基于环境DNA技术的东平湖鱼类多样性研究
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仝亚东(1999-),男,硕士研究生,研究方向为渔业资源.E-mail:1277984686@qq.com

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S931

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农业农村部财政专项“黄河渔业资源与环境调查”(HHDC-2022-05); 中央级公益性科研院所基本科研业务费专项资金资助(2023TD65).


Fish diversity in the Dongping Lake based on environmental DNA techniques
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    摘要:

    东平湖是黄河下游重要滞洪湖泊, 也是南水北调东线最后一个调蓄湖泊。为探究东平湖鱼类多样性现状及鱼类群落特征, 本研究采用环境 DNA (environmental DNA, eDNA)技术, 与传统网具捕捞调查进行对比分析, 阐述东平湖鱼类群落多样性特征, 探讨环境 DNA 技术在东平湖鱼类多样性长期监测中的可行性。结果显示, 应用环境 DNA 技术共检测到 5 目 7 科 23 属 23 种鱼类。进一步分析显示, Shannon-Wiener 多样性指数平均值为 1.04, 变幅在 0.21~2.36; Pielou 均匀度指数平均值为 0.54, 变幅在 0.29~0.81; Margalef 丰富度指数平均值为 0.75, 变幅在 0.13~2.09。相似性分析(analysis of similarities, ANOSIM)表明, 多样性指数在湖区与河道之间没有显著差异。非度量多维尺度分析(non-metric multidimensional scaling, NMDS)显示, 东平湖鱼类群落可划分为 4 个群聚结构, 分别位于东平湖沿岸、湖心以及两条河道内, 群聚结构总体差异显著(R<1, P<0.05)。传统网具捕捞调查共捕获 4 目 6 科 21 属 24 种鱼类, 其中有 18 种鱼类在两种方法中均检测到。两种方法检测到的鱼类中均以鲤形目(Cypriniforms) 最多。研究结果表明, 环境 DNA 技术与传统网具捕捞两种方法调查得到的鱼类种类数相似度较高, 达到 62.06%。 东平湖鱼类群落呈现一定空间分布特征, 自柳长河、至小清河, 东平湖鱼类群落总体呈现南北差异性。本研究证明环境 DNA 技术在东平湖渔业资源监测中具有可行性, 可有效补充鱼类资源监测手段, 在禁捕以及开捕时期可根据实际情况采用不同方法对东平湖渔业资源进行监测, 同时也为东平湖渔业资源管理和保护提供资料支持与技术参考。

    Abstract:

    Dongping Lake, located downstream of the Yellow River, serves as a crucial flood storage reservoir and is the final reservoir of the Eastern Route of the South-to-North Water Transfer Project. To explore the current status of fish diversity and community characteristics in Dongping Lake, this study employed environmental DNA (eDNA) technology and compared the results with traditional net fishing surveys. This study elucidates the diversity of the fish community in Dongping Lake and discusses the feasibility of long-term monitoring using eDNA technology. The results revealed that the eDNA technology detected 23 species belonging to 23 genera, 7 families, and 5 orders. Further analysis indicated that the Shannon-Wiener diversity index had an average value of 1.04, ranging from 0.21 to 2.36. The average Pielou evenness index was 0.54, with values ranging from 0.29 to 0.81. The average Margalef richness index was 0.75, varying from 0.13 to 2.09. Analysis of similarities (ANOSIM) tests suggested no significant differences in diversity indices between the lake area and river channels. Non-metric multidimensional scaling (NMDS) analysis revealed four distinct cluster structures in the fish community of Dongping Lake, categorized as coastal, lake center, and two riverine types, with significant overall differences (R<1, P<0.05). The traditional net fishing survey captured 24 fish species belonging to 21 genera, 6 families, and 4 orders, with 18 species detected using both methods. Cypriniforms were the most abundant among the fish species detected using both methods. This study demonstrated a high similarity (62.06%) in species composition between eDNA technology and traditional net fishing surveys. Geographically, the fish community in Dongping Lake exhibited distinct distribution patterns from the Liuchang River along the coastline of Dongping Lake, north of the lake center, to the Xiaoqing River, indicating a north-south difference in the overall fish community. The results of this study confirm the feasibility of using eDNA technology for monitoring fishery resources in Dongping Lake, effectively supplement fish resources monitoring means. This study provides valuable data and technical references for the management and conservation of fishery resources in the Dongping Lake.

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仝亚东,匡箴,刘鹏飞,梁翼东,凡迎春,徐东坡.基于环境DNA技术的东平湖鱼类多样性研究[J].中国水产科学,2023,30(12):1530-1542
TONG Yadong, KUANG Zhen, LIU Pengfei, LIANG Yidong, FAN Yingchun, XU Dongpo. Fish diversity in the Dongping Lake based on environmental DNA techniques[J]. Journal of Fishery Sciences of China,2023,30(12):1530-1542

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  • 收稿日期:2023-10-24
  • 最后修改日期:2023-12-02
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  • 在线发布日期: 2024-03-18
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