基于Ecopath模型的滇池土著鱼类放流影响预测

Ecopath model-based prediction of the impacts of indigenous fish release in Dianchi Lake

  • 摘要: 滇池是云南最大的高原湖泊,为恢复滇池的鱼类生态系统健康,基于2023年的渔业资源调查及水生生物调查数据,构建了滇池的Ecopath模型,模拟土著鱼类增殖放流前后滇池水生态系统能流效率和鱼类物种多样性的变化。结果显示:鱼类调查记录到滇池湖体中的15种鱼类,其中土著鱼类仅1种,土著种与外来种数比为1∶14,土著鱼类生物量占比仅6.4%;滇池现有生物量金字塔结构中,中小型肉食性鱼类生物量仅占鱼类总生物量的0.07%,低于更高营养级食鱼性鱼类1.8%的占比,需要通过增殖放流小型肉食性、植食性、杂食性土著鱼类物种,将食鱼性鱼类、小型肉食性鱼类、杂食与植食性鱼类的生物量占比调整为1%、1.4%、76%,优化其营养结构。在控制总生物量不变的条件下,土著鱼类的放流能够使滇池生态系统的能流效率由目前的1.7%提高到3.2%;系统总初级生产量/呼吸量比值(TPP/TR)更接近1,系统杂食指数(SOI)由0.127提高到0.212,Finn循环指数(FCI)由3.1%提高至4.3%,鱼类的Shannon多样性指数(H')可从1.599提高到1.649。通过增殖放流土著鱼类改善滇池鱼类的群落结构,预期可提高水生态系统的能流效率和生态系统结构的稳定性,促进滇池水生生态系统的恢复。

     

    Abstract: Dianchi Lake is the largest plateau lake in Yunnan Province. To restore the health of its fish ecosystem, based on 2023 fishery resource survey data and an analysis of the current status of aquatic organisms, we constructed an Ecopath model to simulate changes in energy flow efficiency and fish species diversity before and after the proliferation and release of indigenous fish. The key results were as follows: The fish survey identified 15 species in Dianchi Lake, with only one being indigenous. The indigenous-to-exotic species ratio was 1:14 and the biomass proportion of indigenous fish was 6.4%. In the current biomass pyramid, small and medium-sized carnivorous fish accounted for only 0.07% of total fish biomass, significantly lower than the 1.8% of piscivorous fish at higher trophic levels. To optimize the trophic structure, we propose adjusting the biomass proportions of piscivorous, small-sized carnivorous, and omnivorous/herbivorous fish to 1%, 1.4%, and 76%, respectively, through the proliferation and release of indigenous species. Maintaining the total biomass of the ecosystem, the release of indigenous fish could enhance energy flow efficiency from 1.7% to 3.2%. Key ecological indices also improved: the ratio of total primary production to total respiration (TPP/TR) approached 1, the system omnivorous index (SOI) increased from 0.127 to 0.212, Finn’s Cycling Index (FCI) rose from 3.1% to 4.3%, and Shannon diversity index (H’) of fish increased from 1.599 to 1.649. These results suggest that the proliferation and release of indigenous fish can improve the community structure, enhance energy flow efficiency, and stabilize the ecosystem, thereby promoting the restoration of Dianchi Lake’s aquatic ecosystem.

     

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