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首页> 外文期刊>MethodsX >Methodology for assessing the individual role of fish, oyster, phytoplankton and macroalgae in the ecology of integrated production in earthen ponds
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Methodology for assessing the individual role of fish, oyster, phytoplankton and macroalgae in the ecology of integrated production in earthen ponds

机译:评估鱼,牡蛎,浮游植物和大型藻类在土池综合生产生态中的个别作用的方法

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摘要

Production costs in extensive and semi-intensive fish culture in earthen ponds are often too high to offer sustainable economic activity due to the low productivity of these systems. The right combination of commercial finfish species with inorganic (primary producers) and organic extractive (bivalves) species in Integrated MultiTrophic Aquaculture (IMTA) create a balanced system with higher profitability and risk reduction. To achieve this, it is crucial to understand the role of each functional groups within the system what we did by comparing three different IMTA production three different IMTA production treatments with distinct combinations of trophic levels:?fish, filter feeders, phytoplankton and macroalgae,?fish, filter feeders and phytoplankton?fish, phytoplankton and macroalgaeEach treatment was carried out in two similar ponds under semi-intensive conditions and flow through system, in a total of 6 earthen ponds of 500?m2surface and depth of 1.5?m.Results showed that the presence of oysters in the ponds enhanced water quality by decreasing turbidity and by controlling phytoplankton which led to regulation of dissolved oxygen levels. The enhanced water quality in these systems lead to improved fish performance and higher biomass production contributing to greater profitability. The combination of fish, oyster, phytoplankton and macroalgae was particularly good providing much more fish supply compared with the other two treatments.?Oysters enhanced water quality in the ponds by decreasing turbidity and controlling phytoplankton which regulated the dissolved oxygen levels.?The enhanced water quality in systems with oysters improve fish performance resulting in higher biomass production and greater profitability.?The combination of fish, oyster, phytoplankton and macroalgae was particularly good providing much more fish supply compared with the other two treatments.
机译:由于这些系统的生产力低下,在土池中进行粗养和半精养养殖的生产成本通常过高,无法提供可持续的经济活动。在综合多营养水产养殖(IMTA)中,商业有鳍鱼类与无机(主要生产者)和有机提取(双壳类)物种的正确组合可创造出具有较高获利能力和降低风险的平衡系统。为此,通过比较三种不同IMTA产量和三种营养级别与营养水平的不同组合的三种IMTA产量处理方法(鱼,滤食性动物,浮游植物和大型藻类)来了解系统中每个功能组的作用至关重要。鱼类,滤食性动物和浮游植物?鱼类,浮游植物和大型藻类分别在两个相似的池塘中进行半精养,并流经系统,共处理了6个土池,面积为500?m2,深度为1.5?m。池塘中牡蛎的存在通过降低浊度和控制浮游植物而提高了水质,从而调节了溶解氧的水平。这些系统中水质的改善导致鱼类性能的提高和生物质产量的提高,从而提高了盈利能力。与其他两种处理方法相比,鱼,牡蛎,浮游植物和大型藻类的组合提供了更好的鱼类供应。?牡蛎通过降低浊度并控制浮游植物来调节溶解氧水平,从而提高了池塘的水质。牡蛎系统的高品质提高了鱼的性能,从而提高了生物量的产生并提高了获利能力。与其他两种处理方法相比,鱼,牡蛎,浮游植物和大型藻类的组合特别好,可提供更多的鱼。

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