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Trophic structure and energy fluxes in a grass carp (Ctenopharyngodon idellus) cultured pond ecosystem

机译:草鱼养殖池塘生态系统中的营养结构和能量通量

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A grass carp (Ctenopharyngodon idellus) cultured pond in east China was described using an Ecopath with Ecosim (EwE) model, aimed at characterizing trophic structure, the interactions among ecological groups and assessing the efficiency of the pond ecosystem. Fifteen functional groups were incorporated into the model (including artificial feed). Values for production, consumption and respiration were compared with the total system throughput. The results indicated that both primary and secondary productivity were not well utilized in the pond ecosystem, resulting in an accumulation of detritus. The maximum trophic level of any functional group in the model was only 3.14. This indicates a short food chain, typical of simple or immature food webs in terms of structure and dynamics. The different size fractions of phytoplankton made different contributions to the system, and larger-sized phytoplankton were easier to eat by organisms at higher trophic levels. The study indicated that introducing a polyculture system would increase the efficiency and outputs from the pond ecosystem.
机译:本文利用Ecopath with Ecosim(EwE)模型描述了中国东部的草鱼(Ctenopharyngodon idellus)养殖池塘,旨在表征营养结构,生态群之间的相互作用以及评估池塘生态系统的效率。十五个功能组被纳入模型(包括人工饲料)。将生产,消耗和呼吸的值与系统总吞吐量进行比较。结果表明,池塘生态系统的第一生产力和第二生产力均未得到充分利用,导致碎屑积累。模型中任何官能团的最大营养水平仅为3.14。这表明食物链很短,就结构和动力学而言,这是简单食物链或不成熟食物链的典型特征。不同大小的浮游植物对系统的贡献不同,较大营养级别的生物更容易食用较大的浮游植物。研究表明,引入混养系统将提高池塘生态系统的效率和产出。

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