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Transforming Triple Cropping System to Four Crops Pattern: An Approach of Enhancing System Productivity through Intensifying Land Use System in Bangladesh

机译:将三重作物系统转变为四种作物模式:通过加强孟加拉国土地利用系统提高系统生产力的方法

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Changing three crops pattern to four crops can play a potential role for achieving countries food security. With this view to increase crop productivity, production efficiency, land use efficiency, and economic return through intensifying cropping intensity as well as crop diversity by transforming three crops pattern to four crops, the experiment was conducted in High Ganges River Floodplain Soils under the Agro-Ecological Zone (AEZ) 11 at Pali, Durgapur, under the Multilocation Testing Site, Puthia, Rajshahi, for two consecutive years 2014-15 and 2015-16. Four crops pattern mustard-onion/maize-T. Aman rice was tested at on-farm condition over the existing three crops pattern mustard-onion-T. Aman rice. Maize was introduced here as a relay crop with onion to fit it in the four crops pattern. The experiment was laid out in RCB design with six dispersed replications. Two-year crop cycles were completed, and data regarding component crops yield were considered for assessing the performance of the two cropping patterns for making a sense of comparing productivity. Although there was no significant difference in component crops yield between four crops and three crops pattern, as an additional crop, maize tremendously increased the system productivity and economic return of the four crops pattern. Higher rice equivalent yield 28.96 t·ha−1 in 2013-14 and 30.95 t·ha−1 in 2014-15 was recorded from the four crops pattern with a mean rice equivalent yield (REY) 29.95 t·ha−1 over the existing pattern with a mean value 21.76 t·ha−1. However, four crops pattern resulted in higher cultivation cost due to growing maize as an additional crop; nevertheless, it gave the higher gross return, marginal return, marginal benefit cost ratio, and production efficiency. The four crops pattern resulted averagely 37.63% higher production (REY) compared to the existing three crops pattern. Production as well as land use efficiency were increased by 9.33% and 19.18%, respectively, from the intensified alternate pattern.
机译:将三种作物的模式改为四种作物可以对实现各国的粮食安全发挥潜在作用。为了通过提高耕种强度和通过将三种作物模式转变为四种作物的作物多样性来增加作物多样性来提高作物生产力,生产效率,土地利用效率和经济回报,该试验是在高恒河河漫滩土壤条件下进行的。 2014-15年和2015-16年连续两年在杜尔加布尔的Pali生态区(AEZ),位于拉贾沙希府Puthia的多位置测试站点下。四种农作物芥菜洋葱/玉米-T型。在农场条件下对现有的三种农作物芥菜洋葱-T进行了安曼稻米的测试。阿曼饭玉米是作为洋葱的中继作物引入的,适合四种作物的种植模式。实验以RCB设计进行,具有六个分散的副本。完成了两年的作物周期,并考虑了有关组成作物产量的数据,以评估两种耕作模式的表现,从而比较生产力。尽管四种作物和三种作物模式之间的组成作物产量没有显着差异,但玉米作为一种额外的作物,极大地提高了四种作物模式的系统生产力和经济回报。从四种作物模式中记录到的水稻当量单产较高,2013-14年度为28.96 t·ha-1,2014-15年度为 30.95 t·ha-1,平均水稻当量单产为29.95)t·ha-1。模式平均值为21.76 t·ha-1。但是,由于种植玉米作为额外的作物,四种作物的种植方式导致了更高的种植成本。但是,它提供了更高的总收益,边际收益,边际收益成本比和生产效率。与现有的三种作物相比,四种作物的平均产量(REY)提高了37.63%。强化交替模式使产量和土地利用效率分别提高了9.33%和19.18%。

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