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生态学杂志 ›› 2026, Vol. 45 ›› Issue (7): 2458-2464.

• 技术与方法 • 上一篇    

基于eDNA技术的广东典型城市湖泊外来鱼类入侵监测预警

舒璐1,2,余梵冬1,2,房苗1,2,徐猛1,2,韦慧1,2,汪学杰1,2,顾党恩1,2*   

  1. (1中国水产科学研究院珠江水产研究所/农业农村部外来入侵水生生物防控重点实验室, 广州 510380; 2中国水产科学研究院珠江水产研究所外来物种与生态安全重点实验室, 广州 510380)
  • 出版日期:2026-07-10 发布日期:2026-07-17

eDNA-based monitoring and early warning of invasive fish in typical urban lakes of Guangdong.

SHU Lu1,2, YU Fandong1,2, FANG Miao1,2, XU Meng1,2, WEI Hui1,2, WANG Xuejie1,2, GU Dangen1,2*   

  1. (1Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Key Laboratory of Prevention and Control for Aquatic Invasive Alien Species, Ministry of Agriculture and Rural Affairs, Guangzhou 510380, China; 2Key Laboratory of Alien Species and Ecological Security (CAFS), Pearl River Fisheries Research Institute, Chinese Academy of Fisheries Science, Guangzhou 510380, China).

  • Online:2026-07-10 Published:2026-07-17

摘要: 为探究eDNA技术在城市湖泊外来鱼类入侵预警中的应用潜力,本研究选取了受外来鱼类影响较严重的肇庆星湖、佛山顺峰山湖区和广州东山湖珠三角地区3个典型湖泊,分别于2023年3月和2024年11月对星湖、顺峰山湖区和东山湖进行了采样,运用eDNA宏条形码技术对其外来鱼类入侵现状进行监测、预警及效果评估。结果表明:在3个湖泊中共检测到59个鱼类分类单元,其中外来鱼类13种,具体分布为星湖7种、顺峰山湖区8种、东山湖10种;外来鱼类在星湖、顺峰山湖区和东山湖的相对丰度分别为44.45%、47.19%和35.58%;齐氏罗非鱼(Coptodon zillii)、尼罗罗非鱼(Oreochromis niloticus)和豹纹翼甲鲇(Pterygoplichthys pardalis)在3个湖泊中具有较高的总相对丰度,分别为14.01%、14.05%和6.64%,并在部分采样点成为优势物种;星湖的外来鱼类相对序列丰度与传统方法获得的相对丰度和相对生物量呈显著正相关(相关系数分别为0.89和0.91,P<0.01),表明eDNA技术在定量检测外来鱼类分布方面具有较高的可靠性。本研究为城市湖泊外来鱼类的防控和生态管理提供了科学依据,同时验证了eDNA技术在入侵物种监测中的高效性和应用潜力。


关键词: 环境DNA, 外来鱼类, 早期监测, 城市湖泊

Abstract: To explore the potential application of environmental DNA (eDNA) technology in the early warning of invasive fish species in urban lakes, we investigated three representative lakes in the Pearl River Delta region, Xing Lake in Zhaoqing, Shunfengshan Lake in Foshan, and Dongshan Lake in Guangzhou. All of them are heavily impacted by invasive fish. Water samples were collected from Xing Lake and Shunfengshan Lake in March 2023 and from Dongshan Lake in November 2024. Using eDNA metabarcoding, we monitored the status of invasive fish, provided early-warning assessments, and evaluated the effectiveness of eDNA detection. A total of 59 fish taxa were detected, including 13 invasive species, with 7, 8, and 10 species being identified in Xing, Shunfengshan, and Dongshan lakes, respectively. The relative abundance of invasive fish reached 44.45%, 47.19%, and 35.58% in the three lakes. Coptodon zillii, Oreochromis niloticus, and Pterygoplichthys pardalis exhibited high overall relative abundances (14.01%, 14.05%, and 6.64%) and were dominant species at certain sampling sites. In Xing Lake, the relative sequence abundance of invasive fish obtained via eDNA showed a significant positive correlation with both the relative abundance and relative biomass derived from traditional methods (R=0.89 and 0.91 respectively, P< 0.01), demonstrating a high reliability of eDNA for quantitative detection of invasive fish distributions. This study provides a scientific basis for the prevention and ecological management of invasive fish in urban lakes and confirms the efficiency and potential of eDNA technology in invasive fish species monitoring.


Key words: eDNA, non-native fish, early detection, urban lake