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Weed Dynamics and Grain Yield of Maize (Zea mays L.) as Influenced by Different Fertility Levels and Weed Control Measures under Temperate Kashmir

机译:温和克什米尔条件下不同生育水平和杂草控制措施对玉米杂草动力学和产量的影响

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A field experiment was conducted during kharif seasons of 2004 and 2005 at the experimental farm of the Division of Agronomy, Sher-e-Kashmir University of Agricultural Sciences and Technology of Kashmir to study weed dynamics and grain yield of maize(Zea mays L.) as influenced by different fertility levels and weed control measures. Experimental field was dominated with Echinochloa spp., Cynodon dactylon, Portulaca oleracea and Cyperus spp. Highest total weed density, dry matter accumulation and nitrogen uptake (kg ha~(-1)) were recorded with the treatment of N_(90) (F_1) than N_(90) + Azotobacter (F_2), N_(120) (F_3) and N_(120) + Azotobacter (F_4) treatments. Significantly longest cobs, cob diameter, number of rows per cob and highest weed control efficiency (WCE) were recorded with the higher fertility level of N_(120) + Azotobacter (F4) as compared to N_(90) (F_1) treatment during both the experiments. Minimum total weed density, dry matter accumulation and nitrogen uptake (kg ha~(-1)) were observed under polyethylene mulch (W5). On the contrary, highest grain yield (51.42 q ha~(-1)) and WCE (67.3 and 66.54 %) were recorded in polyethylene mulch (W5) than rest of the weed control measures. Benefit cost ratio was highest with N_(120) + Azotobacter (F_4) and atrazine @ 1.0 kg ha1 (W3) treatments respectively. Uncontrolled weed growth caused 73.41 per cent reduction in grain yield of maize.
机译:在2004年和2005年的卡里夫季节中,对克什米尔谢尔·e·克什米尔农业科学技术大学农学部的实验农场进行了田间试验,以研究玉米(Zea mays L.)的杂草动力学和谷物产量受不同的生育水平和杂草控制措施的影响。实验领域以E草属,犬齿Cy,马齿Port和莎草属为主。 N_(90)(F_1)处理比N_(90)+固氮菌(F_2),N_(120)(F_3)处理的最高总杂草密度,干物质积累和氮吸收(kg ha〜(-1)) )和N_(120)+固氮菌(F_4)处理。与N_(90)(F_1)处理相比,N_(120)+固氮菌(F4)的较高生育力水平记录了最长的穗轴,穗轴直径,每根穗轴的排数和最高的杂草控制效率(WCE)。实验。在聚乙烯覆盖(W5)下观察到最小总杂草密度,干物质积累和氮吸收(kg ha〜(-1))。相反,与其他杂草控制措施相比,聚乙烯覆盖物(W5)中记录的最高谷物产量(51.42 q ha〜(-1))和WCE(67.3和66.54%)。 N_(120)+固氮菌(F_4)和阿特拉津@ 1.0 kg ha1(W3)处理的效益成本比最高。杂草生长不受控制,导致玉米籽粒减产73.41%。

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