CAI Wen-Gui, LI Chun-Hou, JIA Xiao-Ping, LIN Qin, GAN Ju-Li. MULTIVARIATE ANALYSIS AND EVALUATION ON THE COMMUNITY STRUCTURE OF PHYTOPLANKTON IN WEST GUANGDONG WATERS[J]. ACTA HYDROBIOLOGICA SINICA, 2007, 31(2): 155-161.
Citation: CAI Wen-Gui, LI Chun-Hou, JIA Xiao-Ping, LIN Qin, GAN Ju-Li. MULTIVARIATE ANALYSIS AND EVALUATION ON THE COMMUNITY STRUCTURE OF PHYTOPLANKTON IN WEST GUANGDONG WATERS[J]. ACTA HYDROBIOLOGICA SINICA, 2007, 31(2): 155-161.

MULTIVARIATE ANALYSIS AND EVALUATION ON THE COMMUNITY STRUCTURE OF PHYTOPLANKTON IN WEST GUANGDONG WATERS

  • Received Date: December 26, 2005
  • Rev Recd Date: October 25, 2006
  • Published Date: March 24, 2007
  • According to the survey data of phytoplankton in spring, summer, autumn and winter from 1998 to 1999 in the West Guangdong Waters, the main species composition and the characteristic of the community structure of phytoplankton in the waters was studied based on the method of multivariate analysis such as the principal components analysis and the hierarchical cluster analysis. Altogether 267 species of phytoplankton were identified in the survey, which ascribed to 5 phyla of Bacillariophyta, Pyrrophyta, Cyanophyta, Chlorophyta and Chrysophyta. Bacillariophyta was the most with the species of 182 (68. 2 %), and followed by Pyrrophyta with the species of 75 (28.1 %).In the principal components analysis, 3 principal components were picked up with the accumulated contribution rate up to 100 %. The result showed that the species, such as Skeletonema costatum, Thalassiothrix frauenfeldii, Navicula subminuscula,Oscillatoria sp., Thalassionema nitzschioides, Thalassiosira subtilis, Chaetoceros denticulatus, Lauderia borealis, Biddulphia sinensis, Ceratium fusus, Rhizosolenia alata, Rhizosolenia stolterforthii,Eucampia zoodiacus, Rhizosolenia styliformis and Chaetoceros pseudocurvisetus, composed of the principal components of phytoplankton in the waters.Using the hierarchical cluster analysis, the species of phytoplankton in the waters were divided into 2 community groups in 3 seasons of spring, summer and autumn, one was the inshore group and the other was the offshore group. While in winter the differentiation of community group was unobvious. The seasonal successions of the various main species were quite obvious. Skeletonema costatum, Navicula subminuscula,Thalassionema nitzschioides and Thalassiosira subtilis dominated the species in quantity in spring, summer, autumn and winter,respectively. While the fresh water species, Oscillatoria sp., was also identified with a large amount in summer.
  • [1]
    Comprehensive oceanographic investigation office of marine team, Science and Technology Committee, P. R. China. The national compre-hensive oceanographic investigation report (Vol. 8): Studyon planktons in the inshore of China [R]. Beijing: Comprehensive oceano-graphic investigation office of marine team, Science and TechnologyCommittee, P. R. China, 1964 [中华人民共和国科学技术委员会海洋组海洋综合调查办公室. 全国海洋综合调查报告(第八册):中国近海浮游生物的研究. 北京: 中华人民共和国科学技术委员会海洋组海洋综合调查办公室, 1964]
    [1]
    [刘瑞秋, 张水元. 长江中下游地区若干湖泊水质的多元分析与比较. 水生生物学报, 2000, 24(5): 439—445]
    [2]
    [左涛, 王克, 王荣, 等. 春季南黄海浮游动物群落的多元统计分析. 水产学报, 2003, 27(增刊): 108—114]
    [3]
    State Oceanography Administration. The synthetic investigation reportfor the fishery resource and environment in the mid2waters of SouthChina Sea [M]. Beijing: Science Press. 1988, 162—207 [国家海洋局. 南海中部海域环境资源综合调查报告. 北京:科学出版社. 1988, 162—207]
    [3]
    [J]. Acta Ecologica Sinica, 2003, 23(5): 892—900 [郭沛涌, 沈焕庭, 刘阿成, 等. 长江河口浮游动物的种类组成、 群落结构及多样性. 生态学报, 2003, 23(5): 892—900]
    [4]
