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海南昌江海域浮游植物群落结构特征及其环境驱动因素

Characteristics of phytoplankton community structure and their environmental driving factors in the Changjiang sea area, Hainan Province

  • 摘要: 为揭示海南昌江近海浮游植物群落的组成特征及其与生态环境因子的相互关系,本研究于2023年8月至2024年3月对该海域浮游植物群落的季节性动态特征进行了系统研究,旨在为区域生态环境保护和生物资源的合理开发利用提供理论依据与数据支撑。调查共鉴定浮游植物149种,隶属于4门54属。其中,硅藻门占绝对优势,甲藻门次之,金藻门和蓝藻门所占比例相对较低。群落优势种分析表明,中肋骨条藻(Skeletonema costatum)、丹麦细柱藻(Leptocylindrus danicus)以及菱形海线藻(Thalassionema nitzschioides) 在4个季节中持续占据优势地位。其中菱形海线藻在4个季节均有分布,是该海域浮游植物群落的主要优势物种。浮游植物丰度的空间分布有明显异质性与季节性差异,各站位平均丰度为1.02×104 cells/dm3。丰度变化呈现冬季>秋季>春季>夏季的趋势;在空间分布上,春季和冬季均呈现近岸向外海递减的趋势,高值区集中在海花岛至洋浦湾一带海域;夏季高值区向南迁移至棋子湾附近,秋季高值区则向西北外海方向扩展。Shannon-Wiener多样性指数(H')变化范围为0.92~3.88,Margalef丰富度指数(d)为0.15~2.80,Pielou均匀度指数(J')为0.40~0.99,表明昌江海域水体状况良好。冗余分析(redundancy analysis, RDA)与Pearson相关性分析的结果表明,水温、盐度和化学需氧量(chemical oxygen demand, COD)是驱动昌江海域浮游植物群落结构变化的主要环境因子。其中,水温和盐度主要调控秋、冬季硅藻类优势种的分布特征,而COD在四季均表现出显著的驱动效应。与2008—2009年的历史数据相比较,丰度的季节排序由秋季最高转为冬季最高,表明该海域浮游植物群落已发生变化。基于研究结果,有必要进一步加强对该海域赤潮和富营养化状况的监测,以促进该地区海洋生态环境的可持续发展。

     

    Abstract: To reveal the composition characteristics of the phytoplankton community in the nearshore waters of Changjiang, Hainan, and its relationship with environmental factors, a systematic study on the seasonal dynamic characteristics of the phytoplankton community in this sea area was conducted from August 2023 to March 2024. The aim was to provide a theoretical basis and data support for the protection of the regional ecological environment and the rational development and utilization of biological resources. A total of 149 species of phytoplankton belonging to 4 phyla and 54 genera were identified in this survey. Among them, Bacillariophyta dominated, followed by Dinophyta, while Chrysophyta and Cyanophyta accounted for relatively low proportions. Analysis of dominant species indicated that Skeletonema costatum, Leptocylindrus danicus, and Thalassionema nitzschioides consistently occupied dominant positions in all four seasons. Thalassionema nitzschioides was distributed in all four seasons and was the main dominant species in the phytoplankton community of this sea area. Phytoplankton abundance showed spatial significant heterogeneity and seasonal differences, with an average abundance of 1.02×104 cells/dm3 at each station. The abundance variation trend was winter > autumn > spring > summer. In terms of spatial distribution, both spring and winter showed a decreasing trend from the nearshore to the open sea, with high-value areas concentrated in the sea area from Haihua Island to Yangpu Bay. In summer, the high-value area shifted southward to the Qizi Bay area, while in autumn, the high-value area expanded towards the northwest open sea. The diversity index (H') ranged from 0.92 to 3.88, the richness index (d) was 0.15–2.80, and the evenness index (J') was 0.40–0.99, indicating that the water quality in the Changjiang sea area was good. The results of redundancy analysis (RDA) and Pearson correlation analysis indicated that water temperature, salinity, and chemical oxygen demand (COD) were the main environmental factors driving the changes in the phytoplankton community structure in the Changjiang sea area. Among them, water temperature and salinity mainly regulated the distribution characteristics of dominant diatom species in autumn and winter, while COD showed significant driving effects in all four seasons. Compared with the historical data from 2008 to 2009, the seasonal abundance ranking peaked in autumn and then rose to its highest in winter, indicating that the phytoplankton community in this area has changed. Based on those results, further strengthening monitoring of red tides and eutrophication in this sea area is necessary to promote the sustainable development of the marine ecological environment in this region.

     

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