高通量测序分析东山湾代表性鱼类对污损生物的摄食差异
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作者单位:

1.上海海洋大学水产与生命学院, 上海 201306 ; 2.中国水产科学研究院东海水产研究所, 上海长江口渔业资源增殖和生态修复工程技术研究中心, 上海 200090

作者简介:

谭清元(2000-),男,硕士,主要研究方向为污损生物的调查与治理.E-mail:tqycnhbes@163.com

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中图分类号:

S931

基金项目:

国家重点研发计划项目(2022YFC2601305); 上海市科技兴农项目[沪农科创字(2022)第2-1号].


Analysis of feeding differences on fouling organisms of representative fish species in Dongshan Bay, Fujian by high-throughput sequencing
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Affiliation:

1.College of Fisheries and Life Science, Shanghai Ocean University, Shanghai 201306 , China ; 2.Shanghai Engineering Research Center of Fisheries Resources Enhancement and Ecological Restoration of the Yangtze Estuary , East China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Shanghai 200090 , China

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    摘要:

    近年来, 生物污损对我国海水养殖业造成了严重的经济损失。为探索一种新型、绿色的防控技术, 本研究选择长鳍篮子鱼(Siganus canaliculatus)、黄鳍棘鲷(Sparus latus)、平鲷(Rhabdosargus sarba)和双刺三棘鲀(Triacanthus biaculeatus)等 4 种福建东山湾代表性鱼类作为研究对象, 利用高通量测序技术分析了这些鱼类消化道内的18S rDNA 基因, 以查明其食物组成, 并探讨它们对污损生物的摄食差异。研究结果显示, 4种鱼类的食物组成存在显著差异。 双刺三棘鲀主要以硬骨鱼类为食, 表现出明显的肉食性偏好; 而长鳍篮子鱼、黄鳍棘鲷和平鲷则表现为杂食性, 其中黄鳍棘鲷偏向植物性饵料, 平鲷更偏于肉食性。值得注意的是, 长鳍篮子鱼在摄食污损生物方面表现出较高的偏好, 尤以海鞘纲生物为主要食物。研究还发现, 大规格的长鳍篮子鱼[(180±2) mm]相比小规格[(120±2) mm], 摄食海鞘的量更大, 摄食的种类也更多。本研究揭示了长鳍篮子鱼在污损生物生态防治中的潜在应用价值, 研究结果为探索污损生物的生态防治策略和方法提供了新的见解和依据。

    Abstract:

    Biofouling refers to the phenomenon where fouling organisms attach to and accumulate on artificial surfaces, adversely impacting human production activities. In recent years, the economic losses caused by biofouling have accounted for a substantial portion of the production costs in China’s mariculture industry. However, current control technologies remain inadequate, highlighting the urgent need to develop green and sustainable control strategies tailored to marine aquaculture environment. Using trophic cascade effects to control fouling organisms has become a focal point of recent research. This approach enables the selection of different biological agents based on the specific environmental characteristics of a given marine area, achieving effective control of fouling organisms while also providing certain economic benefits. This study focused on the selection of representative fish species including Siganus canaliculatus, Sparus latus, Rhabdosargus sarba, and Triacanthus biaculeatus, from the Dongshan Bay region of the Fujian Province, to evaluate their potential as ecological controllers of biofouling in Dongshan Bay. High-throughput sequencing technology was used to analyze the 18S rDNA gene sequences within the digestive tracts of these four fish species to elucidate their dietary composition and assess the differences in their consumption of fouling organisms. The results indicated significant differences in the dietary composition of the four fish species. Triacanthus biaculeatus predominantly consumed osteichthyes, displaying a strong carnivorous preference, while Siganus canaliculatus, Sparus latus, and Rhabdosargus sarba exhibited omnivorous feeding habits. Notably, Sparus latus showed a preference for herbivorous diet, while Rhabdosargus sarba tended towards carnivorous prey. Of particular interest is the finding that Siganus canaliculatus demonstrated an obvious preference for consuming fouling organisms, particularly ascidians, as a major component of its diet. Furthermore, the study revealed that larger individuals of Siganus canaliculatus [(180±2) mm] consumed a greater quantity and variety of ascidians than smaller individuals [(120±2) mm]. This study highlights the potential application of Siganus canaliculatus in the ecological control of biofouling, providing new scientific insights and theoretical support for the development of ecological biofouling control strategies and methods.

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引用本文

谭清元,张方圆,赵峰,杨刚,张涛.高通量测序分析东山湾代表性鱼类对污损生物的摄食差异[J].中国水产科学,2025,32(1):83-92
TAN Qingyuan, ZHANG Fangyuan, ZHANG Tao, ZHAO Feng, YANG Gang. Analysis of feeding differences on fouling organisms of representative fish species in Dongshan Bay, Fujian by high-throughput sequencing[J]. Journal of Fishery Sciences of China,2025,32(1):83-92

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  • 收稿日期:2024-08-23
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  • 在线发布日期: 2025-03-19
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