    Aquicultue, animal and fishery administration, headquarter of thefishery in South China Sea, Ministry of Aquicultue, animal and fishery. The investigation and partition of the fishery resource in SouthChina Sea [M]. Guangzhou: Guangdong Technological Press. 1989,37—81 [农牧渔业部水产局, 农牧渔业部南海区渔业指挥部.南海区渔业资源调查和区划. 广州:广东科技出版社. 1989,37—81]
    [5]
    Lu W D. SPSS for windows [M]. Beijing: Electronic IndustryPress. 2002 [卢纹岱. SPSSfor windows 统计分析. 北京:电子工业出版社. 2002]
    [6]
    State Oceanography Administration. Marine survey criterion [M].Beijing: Oceanography Press. 1991 [国家海洋局. 海洋监测规范. 北京:海洋出版社. 1991]
    [7]
    Field J G, Clarke KR, Warwick R M. A practical strategyfor analysis multispecies distribution pattern [J].Marine Ecology ProgressSeries, 1982, 8(1): 37—52
    [8]
    Burd B J, Nemec A, Brinkhurst R O. The development and applica2tionof analytical methods in benthic marine infaunal studies [J]. Ad2vances in Marine Biology, 1990, 26: 169—247
    [9]
    Liu R Q, Zhang S Y. Multivariable analyzing and comparingof waterquality of shallow lakes in middle and lower reachesof the ChangjiangRiver [J]. Acta Hydrobiologica Sinica, 2000, 24 (5): 439—445
    [10]
    Zuo T, Wang K, Wang R, et al. Multivariate analysisof zooplanktoncommunities during spring in the southern part of Yellow Sea [J].Journal of Fisheries of China, 2003, 27 (Supplement): 108—114
    [11]
    Pan W B, Cai Q H. Estimation on the community structure of theaquatic macrophytes in a bayof BaoanLake [J]. Acta HydrobiologicaSinica, 2000, 24(5): 412—417 [潘文斌, 蔡庆华. 保安湖一湖湾大型水生植物群落格局的评价. 水生生物学报, 2000, 24(5): 412—417]
    [12]
    Li Y Z, Chen GB, Sun D R. Analysisof the compositionof fishes inthe Pearl River estuarine waters [J]. Journal of Fisheries of China,2000, 24(4): 312—317 [李永振, 陈国宝, 孙典荣. 珠江口鱼类组成分析. 水产学报, 2000, 24(4): 312—317]
    [13]
    Guo P Y, Shen H T, Liu A C, et al. The species composition, com2munity structure and diversity of zooplankton in Changjiang estuary
    [14]
    Cui Y, Chen B J, Ma S S. Studyon the relationship between phyto2plankton and environment factors in Rushan Bay [J]. Chinese Jour2nal of Applied Ecology, 2002, 11(6): 935—938 [崔毅, 陈碧鹃,马绍赛. 乳山湾浮游植物与环境因子的相关关系研究. 应用生态学报, 2002, 11(6):935—938]
    [15]
    Huang B Q, Liu S C, Hong H S. Ecological studies of phytoplanktonin Minnan2Taiwan bank fishing groundupwelling regions: Ⅱ. Distri2bution of ecological groups of phytoplankton [A]. Minnan2Taiwanbank fishing ground upwelling ecosystem study [C]. Science Press.1991, 417—425 [黄邦钦, 刘师成, 洪华生. 闽南—台湾浅滩渔场上升流区浮游植物生态研究: Ⅱ. 浮游植物的生态类群和区系. 闽南—台湾浅滩渔场上升流区生态研究. 科学出版社. 1991, 417—425]
    [16]
    G oldman J C, G libert P M. K inetics of inorganic nitrogen uptake byphytoplankton. In: Carpenter EJ, Capone D G (Eds), Nitrogen inMarine Environment [M]. New Y ork: Academic Press. 1983,233—274
    [17]
    Perry M J, Eppley R W. Phosphate uptake by phytoplankton in thecentral North Pacific Ocean [J]. Deep2Sea Res., 1981, 28: 39—49
    [18]
    Agawin N S, Duarte CM, Agusti S. Nutrient and temperature controlof the contribution of picoplankton to phytoplankton biomass and pro2duction [J]. Limnol. Oceanogr., 2000, 45(3): 591—600
    [19]
    Lehman P W. The influence of climate on phytoplankton communitybiomass in San Francisco Bay Estuary [J]. Limnol.Oceanogr.,2000, 45(3): 580—590
    [20]
    Cai W G, Li C H,Jia X P, et al. Dynamic variation and diversityofthe species of phytoplankton in West Guangdong Waters [J]. MarineEnvironmental Science, 2003, 22(4): 34—37 [蔡文贵, 李纯厚,贾晓平, 等. 粤西海域浮游植物种类的动态变化及多样性.海洋环境科学, 2003, 22(4): 34—37]

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