首页> 外文期刊>Journal of the World Aquaculture Society >Production of Nile tilapia Oreochromis niloticus and freshwater prawn Macrobrachium rosenbergii stocked at different densities in polyculture systems in Brazil
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Production of Nile tilapia Oreochromis niloticus and freshwater prawn Macrobrachium rosenbergii stocked at different densities in polyculture systems in Brazil

机译:巴西混养系统中不同密度放养的尼罗罗非鱼Oreochromis niloticus和淡水虾罗氏沼虾的生产

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The effect of stocking prawns Macrobrachium rosenbergii at increasing densities in ponds with Nile tilapia Oreochromis niloticus reared at low density was evaluated. Twelve 0.01-ha earthen ponds were stocked with 1 tilapia/m(2) and 0. 2, 4, or 6 post-larvae prawn/m(2). Three replicates were randomly assigned to each prawn density. Postlarval prawns were stocked a week prior to tilapia juveniles and both were harvested 175 d after the beginning of the experiment. Tilapia final average weight, survival, production, and food conversion rates did not differ significantly among treatments (P > 0.05) the averages were 531 g, 67%. 3,673 kg/ha. and 1.91, respectively. Prawn survival rates did not differ for the three stocking densities (mean 90%). However, final weight and production were significantly different (P < 0.05) as follows: 34,0, 23.0, and 14.7 g and 639, 909. and 818 kg/ha. respectively for 2, 4, and 6 prawns/m(2) densities. Stocking densities up to 6 prawn/m(2) did not affect tilapia production and required neither additional feeding nor significant changes in management. The polyculture system allowed an increase in total production with the same amount of supplied feed, thus improving the system sustainability.
机译:在低密度饲养的尼罗罗非鱼Oreochromis niloticus池塘中,评估了对虾罗氏沼虾对增加密度的影响。在12个0.01公顷的土池中放养1个罗非鱼/米(2)和0.,2、4或6个幼虾/米(2)。将三个重复随机分配给每个虾密度。在罗非鱼幼鱼一周前放养幼虾,实验开始后175天收获两种虾。罗非鱼最终平均体重,存活率,产量和食物转化率在各处理之间无显着差异(P> 0.05),平均为531 g,67%。 3673公斤/公顷。和1.91。三种密度的对虾存活率没有差异(平均90%)。但是,最终重量和产量差异显着(P <0.05),分别为:34,0、23.0和14.7 g,639、909和818 kg / ha。分别用于2、4和6个大虾/ m(2)密度。放养密度不超过6对虾/ m(2)不会影响罗非鱼的生产,不需要额外的饲喂或管理上的重大改变。混养系统允许在相同数量的饲料的情况下提高总产量,从而提高了系统的可持续性。

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