首页> 外文期刊>Experimental agriculture >CONTINUOUS APPLICATION OF ORGANIC AMENDMENTS ENHANCES SOIL HEALTH, PRODUCE QUALITY AND SYSTEM PRODUCTIVITY OF VEGETABLE-BASED CROPPING SYSTEMS IN SUBTROPICAL EASTERN HIMALAYAS
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CONTINUOUS APPLICATION OF ORGANIC AMENDMENTS ENHANCES SOIL HEALTH, PRODUCE QUALITY AND SYSTEM PRODUCTIVITY OF VEGETABLE-BASED CROPPING SYSTEMS IN SUBTROPICAL EASTERN HIMALAYAS

机译:持续应用有机改良剂改善亚热带东部喜马拉雅山以土壤为基础的农作物系统的土壤健康,生产质量和系统生产力

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The hill ecosystem of Northeastern Himalayas is suitable for organic farming due to negligible use of fertilizer (12 kg ha(-1)) and agrochemicals, abundance of organic manure, especially plant biomass, and favourable climatic conditions for diverse crops. For successful organic farming, efficient cropping systems and organic amendments are to be identified to sustain soil health on one hand and productivity and enhanced income on the other. The efficacy of three organic amendments, namely, farmyard manure (FYM), vermicompost (VC) and integrated nutrient source (INS; 50% recommended dose of nitrogen (N) through FYM + 50% N through VC) on performance of three-vegetable-based cropping systems, namely, maize + soybean (2:2 intercropping)-tomato, maize + soybean-potato and maize + soybean-French bean was evaluated for five consecutive years (2005-06 to 2009-10) under subtropical climate at Umiam, Meghalaya, India (950 m above sea level). All the organic amendments were applied on N equivalent basis and phosphorus (P) requirement was compensated through rock phosphate. The results revealed that the yield of vegetables, except root vegetables, was maximum with FYM as soil amendment. Total system productivity in terms of maize equivalent yield (MEY) was significantly higher under FYM followed by INS. Pooled analysis revealed that MEY was enhanced by 200 and 191% with continuous application of FYM and INS, respectively, over control (no manure). Maize + soybean-tomato system recorded the highest MEY (28.78 Mg ha(-1); Mg - megagram) followed by maize + soybean-French bean (24.37 Mg ha(-1)). INS as organic amendment resulted in maximum improvement in soil organic carbon (SOC), available P and potassium (K), soil microbial biomass carbon and water holding capacity and was similar to those under FYM. The SOC concentration under INS (23.6 g kg(-1)), FYM (23.3 g kg(-1)) and VC (22.3 g kg(-1)) after five years of organic farming were 31.0, 29.4 and 23.8% higher than the initial and 26.2, 24.6 and 19.3% higher than those under control, respectively. The quality traits of tomato such as total soluble solids (5%), ascorbic acid (28.6 mg 100 g(-1)) and lycopene content (19.35 mg 100 g(-1)) were higher under FYM application than other amendments. The study indicated that FYM and INS are equally good as organic amendment and their continuous application not only improves soil health but also crop productivity. FYM application was also found to be cost effective as it resulted in a higher benefit: cost ratio (4.4:1) compared to other amendments irrespective of cropping sequences during transition to organic farming.
机译:喜马拉雅山东北部的丘陵生态系统因肥料(<12 kg ha(-1))和农药的使用可忽略不计,有机肥料特别是植物生物量的丰富以及各种作物的有利气候条件而适合进行有机农业。为了成功进行有机耕作,应确定有效的耕作制度和有机改良剂,以一方面维持土壤健康,另一方面维持生产力和增加收入。三种有机改良剂,即农家肥(FYM),ver堆肥(VC)和综合营养源(INS;通过FYM推荐的50%氮素(N)+通过VC的50%N)对三种蔬菜的功效在亚热带气候下,连续五年(2005-06至2009-10)对玉米+大豆(2:2间作)-番茄,玉米+大豆-马铃薯和玉米+大豆-法国豆的种植系统进行了评估印度梅加拉亚邦Umiam(海拔950 m)。所有有机改性剂均以N当量为基础使用,磷(P)的需求量通过磷矿粉补偿。结果表明,以FYM作为土壤改良剂,除块根蔬菜外,其他蔬菜的产量最高。在FYM模式下,以玉米当量(MEY)表示的总系统生产率显着更高,其次是INS。汇总分析显示,与对照相比,连续施用FYM和INS可使MEY分别提高200%和191%(无粪肥)。玉米+大豆-番茄系统的MEY最高(28.78 Mg ha(-1); Mg-兆克),其次是玉米+大豆-法国豆(24.37 Mg ha(-1))。 INS作为有机改良剂可最大程度提高土壤有机碳(SOC),有效磷和钾(K),土壤微生物生物量碳和持水量,与FYM模式下的相似。有机耕种五年后,INS(23.6 g kg(-1)),FYM(23.3 g kg(-1))和VC(22.3 g kg(-1))下的SOC浓度分别提高了31.0、29.4和23.8%。分别比初始控制水平高26.2%,比对照高24.6%和19.3%。在FYM应用下,番茄的质量特性,例如总可溶性固形物(5%),抗坏血酸(28.6 mg 100 g(-1))和番茄红素含量(19.35 mg 100 g(-1))高于其他修订。研究表明,FYM和INS与有机改良剂一样好,它们的连续施用不仅改善了土壤健康,而且提高了作物的生产力。与其他修正案相比,FYM的应用还具有成本效益,因为与其他修正案相比,它带来了更高的收益:成本比(4.4:1),而不论过渡到有机农业的种植顺序如何。

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