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Weed Dynamics in Bt cotton under Moisture Conservation and Integrated Nutrient Management Practices

机译:水分保护和综合营养管理实践下BT棉中的杂草动态

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A field investigation was conducted to evaluate the effect of moisture conservation practices [flat bed sowing, ridge and furrow, broad bed and furrow (BBF) and poly mulch on BBF] and integrated nutrient management treatments [Farmer’s practice, 100% recommended dose of fertilizers (RDF) of 150:60:60 NPK kg ha~(-1), 125% RDF, 100% RDF along with 25% N through Farm Yard Manure (FYM) or press mud] and their combined effect on weed dynamics of Bt cotton at College Farm, Professor Jayashankar Telangana State Agricultural University (PJTSAU), Telangana, India. The experiment was laid out in strip-plot design and replicated thrice. Pooled data of the two years (2015 and 2016) indicated that poly mulch on broad bed (M_(4)) registered significantly lower weed density and dry weight at 30 days after sowing (DAS) and it was followed by broad bed and furrow (M_(3)) which was at par with flat bed (M_(1)) and ridge and furrow (M_(2)) methods. Among nutrient management practices, lower weed density was recorded with the application of 100% RDF (S_(2)) followed by 125% RDF (S_(3)) and 100% RDF (S_(5)) along with pressmud equivalent to 25% RDN (S_(5)). However, the interaction effect on weed density and drymatter was found to be non-significant at 30 DAS. Contrary to this, at 60 and 90 DAS, the interaction was found to be significant. At 60 DAS, poly mulch on broad bed (M_(4)S_(2)) along with 100% RDF and poly mulch on broad bed (M_(4)S_(3)) along with 125% RDF recorded lower weed density over other treatment combinations. At 90 DAS also similar results were observed with respect to weed density. However, lower weed dry weight was observed with poly mulch on broad bed (M_(4)S_(3)) along with 125% RDF.
机译:进行了实地调查,以评估水分保护实践[扁平床播种,脊和沟,繁殖床和犁沟(BBF)和POOMBF覆盖物的效果]和综合营养管理治疗[农民实践,100%推荐剂量的肥料(RDF)为150:60:60:60:60 npk kg HA〜(-1),125%RDF,100%RDF,通过农场粪便粪便(FYM)或压制泥浆,与25%N为25%N,以及它们对BT杂草动态的综合影响棉花在大学农场,Jayashankar Telangana国家农业大学教授(PJTSAU),印度Telangana。该实验在条形图设计中布置并复制三次。两年(2015年和2016)的汇总数据(2015年和2016)表示,阔床上的Poly Mulch(M_(4))在播种(DAS)后30天内在30天内注册显着降低的杂草密度和干重,其次是宽床和沟槽( M_(3))与平板(M_(1))和脊和沟(M_(2))方法为准。在营养管理实践中,施用100%RDF(S_(2))后,将较低的杂草密度记录125%RDF(S_(3))和100%RDF(S_(5))以及相当于25的Pressmud %RDN(S_(5))。然而,发现对杂草密度和犯规的相互作用效应在30 das下是非显着的。与此相反,在60和90 DAS时,发现相互作用是显着的。在60 das,宽床上的聚覆盖物(M_(4)S_(2))以及100%RDF和宽床上的聚覆盖物(M_(4)S_(3))以及125%RDF记录较低的杂草密度其他治疗组合。在90 DAS中,也观察到相似的结果是相对于杂草密度观察到的。然而,用宽床(M_(4)S_(3))的聚覆盖物以及125%RDF,观察到较低的杂草干重。

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