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阳澄西湖浮游藻类功能群演替特征及其与环境因子的关系
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  • 英文篇名:Succession patterns of phytoplankton functional groups in western area of Yangcheng Lake and their relationship with environmental factors
  • 作者:葛优 ; 周彦锋 ; 王晨 ; 尤洋
  • 英文作者:GE You;ZHOU Yan-feng;WANG Cheng-he;YOU Yang;Key Laboratory of Freshwater Fisheriesand Utilization of Germplasm Resources, Ministry of Agriculture, Freshwater Fisheries Research Center, Chinese Academy of Fishery Sciences;Wuxi Fishery College, Nanjing Agricultural University;
  • 关键词:阳澄西湖 ; 藻类功能群 ; 优势度 ; 环境因子
  • 英文关键词:western area of Yangcheng Lake;;phytoplankton functional groups;;dominance;;environmental factors
  • 中文刊名:中国环境科学
  • 英文刊名:China Environmental Science
  • 机构:中国水产科学研究院淡水渔业研究中心农业部淡水渔业和种质资源利用重点实验室;南京农业大学无锡渔业学院;
  • 出版日期:2019-07-20
  • 出版单位:中国环境科学
  • 年:2019
  • 期:07
  • 基金:国家重点研发计划资助(2018YFD0900905);; 国家现代农业产业技术体系(CARS-46)
  • 语种:中文;
  • 页:341-353
  • 页数:13
  • CN:11-2201/X
  • ISSN:1000-6923
  • 分类号:X524
摘要
采用浮游藻类功能群、RDA(冗余分析)、多元回归分析等方法,对阳澄西湖浮游藻类功能群的演替特征及其影响因子进行了研究.2015年3月~2016年2月逐月对阳澄西湖浮游藻类和环境因子进行调查分析,结果表明,阳澄西湖浮游藻类可划分为21个功能群,其中10个功能群(B、D、E、G、J、Lo、S1、X1、X2、Y)为该湖的优势功能群,反映的生境特征表明该湖为分层敏感,扰动较少且混合程度较高的中-富营养浅水水体.阳澄西湖不同季节优势功能群演替规律为:由春季的B+X2+Y+X1+J+D,经夏季的B+X2+Y+X1+J+G+S1+Lo+E和秋季的B+X2+Y+Lo+E,转变为B+X2+Y+X1+D.RDA分析结果显示,阳澄西湖浮游藻类功能群分布受环境影响较为明显,但不同季节影响因子不同.整体上,水温(T)、pH值、溶解氧(DO)、氨氮(NH4+-N)和浊度(Tur)是影响阳澄西湖浮游藻类功能群分布格局的主要因素.
        The functional classification of phytoplankton assemblages in western area of Yangcheng Lake and the influencing factors were explored based upon their community composition structure analysis and by using the redundancy analysis and multiple regression methods. Samples were collected monthly from March 2015 to February 2016 from 12 sites distributed in western area of Yangcheng Lake, and the phytoplankton and environmental variables were investigated. A total of 21 phytoplankton functional groups were identified as A、B、D、E、F、G、H1、J、Lo、M、MP、P、S1、T、TD、W1、W2、X1、X2、X3 and Y. And they were dominated by the 10 groups of B、D、E、G、J、Lo、S1、X1、X2 and Y. The western water of Yangcheng Lake was a shallow medium-eutrophic water body with less disturbance and high mixing degree. Meanwhile, the dominant functional groups of phytoplankton in western area of Yangcheng Lake followed the seasonal succession pattern, that was B+X2+Y+X1+J+D in spring, B+X2+Y+X1+J+G+S1+Lo+E in summer, B+X2+Y+Lo+E in autumn and B+X2+Y+X1+D in winter. As well, the distribution of these functional groups in west area of Yangcheng Lake was closely related to the environmental variables. Water temperature, pH, DO, ammonia, and turbidity were the main influencing factors.
