Fundamental study on ecosystem in East China Sea by an integrated model of low and high trophic levels

Yiming Xia, S. Tabeta, F. Duan
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引用次数: 1

Abstract

As the main nutrient inputs of ECS, nutrient concentrations of the Yangtze River increase significantly due to high-speed economy development, which play a very important impact on the East China Sea ecosystem. In this study, by integrating MEC model and Ecosim model, we analyzed the impacts of Yangtze nutrient fluxes change and fishery on the ecosystem of ECS. The results show that in only consideration of nutrition influx changes of the Yangtze River, the biomass of high trophic level will increase varying from 5% to 10%, especially in which most of trophic level 3 creatures will raise about 10%. When only considering the fishery impact, yellow croaker and hairtail as the main fishery product of ECS were under drastic pressure and close to extinct and small fish and anchovy increase about 30% to 40% rapidly due to the decline of predators. Under comprehensive consideration of fishery and nutrition influx changes, the result shows the main fish production decrease significantly, average trophic level recession and small fish take the main position of ecosystem. The increase of nutrients input has a certain benefit for the ecosystem to slow the decline tendency of fish. The integrated model provides a prospect that we can study the entire ecosystem from the prospective of both environmental and fishery factors, extending from lower to higher trophic ecosystem, to achieve a top-down and bottom-up management.
基于高、低营养水平综合模型的东海生态系统基础研究
长江作为ECS的主要营养物输入,由于经济的高速发展,营养物浓度显著增加,对东海生态系统产生非常重要的影响。本研究采用MEC模型和Ecosim模型相结合的方法,分析了长江流域营养通量变化和渔业对长江流域生态系统的影响。结果表明:在仅考虑长江营养流入变化的情况下,高营养级生物的生物量增长幅度在5% ~ 10%之间,其中大部分3营养级生物的生物量增长幅度在10%左右。仅考虑渔业影响时,黄鱼和带鱼作为东生态区的主要渔业产品面临着巨大的压力,濒临灭绝,小鱼和凤尾鱼由于捕食者的减少而迅速增加了30% ~ 40%左右。综合考虑渔业和营养流入的变化,主要鱼类产量明显下降,平均营养水平衰退,小鱼在生态系统中占据主导地位。增加养分投入对生态系统减缓鱼类的衰退趋势有一定的好处。综合模型为从环境因子和渔业因子两个角度研究整个生态系统提供了前景,从低营养生态系统向高营养生态系统延伸,实现自上而下和自下而上的管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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