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生态学杂志 ›› 2026, Vol. 45 ›› Issue (8): 2476-2484.doi: 10.13292/j.1000-4890.202608.012

• 水生态系统专栏 • 上一篇    下一篇

长江口以北海域鳗苗资源补充量的环境驱动因素

张成斌1,2,宋大德1,李国东3,田拓1,2,刘强1,2,王淑艳1,梁龙1,李佳洋1,2,熊瑛1*   

  1. 1江苏省海洋水产研究所, 江苏南通 226007; 2上海海洋大学海洋生物资源与管理学院, 上海 201306; 3浙江大学海洋学院, 浙江舟山 316021)

  • 出版日期:2026-08-10 发布日期:2026-08-12

Environmental drivers of glass eel (Anguilla japonica) recruitment in the north coastal waters of the Yangtze River Estuary.

ZHANG Chengbin1,2, SONG Dade1, LI Guodong3, TIAN Tuo1,2, LIU Qiang1,2, WANG Shuyan1, LIANG Long1, LI Jiayang1,2, XIONG Ying1*   

  1. (1Jiangsu Marine Fisheries Research Institute, Nantong 226007, Jiangsu, China; 2College of Marine Living Resource Sciences and Management, Shanghai Ocean University, Shanghai 201306, China; 3Ocean College, Zhejiang University, Zhoushan 316021, Zhejiang, China).

  • Online:2026-08-10 Published:2026-08-12

摘要: 为探究长江以北海域日本鳗鲡(Anguilla japonica)玻璃鳗(以下简称鳗苗)资源补充量的环境驱动因素,本研究基于2022—2024年该海域鳗苗特许捕捞期间经筛选的21艘商业渔船捕捞日志及同期10种环境因子,构建广义加性模型(GAM)。结果表明:长江以北海域鳗苗呈年际下降趋势,鳗苗最高捕捞量出现日期持续后移;在最优GAM模型中,海表盐度、溶解无机磷、溶解无机氮为影响鳗苗资源补充量的关键环境因子,对模型的解释率分别为17.0%、15.1%、13.0%;溶解无机磷呈震荡上升趋势(0.13~0.17 mmol·m-3快速上升期,0.17~0.25 mmol·m-3缓慢上升期,>0.25 mmol·m-3稳定期),溶解无机氮则表现双震荡模式(5~6 mmol·m-3下降,6~18 mmol·m-3上升,18~20 mmol·m-3骤降)。本研究首次证实,营养盐(溶解无机磷、溶解无机氮)、海表盐度为长江以北海域鳗苗资源补充量的关键环境驱动因子,从而将营养盐的作用从模糊的背景信息提升为关键的环境驱动因子,为理解鳗苗资源变动提供了新的视角。本研究结果为该海域鳗苗资源的科学管理提供理论依据。


关键词:

Abstract: To identify the key environmental drivers of glass eel (Anguilla japonica) recruitment in the north coast of the Yangtze River Estuary, we developed a generalized additive model (GAM) using fishing log data from 21 selected commercial vessels during the licensed fishing seasons (2022-2024) and ten synchronized environmental variables. The results revealed a significant temporal decline in glass eel resources over the three years, with a progressive delay in the timing of peak catches. In the optimal GAM, sea surface salinity, dissolved inorganic phosphorus (DIP), and dissolved inorganic nitrogen (DIN) were the key environmental factors influencing glass eel recruitment, with explanatory contributions of 17.0%, 15.1%, and 13.0%, respectively. DIP showed an oscillating rise with rapid (0.13-0.17 mmol·m-3), slow (0.17-0.25 mmol·m-3), and stable (>0.25 mmol·m-3) phases. DIN exhibited bimodal oscillations, decreasing (5-6 mmol·m-3), increasing (6-18 mmol·m-3), and then sharply declining (18-20 mmol·m-3). Our results indicated that nutrients (DIP and DIN) and sea surface salinity are key environmental drivers influencing glass eel recruitment in the north coast of the Yangtze River Estuary. These findings elevate the role of nutrients from ambiguous background factors to critical determinants of recruitment dynamics, offering a novel perspective for understanding fluctuations in glass eel resources. This new perspective provides a crucial theoretical foundation for the scientific management of glass eel resources.


Key words: the north coast of the Yangtze River Estuary, Anguilla japonica, GAM, nutrient, eel fry fishing season