引文
[1] Sommer U, Adrian R, De Senerpont Domis L,et al. Beyond the Plankton Ecology Group(PEG)model:mechanisms driving plankton succession[J]. Annual Review of Ecology, Evolution, and Systematics,2012,43:429-448.
    [2] Tippett Roger. The ecology of freshwater phytoplankton(C. S.Reynolds)[J]. Limnology and Oceanography, 1987,32(3):779-780.
    [3] Padisak J, Borics G, Grigorszky I, et al. Use of phytoplankton assemblages for monitoring ecological status of lakes within the Water Framework Directive:the assemblage index[J]. Hydrobiologia,2006,553(1):1-14.
    [4]沈韫芬,章宗涉,龚循矩.微型生物监测新技术[M].北京:中国建筑工业出版社, 1990:119.Shen Y F, Zhang Z S, Gong X Z. New technology of microbiological monitoring[M]. Beijing:China Building Industry Press, 1990:119.
    [5] Bonilla S, Conde D, Aubriot L, et al. Influence of hydrology on phytoplankton species composition and life strategies in a subtropical coastal lagoon periodically connected with the Atlantic Ocean[J].Estuaries, 2005,28(6):884-895.
    [6] Bonilla S, Conde D, Aubriot L, et al. Influence of hydrology on phytoplankton species composition and life strategies in a subtropical coastal lagoon periodically connected with the Atlantic Ocean[J].Estuaries, 2005,28(6):884-895.
    [7] Yu H X, Wu J H, Ma C X, et al. Seasonal dynamics of phytoplankton functional groups and its relationship with the environment in river:a case study in northeast China[J]. Journal of Freshwater Ecology,2012,27(3):429-441.
    [8]董静,李艳晖,李根保,等.东江水系浮游植物功能群季节动态特征及影响因子[J].水生生物学报, 2013,37(5):836-843.Dong J, Li Y H, Li G B, et al. Seasonal dynamics and influencing factors of phytoplankton functional groups in the Dongjiang River system[J]. Journal of Hydrobiology, 2013,37(5):836-843.
    [9] Reynolds C S, Huszar V, Kruk C, et al. Towards a functional classification of the freshwater phytoplankton[J]. Journal of Plankton Research, 2002,24(5):417-428.
    [10] Brantes N, Antunes S C, Pereira M J,et al. Seasonal succession of cladocerans and phytoplankton and their interactions in a shallow eutrophic lake(Lake Vela, Portugal)[J]. Acta Oecologica, 2006,29(1):54-64.
    [11]陈晓江,杨劼,杜桂森,等.官厅水库浮游植物功能群季节演替及其驱动因子[J].中国环境监测, 2016,32(3):74-81.Chen X J, Yang J, Du G S, et al. Seasonal succession of phytoplankton functional groups in Guanting Reservoir and its driving factors[J].China Environmental Monitoring, 2016,32(3):74-81.
    [12] Becker V, Caputo L, Ordó?ez J, et al. Driving factors of the phytoplankton functional groups in a deep Mediterranean reservoir[J].Water Research, 2010,44(11):3345-3354.
    [13] Pintotd S, Becker V. Diel dynamic of phytoplankton functional groups in a tropical water supply, Extremoz Lake, northeastern Brazil[J].Acta Limnol Bras, 2014,26(4):356-366.
    [14] Costa L S, Huszar V L M, Ovalle A R. Phytoplankton functional groups in a tropical estuary:hydrological control and nutrient limitation[J]. Estuaries and Coasts, 2009,32(3):508-521.
    [15] Stankovi?I, Vlahovi?T, UDOvi?M G, et al. Phytoplankton functional and morpho-functional approach in large floodplain rivers[J].Hydrobiologia, 2012,698(1):217-231.
    [16]田泽斌,刘德富,姚绪姣,等.分层对香溪河库湾浮游植物功能群季节演替的影响[J].长江流域资源与环境, 2014,23(5):700-707.Tian Z B, Liu D F, Yao X Z, et al. Effects of stratification on seasonal succession of phytoplankton functional groups in Xiangxihe Reservoir Bay[J]. Resources and Environment in the Yangtze Basin,2014,23(5):700-707.
