枸杞岛潮间带和筏架定生铜藻生长差异
作者:
作者简介:

王惠杰(1999-),男,硕士研究生,研究方向为大型海藻生态修复.E-mail:1813765026@qq.com

中图分类号:

S917

基金项目:

浙江省科技厅基础公益项目(LTGS24C030002); 浙江省科技厅重点研发项目(2023C03120); 舟山市科技计划项目(2022C31054)


Comparative growth analysis of intertidal zone and raft Sargassum horneri in Gouqi Island
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    摘要:

    为解析潮间带和筏架定生铜藻(Sargassum horneri)生长差异及成因, 于 2022 年 9 月至 2023 年 6 月, 在枸杞岛潮间带和筏架铜藻生命周期内, 每月采集潮间带和筏架铜藻, 结合生命周期内每月温度和光强变化情况, 分析潮间带和筏架铜藻株高、湿重和最长初生分枝长度生物学参数的变化, 以及生长所需的有效积温差异, 并探讨温度和光强对铜藻生长的影响。研究发现, 筏架铜藻的平均株高、湿重和最长初生分枝长度最大值分别为(168.1±21.0) cm、 (147.6±24.1) g 和(131.8±26.4) cm, 远大于潮间带铜藻的(67.9±22.5) cm、(62.4±16.7) g 和(46.4±10.6) cm。进入繁殖期前, 同一月份筏架铜藻湿重、株高和最长初生分枝长度增长速率远大于潮间带铜藻, 筏架铜藻生长迅速, 潮间带铜藻生长则较为缓慢。9 ℃左右的低温条件不是抑制铜藻生长的限制参数, 而 35 μmol/(m2 ·s)左右稳定的光强可能是造成筏架铜藻生长所需有效积温远小于潮间带铜藻, 筏架铜藻繁殖时间比潮间带铜藻早 1~2 个月, 以及筏架铜藻生长速率远大于潮间带铜藻的关键因素。枸杞岛附近海域的极大部分漂浮铜藻可能来源于枸杞岛的筏架定生铜藻。上述研究结果阐明了筏架铜藻的株高、湿重和最长初生分枝长度的生长速率远快于潮间带铜藻, 探究出光强是影响潮间带和筏架铜藻生长与繁殖的关键环境因子, 可为研究枸杞岛附近海域的漂浮铜藻来源、铜藻培育提供科学依据。

    Abstract:

    The sea area near Gouqi Island harbors expansive floating colonies of Sargassum horneri, whose specific source remains unidentified. Despite this, the distribution of S. horneri in the intertidal zone is limited. Hence, analyzing the growth changes of both intertidal zone and raft S. horneri is essential for understanding the origins of “gold tide.” Previous studies have demonstrated a correlation between the growth of intertidal zone and S. horneri and the changes in effective accumulated temperature. Furthermore, it is suggested that temperature and irradiance may have varying effects on the growth of intertidal zone and raft S. horneri. In this study, we aimed to explore the specific sources of floating S. horneri in the sea area near Gouqi Island. We also aimed at elucidating the growth patterns of both intertidal zone and raft S horneri and identifying the required effective accumulated temperature. Additionally, we aimed to discern the distinct impacts exerted by temperature and irradiance on these growth patterns. Intertidal zone and raft S. horneri were collected monthly between September 2022 and June 2023. The temperature and irradiance changes during the life cycle in this period were recorded, and the variations in different plant traits, such as plant height, wet weight, longest primary branch length, were analyzed. Lastly, the effects of temperature and irradiance on the growth of S. horneri were also investigated. The results are summarized below: Average plant height, wet weight, and longest primary branch length of raft S. horneri were (168.1±21.0) cm, (147.6±24.1) g, and (131.8±26.4) cm, respectively, which were much larger than those of intertidal zone S. horneri [(67.9±22.5) cm, (62.4±16.7) g, and (46.4±10.6) cm]. Before the breeding period, the growth rates of wet weight, plant height, and longest primary branch length of raft S. horneri were much higher than those of intertidal zone S. horneri. Raft S. horneri grew rapidly compared to intertidal zone S. horneri. The low temperature condition of about 9 ℃ limited the growth of S. horneri, and the stable irradiance around 35 μmol/(m2 ·s) may be the key factor that leads to the effective accumulated temperature required for the growth of raft S. horneri. This value was much smaller than that of intertidal S. horneri. Additionally, the breeding time of raft S. horneri was 1–2 months earlier than that of intertidal zone S. horneri, and the growth rate of the former was much greater than that of intertidal zone S. horneri. Raft S. horneri may contribute significantly to the floating S. horneri population in the sea area near Gouqi Island. Our results illustrate that the growth rate of plant height, wet weight and longest primary branch length of the raft S. horneri was much faster than that of the intertida zone S. horneri, and it suggest that irradiance is the key environmental factor affecting the growth and reproduction of intertidal zone and raft S. horneri. These results provide a scientific evidence for identifying the source of floating S. horneri, which may assist its efficient cultivation in the sea area near Gouqi Island. In addition, the study confirmed the interference of external factors; for example, the impact of waves on the growth of intertidal zone S. horneri was much greater than that on the growth of subtidal zone S. horneri. Hence, the maximum plant height of intertidal zone S. horneri at similar temperatures and greater irradiance was smaller than that of subtidal zone S. horneri, and the decay was faster than subtidal zone S. horneri.

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引用本文

王惠杰,杨起帆,朱伟栋,苗航,毕远新.枸杞岛潮间带和筏架定生铜藻生长差异[J].中国水产科学,2023,30(11):1364-1373
WANG Huijie, YANG Qifan, ZHU Weidong, MIAO Hang, BI Yuanxin. Comparative growth analysis of intertidal zone and raft Sargassum horneri in Gouqi Island[J]. Journal of Fishery Sciences of China,2023,30(11):1364-1373

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  • 收稿日期:2023-10-10
  • 最后修改日期:2023-11-21
  • 在线发布日期: 2024-03-14
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