基于Ecopath模型的飞云江口生态系统特征及斑𬶭增殖容量评估
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国家重点研发计划(2020YFD0900805);温州河口渔业资源养护试点专项(JS2022071)


Assessment of ecosystem characteristics and the proliferation capacity of Konosirus punctatus in the Feiyun River Estuary based on the Ecopath model
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National key research and development program,

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    摘要:

    为了解飞云江口生态系统在鱼类资源衰退和水体富营养化等因素影响下的结构现状,评估该水域净水型鱼类斑鰶(Konosirus punctatus)的增殖容量。本研究基于2022—2023年飞云江口4个航次的生物资源调查数据,应用Ecopath模型分析了生态系统特征,并结合食物网结构和能量流动估算了斑鰶的增殖容量。该模型功能组涵盖26组,基本覆盖生态系统能量流动的全过程。结果显示:(1)飞云江口海域生态系统营养级为1.00~3.84,总转化效率为8.623%;(2)生态系统的总初级生产量(Total primary production, TPP)/总呼吸量(Total respiration, TR)为1.629>1,系统连接指数(Connectance index, CI)为0.413<1,系统杂食性指数(System omnivory index, SOI)为0.234<1;(3)斑鰶的现存生物量为0.040 5 t/km2,增殖生态容量为0.0810 t/km2,增殖后生态系统的TPP/TR、CI和SOI值均更接近于1。研究表明:(1)飞云江口海域生态系统的能量流动基本符合能量金字塔规律,食物网结构以牧食食物链为主;(2)生态系统的成熟度不高,食物网结构相对简单,抗外界干扰能力较弱,生态系统的能量利用率不够;(3)斑鰶进行科学的增殖放流,对飞云江口海域生态系统的成熟与稳定有一定的促进作用。本研究可为飞云江口海域的渔业资源养护和生态环境保护工作提供参考。

    Abstract:

    To investigate the current structural status of the Feiyun River Estuary ecosystem under the influence of factors such as fish stock decline and eutrophication, and to evaluate the proliferation capacity of the water-purifying fish species Konosirus punctatus in this area, this study analyzed ecosystem characteristics using the Ecopath model based on biological resource survey data collected from four voyages in the Feiyun River Estuary between 2022 and 2023. The study also estimated the proliferation capacity of Konosirus punctatus by considering food web structure and energy flow. The model's functional groups encompassed 26 categories, essentially covering the entire process of energy flow within the ecosystem. The results revealed: (1) The trophic levels in the Feiyun River Estuary ranged from 1.00 to 3.84, with a total conversion efficiency of 8.623%. (2) The ratio of total primary production (TPP) to total respiration (TR) in the ecosystem was 1.629, which is greater than 1; the connectance index (CI) was 0.413, which is less than 1; and the system omnivory index (SOI) was 0.234, also less than 1. (3) The existing biomass of Konosirus punctatus was 0.040 5 t/km2, with a proliferation ecological capacity of 0.081 0 t/km2. After proliferation, the TPP/TR, CI, and SOI values of the ecosystem all approached 1 more closely. The research indicated that: (1) The energy flow in the Feiyun River Estuary ecosystem generally adhered to the laws of the energy pyramid, with a food web structure dominated by grazing food chains. (2) The ecosystem's maturity was relatively low, its food web structure was simple, its resistance to external disturbances was weak, and its energy utilization efficiency was insufficient. (3) Scientific stock enhancement and release of Konosirus punctatus could promote the maturity and stability of the Feiyun River Estuary ecosystem. This study provides valuable insights for the conservation of fishery resources and ecological environment protection in the Feiyun River Estuary.

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李尚清,秦松,王雨航,叶深,范青松,郑春芳,刘伟成.基于Ecopath模型的飞云江口生态系统特征及斑𬶭增殖容量评估[J].上海海洋大学学报,2025,34(4):786-799.
LI Shangqing, QIN Song, WANG Yuhang, YE Shen, FAN Qingsong, ZHENG Chunfang, LIU Weicheng. Assessment of ecosystem characteristics and the proliferation capacity of Konosirus punctatus in the Feiyun River Estuary based on the Ecopath model[J]. Journal of Shanghai Ocean University,2025,34(4):786-799.

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  • 收稿日期:2024-07-12
  • 最后修改日期:2025-01-09
  • 录用日期:2025-01-10
  • 在线发布日期: 2025-07-13
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