    [17]高国敬,肖利娟,林秋奇,等.海南省典型水库浮游植物功能类群的结构特征与水质评价[J].生态科学, 2013,32(2):144-150.Gao G J, Xiao L J, Lin Q Q, et al. Structural characteristics and water quality evaluation of phytoplankton functional groups in typical reservoirs of Hainan province[J]. 2013,32(2):144-150.
    [18]尹子龙,程李芳,于洪贤,等.扎龙湿地夏季浮游植物功能群特征及水质评价[J].北方农业学报, 2016,44(4):56-62.Yin Z L, Cheng L F, Yu H X, et al. Characteristics of phytoplankton functional groups and water quality evaluation in Zhalong wetland in summer[J]. Northern Agricultural Journal, 2016,44(4):56-62.
    [19]董静,李根保,宋立荣.抚仙湖、洱海、滇池浮游藻类功能群1960s以来演变特征[J].湖泊科学, 2014,26(5):735-742.Dong J, Li G B, Song L R. Evolution characteristics of phytoplankton functional groups in Fuxian Lake, Bohai Sea and Dianchi Lake since1960s[J]. Journal of Lake Science, 2014,26(5):735-742.
    [20]翁建中,李继影,徐恒省,等.阳澄湖浮游植物研究及其富营养化评价[J].环境科学与管理, 2009,34(10):41-44,49.Wen J Z, Li J Y, Xu H S, et al. Phytoplankton research and eutrophication evaluation in Yangcheng Lake[J]. Environmental Science and Management, 2009,34(10):41-44,49.
    [21]骆东玲.浅水湖泊富营养化的机理与应对策略-以阳澄湖为例[J].农业资源与环境学报, 2007,24(3):14-18.Luo D L. Mechanism and coping strategies of eutrophication in shallow lakes:A case study of Yangcheng Lake[J]. Journal of Agricultural Resources and Environment, 2007,24(3):14-18.
    [22]葛优,周彦锋,吕大伟,等.阳澄西湖叶绿素a的时空分布及其与环境因子的关系[J].长江流域资源与环境, 2017,26(7):1068-1075.Ge Y, Zhou Y F, Lv D W, et al. Temporal and spatial distribution of chlorophyll-a in Yangcheng West Lake and its relationship with environmental factors[J]. Resources and Environment in the Yangtze Basin, 2017,26(7):1068.
    [23]丁娜,周彦锋,宋江腾,等.阳澄湖浮游植物群落结构特征及其与水环境因子的关系[J].上海海洋大学学报, 2015,24(5):702-711.Ding N, Zhou Y F, Song J T, et al. Characteristics of phytoplankton community structure and its relationship with water environment factors in Yangcheng Lake[J]. Journal of Shanghai Ocean University,2015,24(5):702-711.
    [24]景明,李继影,刘孟宇,等.阳澄湖浮游植物群落结构与环境因子的典范对应研究[J].环境科学与管理, 2014,39(11):145-148.Jing M, Li J Y, Liu M Y, et al. Canonical correspondence between phytoplankton community structure and environmental factors in Yangcheng Lake[J]. Environmental Science and Management,2014,39(11):145-148.
    [25]蔡晓钰,姜宇,张占恩,等.阳澄湖浮游植物调查及其与水体营养化关系分析[J].治淮, 2015,(6):15-17.Cai X Y, Jiang Y, Zhang Z E, et al. Investigation of phytoplankton in Yangcheng Lake and its relationship with nutrientization of water body[J]. Journal of Management, 2015,(6):15-17.
    [26]吕文,孙瑞瑞,王诚,等.阳澄湖西湖水源地富营养化时空变化特征分析[J].水资源与水工程学报, 2018,(3):87-90.Lv W, Sun R R, Wang C, et al. Temporal and spatial variation characteristics of eutrophication in the water source of West Lake in Yangcheng Lake[J]. Journal of Water Resources and Water Engineering, 2018,(3):87-90.
