055、2412和2483 kg ha-1。然而,随着作物数量的增加,单株谷物cob-1和1000粒重受到不利影响。手工除草的谷物单产较高(2863公斤),统计上与黑色塑料覆盖物(2813公斤)持平,其次是杂草覆盖物(2460公斤),白色塑料(2398公斤)和活体覆盖物(2145公斤公顷-1)与杂草检查(1422 kg ha-1)相比。零耕作导致的新鲜杂草生物量(183 kg ha-1)比传统耕作(165 kg ha-1)高。在90000种农作物ha-1中记录了较低的杂草生物量(158 kg),而分别为60000(168 kg)和30000(196 kg ha-1)。手工除草(112公斤)中观察到的新鲜杂草生物量较少,与黑色塑料覆盖物(120公斤)持平,其次是杂草覆盖物(164公斤),白色塑料覆盖物(191公斤)和活覆盖物(195公斤)。相比于检查(260 kg ha-1)。经过两年的研究,从杂草管理和谷物产量的角度看,传统的耕种方式有90000公顷ha-1以及人工除草或黑色塑料覆盖的耕作是最好的。

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