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作 者:陈雯 苏程程 滕广亮 田洪林 赵永松 单秀娟[2,3] CHEN Wen;SU Chengcheng;TENG Guangliang;TIAN Honglin;ZHAO Yongsong;SHAN Xiujuan(College of Fisheries,Ocean University of China,Qingdao 266003,China;Key Laboratory of Marine Fisheries and Sustainable Development,Ministry of Agriculture and Rural Affairs,Yellow Sea Fisheries Research Institute,Chinese Academy of Fishery Sciences,Qingdao 266071,China;National Field Observation and Research Center for Fisheries in Changdao Waters,Yantai 265800,China)
机构地区:[1]中国海洋大学水产学院,山东青岛266003 [2]中国水产科学研究院黄海水产研究所、农业农村部海洋渔业与可持续发展重点实验室,山东青岛266071 [3]山东长岛近海渔业资源国家野外科学观测研究站,山东烟台265800
出 处:《渔业科学进展》2024年第6期13-23,共11页Progress in Fishery Sciences
基 金:山东省重点研发计划(2022CXPT013);山东省泰山学者和青岛市海洋发展局青岛近岸渔业资源综合科学调查共同资助。
摘 要:为掌握青岛近岸海域渔业资源结构变化特征,本研究基于青岛近岸海域2022年7―8月和11―12月渔业资源底拖网调查数据,研究了该海域渔业资源密度及群落结构动态特征。结果显示,夏季捕获渔业生物92种,冬季捕获86种,总更替率为42.5%。夏季优势种为戴氏赤虾(Metapenaeopsis dalei)、方氏云鳚(Enedrias fangi)和大泷六线鱼(Hexagrammos otakii),冬季优势种为戴氏赤虾、枪乌贼(Loligo spp.)、鹰爪虾(Trachypenaeus curvirostris)、双斑蟳(Charybdis bimaculata)和尖海龙(Syngnathus acus)。夏季多样性指数(H')和均匀度指数(J')均高于冬季,而丰富度指数(D)低于冬季。青岛近岸海域渔业生物群落多样性处于正常水平,季节间水平结构和群落组成相对稳定。通过食物网拓扑结构分析发现,该海域渔业生物关键种为黄对稳定。夏、冬两季青岛近岸海域渔业生物群落表现出较强的抗扰动能力。The warm-temperate coastal waters of Qingdao,including Aoshan Bay,Jiaozhou Bay and Lingshan Bay,serve as crucial spawning and feeding grounds for diverse fishery organisms and as important fishing grounds.These areas have experienced significant ecological shifts due to escalated human activities,marine pollution,and increased fishing pressure,leading to changes in fishery resources towards miniaturization and domination by low economic value species.To understand the characteristics of the structural changes of the fishery resources in the coastal waters of Qingdao,the present study analyzed the composition,community structure,ecosystem stability,and biodiversity of fishery resources within the coastal waters of Qingdao,based on the data from the fishery surveys conducted in the summer(July-August)and winter(November-December)of 2022.The keystone species were identified using a food web topology,which is crucial for regulating marine ecosystems.A total of 92 and 86 fishery species were collected in the summer and winter with a notable replacement rate of 42.5%respectively.Specifically,Metapenaeopsis dalei is the predominant species in both seasons.The study also highlighted the seasonal dominance of Enedrias fangi and Hexagrammos otakii in summer and Loligo spp.,Trachypenaeus curvirostris,Charybdis bimaculate and Syngnathus acus in winter.A discernible shift was observed in the structure of fishery resources,with the increasing dominance of invertebrates and a trend toward miniaturization and devaluation across fish,crustaceans,and cephalopods.In terms of biodiversity indices,the Shannon-Weaver(H')and Pielou evenness(J')indices were significantly higher in summer,whereas the Margalef richness index(D)was higher in winter,indicating normal ecosystem diversity and demonstrating stable seasonal horizontal structures and consistent community compositions.Notable ecological improvement was observed over the past decade,benefiting from the implementation of measures to restore fishery resources.The food web topology f
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