    [27]陈伟民,黄祥飞,周万平.湖泊生态系统观测方法[M].北京:中国环境科学出版社, 2005.Chen W M, Huang X F, Zhou W P. Lake ecosystem observation methods[M]. Beijing:China Environmental Science Press, 2005.
    [28]金相灿,屠清英.湖泊富营养化调查规范[M].北京:中国环境科学出版社, 1990:198-210.Jin X C, Tu Q Y. Regulations for Lake eutrophication survey[M].Beijing:China Environmental Science Press, 1990:198-210.
    [29]国家环保局本书编委会.水和废水监测分析方法[M].中国环境科学出版社, 2002:243-280. Editorial Board of the National Environmental Protection Agency.Water and wastewater monitoring and analysis methods[M]. China Environmental Science Press, 2002:243-280.
    [30]章宗涉,黄祥飞.淡水浮游生物研究方法[M].北京:科学出版社,1995.Zhang Z S, Huang X F. Research methods of freshwater plankton[M].Beijing:Science Press, 1995.
    [31]周凤霞.淡水微型生物与底栖动物图谱[M].北京:化学工业出版社,2011.Zhou F X. Freshwater micro-bio and benthic maps[M]. Beijing:Chemical Industry Press, 2011.
    [32]胡鸿钧,魏印心.中国淡水藻类-系统、分类及生态[J]. 2006.Hu H J, Wei Y X. Freshwater algae in China-system, classification and ecology[J]. 2006.
    [33] Aksnes D L, Wassmann P. Modeling the significance of zooplankton grazing for export production[J]. Limnology and Oceanography, 1993,38(5):978-985.
    [34] Lampitt R S, Wishner K F, Turley C M, et al. Marine snow studies in the Northeast Atlantic Ocean:distribution, composition and role as a food source for migrating plankton[J]. Marine Biology, 1993,116(4):689-702.
    [35]王华,杨树平,房晟忠,等.滇池浮游植物群落特征及与环境因子的典范对应分析[J].中国环境科学, 2016,36(2):544-552.Wang H, Yang S P, Fang S Z, et al. Canonical correlation analysis of phytoplankton community characteristics and environmental factors in Dianchi Lake[J]. China Environmental Science, 2016,36(2):544-552.
    [36] Reynolds C S. What factors influence the species composition of phytoplankton in lakes of different trophic status?[J]. Hydrobiologia,1998,369(1):11-26.
    [37]杜虹,黄长江,陈善文,等.2001~2002年粤东柘林湾浮游植物的生态学研究[J].海洋与湖沼, 2003,34(6):604-617.Du H, Huang C J, Chen S W, et al. Ecological study of phytoplankton in Zhelin Bay, Eastern Guangdong Province, 2001~2002[J]. Ocean and Lake Journal, 2003,34(6):604-617.
    [38]黄享辉,胡韧,雷腊梅,等.南亚热带典型中小型水库浮游植物功能类群季节演替特征[J].生态环境学报, 2013,22(2):311-318.Huang X H, Hu R, Lei L M, et al. Seasonal succession characteristics of phytoplankton functional groups in typical small and medium-sized reservoirs in South Asia[J]. Journal of Eco-Environment, 2013,22(2):311-318.
    [39]胡韧,蓝于倩,肖利娟,等.淡水浮游植物功能群的概念、划分方法和应用[J].湖泊科学, 2015,27(1):11-23.Hu R, Lan Y Q, Xiao L J, et al. Concept, division method and application of freshwater phytoplankton functional groups[J]. Journal of Lake Science, 2015,27(1):11-23.
    [40]张怡,胡韧,肖利娟,等.南亚热带两座不同水文动态的水库浮游植物的功能类群演替比较[J].生态环境学报, 2012,21(1):107-117.Zhang Y, Hu R, Xiao L J, et al. Comparison of functional group succession of two phytoplankton reservoirs in different hydrological dynamics in South Asia[J]. Chinese Journal of Eco-Environment,2012,21(1):107-117.
