枸杞岛近岸海域漂浮铜藻发生量及其来源
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作者单位:

1.浙江海洋大学海洋与渔业研究所, 浙江 舟山 316021 ;2.浙江省海洋水产研究所, 浙江省海水增养殖重点实验室, 浙江省海洋渔业资源可持续利用技术研究重点实验室, 浙江 舟山 316021

作者简介:

朱伟栋(1998-),男,硕士研究生,研究方向为大型海藻生态修复.E-mail:1064536824@qq.com

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中图分类号:

S931

基金项目:

浙江省基础公益项目(LTGS24C030002); 浙江省重点研发计划项目(2023C03120); 舟山市科技计划项目(2022C31054)


Study on occurrence floating Sargassum horneri and their sources in the coastal waters of Gouqi Island
Author:
Affiliation:

1.Institute of Oceans and Fisheries, Zhejiang Ocean University, Zhoushan 316021 , China ;2.Institute of Marine Fisheries of Zhejiang Province, Key Laboratory of Mariculture and Enhancement of ZhejiangProvince, Key Laboratory of Sustainable Utilization of Technology Research for Fishery Resource of ZhejiangProvince, Zhoushan 316021 , China

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    摘要:

    为探究枸杞岛近岸海域漂浮铜藻(Sargassum horneri)发生量及其来源, 本研究以枸杞岛筏架定生和底栖铜藻为研究对象, 根据定生铜藻生长、气囊形成时间及生物量变化规律, 从源头上解析漂浮铜藻发生时间、生物量及漂浮路径。结果表明: (1)来源于筏架定生的漂浮铜藻形成时间比来源于底栖的漂浮铜藻早 5~6 个月, 枸杞岛近岸海域约 99.12%的漂浮铜藻生物量来源于筏架定生铜藻, 而底栖铜藻形成的漂浮铜藻生物量仅占 0.88%。(2)筏架定生铜藻脱离附着基后形成的漂浮铜藻株数约 22×106 株, 生物量约 141938 t, 经估算仅枸杞岛筏架定生来源的漂浮铜藻生物量约占东海区漂浮铜藻总量的 23.36%, 底栖来源的铜藻约占 0.21%。(3)结合我国不同区域定生铜藻生物量、 漂浮铜藻出现时间、潮流及长江环锋影响铜藻漂浮路径等因素分析, 我国漂浮铜藻可能有两条路径来源, 北面来源为辽东半岛和山东附近海域, 南面为长江河口以南区域。以上研究结果可为解析枸杞岛近岸海域漂浮铜藻来源及预测发生可能性提供参考, 同时也可为“金潮”溯源提供依据。

    Abstract:

    In order to investigate the occurrence and sources of floating Sargasssum horneri in the coastal waters of Gouqi Island. This study used the raft attachment and benthic S. horneri in Gouqi Island as the research object. Based on the growth, vesicle formation time, and biomass change rules of the attached S. horneri, the occurrence time, biomass, and floating path of the S. horneri were analyzed from the source. The findings indicate the following: (1) The formation time of floating S. horneri from raft attachment is 5–6 months earlier than that from benthic sources, and that approximately 99.12% of the biomass of floating S. horneri in the coastal waters of Gouqi Island likely originates from raft-attached S. horneri, whereas only 0.88% of the biomass originates from benthic S. horneri. (2) The number of floating S. horneri strains formed after the raft-attached S. horneri detached from the attachment base was approximately 22×106 , with a biomass of about 141938 t. The biomass of floating S. horneri solely from raft attachment on Gouqi Island accounts for 23.36% of the total biomass of floating S. horneri in the East China Sea, whereas the benthic S. horneri comprises 0.21%. (3) Based on the biomass of attached S. horneri in various regions of China, the timing of floating S. horneri occurrences, tidal currents, and the influence of the Yangtze River environment on the floating pathways of S. horneri, two potential sources of floating S. horner in China were identified. The northern source is located near the Liaodong Peninsula and Shandong, whereas the southern source is situated south of the Yangtze River estuary. These findings not only provide a reference for analyzing the sources and occurrence potential of floating S. horneri in the coastal waters of Gouqi Island but also offer some basis for tracing the origins of the “Golden Tide”.

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朱伟栋,杨起帆,王惠杰,苗航,刘峰宇,秦朋杰,毕远新.枸杞岛近岸海域漂浮铜藻发生量及其来源[J].中国水产科学,2025,32(4):502-512
ZHU Weidong, YANG Qifan, WANG Huijie, MIAO Hang, LIU Fengyu, Qin Pengjie, BI Yuanxin. Study on occurrence floating Sargassum horneri and their sources in the coastal waters of Gouqi Island[J]. Journal of Fishery Sciences of China,2025,32(4):502-512

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  • 收稿日期:2024-11-07
  • 最后修改日期:2025-01-07
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  • 在线发布日期: 2025-07-08
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