文章摘要
王 欣,盛化香,唐衍力,黄六一,万 荣.崂山湾人工鱼礁区浮游植物群落结构与环境因子的关系.渔业科学进展,2014,35(4):7-12
崂山湾人工鱼礁区浮游植物群落结构与环境因子的关系
Relationships Between the Structure of Phytoplankton Community and Environmental Factors in Three Artificial Reef Areas of Laoshan Bay
投稿时间:2013-08-17  修订日期:2013-11-19
DOI:10.11758/yykxjz.20140402
中文关键词: 浮游植物  人工鱼礁  环境因子  典范对应分析
英文关键词: Phytoplankton  Artificial reef  Environmental factors  Canonical correspondence
基金项目:山东省科技发展计划项目(2011GHY11524)和国际合作项目(TEK1060)共同资助
作者单位
王 欣 中国海洋大学水产学院 青岛 266003 
盛化香 中国海洋大学水产学院 青岛 266003 
唐衍力 中国海洋大学水产学院 青岛 266003 
黄六一 中国海洋大学水产学院 青岛 266003 
万 荣 中国海洋大学水产学院 青岛 266003 
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中文摘要:
      为研究崂山湾人工鱼礁区浮游植物群落结构与环境因子的关系,于2011年3、6、9、12月对崂山湾3个人工鱼礁区(峰山区、仰口区、港东区)进行取样调查。4次采样共鉴定浮游植物69种,其中3、9、12月优势种都为甲藻门中的中肋骨条藻(Skeletonema costatum),并且9月鱼礁区浮游植物密度远大于其他月份浮游植物密度。应用Canoco for Windows 4.5软件对获得的浮游植物数据和环境因子数据进行典范对应分析(Canonical correspondence analysis), 作出物种与环境因子关系的二维排序图。结果表明, 影响礁区浮游植物分布的主要环境因子依次为磷酸盐、温度、硅酸盐。
英文摘要:
      In this study, we examined the phytoplankton community in the artificial reef areas of Laoshan Bay, and analyzed the relationships between phytoplankton and environment factors. Hence we provided references for the construction and evaluation of artificial reefs. The data and water samples were collected from four surveys in three artificial reef areas (Fengshan, Yangkou and Gangdong) of Laoshan Bay from March to December in 2011. By using Primer 5.0, we calculated the Shannon-Wiener, Margalef and Pielou of the phytoplankton community. We monitored the quarterly changes of phytop¬lankton community with cluster analysis, and applied Canonical Correspondence Analysis (CCA) to explore the relationship between phytoplankton species and the environmental factors using Canoco 4.5. In four surveys we identified a total of 69 species with microscope. We found that the dominant species was Skeletonema costatum in March, September and December, and it was Navicula spp in June. The density of phytoplankton in December was 49.78×105 cell/m3, which was the lowest in this survey. The density of phytoplankton in September was up to 408.65×105 cell/m3, which was the highest among all months. Shannon-Wiener and Margalef varied from 2.034 to 2.83, and from 5.27 to 7.25 respectively, both of which reached the maximum in September and the minimum in December. The range of Pielou was 0.580.78, and it reached the maximum in June and the minimum in December. According to the cluster analysis, the degree of similarity between March and June was 43.02%, and it was up to 42.38% between September and December. The species-environment bi-plots were drawn based on the results of CCA. The results showed that phosphate, temperature and silicate were the most important factors that influenced the distribution of phytoplankton species.
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