    [41]郑诚,陆开宏,徐镇,等.四明湖水库浮游植物功能类群的季节演替及其影响因子[J].环境科学, 2018,39(6):2688-2697.Zheng C, Lu K H, Xu Z, et al. Seasonal succession of phytoplankton functional groups in the Siming Lake Reservoir and its influencing factors[J]. Environmental Science, 2018,39(6):2688-2697.
    [42] Padisák J, Crossetti L O, Naselli-Flores L. Use and misuse in the application of the phytoplankton functional classification:a critical review with updates[J]. Hydrobiologia, 2009,621(1):1-19.
    [43] Bovo-Scomparin V M, Train S. Long-term variability of the phytoplankton community in an isolated floodplain lake of the Ivinhema River State Park, Brazil[J]. Hydrobiologia, 2008,610(1):331-344.
    [44] Becker V, Vera Lúcia M. Huszar, Crossetti L O. Responses of phytoplankton functional groups to the mixing regime in a deep subtropical reservoir[J]. Hydrobiologia, 2009,628(1):137-151.
    [45]武安泉,郭宁,覃雪波.寒区典型湿地浮游植物功能群季节变化及其与环境因子关系[J].环境科学学报, 2015,35(5):1341-1349.Wu A Q, Guo N, Qi X B. Seasonal changes of phytoplankton functional groups in typical wetlands in cold regions and their relationship with environmental factors[J]. Journal of Environmental Science, 2015,35(5):1341-1349.
    [46]黄国佳,李秋华,陈椽,等.贵州高原红枫湖水库浮游植物功能分组及其时空分布特征[J].生态学报, 2015,35(17):5573-5584.Huang G J, Li Q H, Chen W, et al. Functional grouping of phytoplankton in Hongfeng Lake Reservoir of Guizhou Plateau and its spatial and temporal distribution characteristics[J]. Chinese Journal of Ecology, 2015,35(17):5573-5584.
    [47]张婷,李林,宋立荣.熊河水库浮游植物群落结构的周年变化[J].生态学报, 2009,29(6):2971-2979.Zhang T, Li L, Song L R. Annual variation of phytoplankton community structure in Xionghe Reservoir[J]. Journal of Ecology,2009,29(6):2971-2979.
    [48]刘足根,张柱,张萌,等.赣江流域浮游植物群落结构与功能类群划分[J].长江流域资源与环境, 2012,21(3):375.Liu Z G, Zhang Z, Zhang M, et al. Division of phytoplankton community structure and functional groups in Ganjiang River Basin[J]. Resources and environment in the Yangtze River Basin, 2012,21(3):375.
    [49]代龚圆,李杰,李林,等.滇池北部湖区浮游植物时空格局及相关环境因子[J].水生生物学报, 2012,36(5):946-956.Dai G Y, Li J, Li L, et al. Spatial-temporal pattern of phytoplankton and related environmental factors in the Northern Lake area of Dianchi Lake[J]. Journal of Aquatic Biology, 2012,36(5):946-956.
    [50]汪星,刘录三,李黎,等.镜泊湖浮游藻类组成及其与环境因子的相关分析[J].中国环境科学, 2015,35(11):3403-3413.Wang X, Liu L S, Li L, et al. Composition of phytoplankton in Jingbo Lake and its correlation with environmental factors[J]. China Environmental Science, 2015,35(11):3403-3413.
    [51]沈会涛,刘存歧.白洋淀浮游植物群落及其与环境因子的典范对应分析[J].湖泊科学, 2008,20(1):773-779.Shen H T, Liu C Q. Phytoplankton community in Baiyangdian Lake and its canonical correspondence with environmental factors[J]. Lake Science, 2008,20(1):773-779.
    [52] Jiang Y J, He W, Liu W X, et al. The seasonal and spatial variations of phytoplankton community and their correlation with environmental factors in a large eutrophic chinese lake(Lake Chaohu)[J]. Ecological Indicators, 2014,40:58-67.
    [53] Arhonditsis G B, Winder M, Brett M T et al. Patterns and mechanisms of phytoplankton variability in Lake Washington(USA)[J]. Water Research, 2004,38:4013-4027.
    [54]潘继征,熊飞,李文朝,等.云南抚仙湖透明度的时空变化及影响因子分析[J].湖泊科学, 2008,20(5):681-686.Pan J Z, Xiong F, Li W C, et al. Temporal and spatial changes and influence factors of transparency in Fuxian Lake, Yunnan[J]. Journal of Lake Science, 2008,20(5):681-686.
    [55]李磊,李秋华,焦树林,等.小关水库夏季浮游植物功能群对富营养化特征的响应[J].环境科学, 2015,36(12):4436-4443.Li L, Li Q H, Jiao S L, et al. Response of phytoplankton functional groups to eutrophication characteristics in Xiaoguan reservoir in Summer[J]. Environmental Science, 2015,36(12):4436-4443.
    [56]游亮,崔莉凤,刘载文,等.藻类生长过程中DO、pH与叶绿素相关性分析[J].环境科学与技术, 2007,30(9):42-45.You L, Cui L F, Liu Z W, et al. Correlation analysis of DO, pH and chlorophyll in algae growth process[J]. Environmental Science and Technology, 2007,30(9):42-45.
    [57]李兴,李建茹,徐效清,等.乌梁素海浮游植物功能群季节演替规律及影响因子[J].生态环境学报, 2015,24(10):1668-1675.Li X, Li J R, Xu X Q, et al. Seasonal succession and influencing factors of phytoplankton functional groups in Wuliangsuhai lake[J].Chinese Journal of Eco-Environment, 2015,24(10):1668-1675.
    [58]卢金锁,张颖,胡亚潘.深水型水库中藻类功能群组演替及其与环境因子的关系[J].环境工程学报, 2014,(11):4605-4611.Lu J S, Zhang Y, Hu Y P. The succession of algal functional groups in deep water reservoirs and its relationship with environmental factors[J]. Journal of Environmental Engineering, 2014,(11):4605-4611.
    [59]李磊,李秋华,焦树林,等.阿哈水库浮游植物功能群时空分布特征及其影响因子分析[J].环境科学学报, 2015,35(11):3604-3611.Li L, Li Q H, Jiao S L, et al. Temporal and spatial distribution characteristics of phytoplankton functional groups in Aha Reservoir and their influencing factors[J]. Journal of Environmental Science,2015,35(11):3604-3611.
    [60]林岿璇,汪星,王瑜,等.镜泊湖浮游藻类功能群的演替特征及其影响因素[J].环境科学研究, 2017,30(4):520-528.Lin W X, Wang X, Wang Y et al. Succession characteristics and influencing factors of phytoplankton functional groups in Jingbo Lake[J]. Environmental Science Research, 2017,30(4):520-528.
    [61] Romo S. Phytoplankton strategies and diversity under different nutrient levels and planktivorous fish densities in a shallow Mediterranean lake[J]. Journal of Plankton Research, 2005,27(12):1273-1286.
    [62]汪星,李利强,郑丙辉,等.洞庭湖浮游藻类功能群的组成特征及其影响因素研究[J].中国环境科学, 2016,36(12):3766-3776.Wang X, Li L Q, Zheng B H, et al. Composition characteristics and influencing factors of phytoplankton functional groups in Dongting Lake[J]. China Environmental Science, 2016,36(12):3766-3776.
    [63]田永强.淡水浮游植物功能类群划分方法及其生态学应用研究进展[J].亚热带植物科学, 2015,44(4):349-354.Tian Y Q. Progress in the classification of functional groups of freshwater phytoplankton and its application in ecology[J].Subtropical Plant Science, 2015,44(4):349-354.
    [64]王英英.不同氮磷质量浓度对太浦河四种优势藻类生长影响的研究[D].上海:上海师范大学, 2016.Wang Y Y. Study on the effects of different nitrogen and phosphorus concentrations on the growth of four dominant algae in Taipu River[D]. Shanghai:Shanghai Normal University, 2016.

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