[1] Desortova B. Relationship between chlorophyll-a concentration and phytoplankton biomass in several reservoirs in Czechoslovakia[J]. Internationale Revue der gesamten Hydrobiologie und Hydrographie, 1981,66: 153—169.
[2] 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.
[3] 刘足根,张柱,张萌,方红亚,弓晓峰. 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—383.
[4] Reynolds C S, Huszar V, Kruk C, Naselli-Flores L, Melo S. Towards a functional classification of the freshwater phytoplankton[J]. Journal of Plankton Research, 2002,24(5): 417—428.
[5] Sommer U. Plankton ecology: succession in plankton communities[M]. Berlin: Springer-Verlag, 1989.
[6] Weithoff G. The concepts of ‘plant functional types’ and ‘functional diversity’ in lake phytoplankton–a new understanding of phytoplankton ecology?[J]. Freshwater Biology, 2003,48(9): 1669—1675.
[7] Kruk C, Mazzeo N, Lacerot G, Reynolds C S. Classification schemes for phytoplankton: a local validation of a functional approach to the analysis of species temporal replacement[J]. Journal of Plankton Research, 2002,24(9): 901—912.
[8] Salmaso N, Padisák J. Morpho-functional groups and phytoplankton development in two deep lakes (Lake Garda, Italy and Lake Stechlin, Germany)[J]. Hydrobiologia, 2007,578(1): 97—112.
[9] 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.
[10] Weithoff G, Walz N, Gaedke U. The intermediate disturbance hypothesis-species diversity or functional diversity?[J]. Journal of Plankton Research, 2001,23(10): 1147—1155.
[11] Naselli-Flores L, Padisák J, Dokulil M T, Chorus I. Equilibrium/steady-state concept in phytoplankton ecology[J]. Hydrobiologia, 2003,502(1): 395—403.
[12] Huszar V L M, Caraco N F. The relationship between phytoplankton composition and physical-chemical variables: A comparison of taxonomic and morphological-functional descriptors in six temperate lakes[J]. Freshwater Biology, 1998,40(4): 679—696.
[13] Padisák J, Reynolds C S. Selection of phytoplankton associations in Lake Balaton, Hungary, in response to eutrophication and restoration measures, with special reference to the cyanoprokaryotes[J]. Hydrobiologia, 1998,384(1): 41—53.
[14] Beyruth Z. Periodic disturbances, trophic gradient and phytoplankton characteristics related to cyanobacterial growth in Guarapiranga Reservoir, S?o Paulo State, Brazil[J]. Hydrobiologia, 2000,424(1): 51—65.
[15] Huszar V, Silva L, Marinho M, Domingos P, Sant'Anna C L. Cyanoprokaryote assemblages in eight productive tropical Brazilian waters[J]. Hydrobiologia, 2000,424(1): 67—77.
[16] Hutchinson G E. A Treatise on Limnology. Volume II: Introduction to Lake Biology and the Limnoplankton[M]. New York: John Wiley & Sons, 1967.
[17] Reynolds C S. Phytoplankton assemblages and their periodicity in stratifying lake systems[J]. Holarctic Ecology, 1980: 141—159.
[18] Braun-Blanquet J. Pflanzensociologie, Grundzuege der Vegetationskunde(3rd edn)[M]. New Work: Springer-Verlag, 1964.
[19] Reynolds C S. Phytoplankton periodicity: the interactions of form, function and environmental variability[J]. Freshwater Biology, 1984,14(2): 111—142.
[20] Reynolds C S. Functional morphology and the adaptive strategies of freshwater phytoplankton[J]. Growth and Reproductive Strategies of Freshwater Phytoplankton Cambridge University Press, Cambridge, 1988: 388—433.
[21] Grime J. Plant Strategies and Vegetation Processes[M]. Chichester, UK: Wiley & Sons, 1979.
[22] Reynolds C S. Vegetation Processes in the Pelagic: A Model for Ecosystem Theory[M]. Ecology Institute, Oldendorf/Luhe, Germany, 1997.
[23] Reynolds C S. Phytoplankton designer-or how to predict compositional responses to trophic-state change[J]. Hydrobiologia, 2000,424: 67—77.
[24] Braak C J F, Smilauer P. CANOCO Reference Manual and User’s Guide to Canoco for Windows: software for canonical community ordination (version 4)[M]. Microcomputer Power, Ithaca, New York, 1998.
[25] Kruk C, Huszar V L M, Peeters E T H M, Bonilla S, Costa L, Lürling M, Reynolds C S, Scheffer M. A morphological classification capturing functional variation in phytoplankton[J]. Freshwater Biology, 2010,55(3): 614—627.
[26] Tolotti M, Thies H O R, Nickus U, Psenner R. Temperature modulated effects of nutrients on phytoplankton changes in a mountain lake[J]. Hydrobiologia, 2012, 698(1): 61—75.
[27] Hu R, Xiao L J. Functional classification of phytoplankton assemblages in reservoirs of Guangdong Province, South China. [M]//Han B P, Liu Z. Tropical and Sub-tropical Reservoir Limnology in China, theory and practice. Dordrecht: Springer Netherland, 2012: 59—70.
[28] Kruk C, Peeters E T H M, Vannes E H, Huszar V L M, Costa L. Phytoplankton community composition can be predicted best in terms of morphological groups[J]. Limnology and Oceanography, 2011,56(1): 110.
[29] Commission E. Directive 2000/60/EC of the European Parliament and of the council of 23 October 2000 establishing a framework for community action in the field of water policy[J]. Official Journal of the European Communities, 2000, L327: 1—72.
[30] Naselli-Flores L. Phytoplankton assemblages in twenty-one Sicilian reservoirs: relationships between species composition and environmental factors[J]. Hydrobiologia, 2000,424(1): 1—11.
[31] Marinho M M, Huszar V L M. Nutrient availability and physical conditions as controlling factors of phytoplankton composition and biomass in a tropical reservoir (Southeastern Brazil)[J]. Archiv für Hydrobiologie, 2002,153(3): 443—468.
[32] Nabout J, Nogueira I S, Oliveira L. Phytoplankton community of floodplain lakes of the Araguaia River, Brazil, in the rainy and dry seasons[J]. Journal of Plankton Research, 2006,28(2): 181—193.
[33] Romo S, Villena M J. 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.
[34] Padisák J, Borics G, Grigorszky I, Soróczki-Pintér E. 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.
[35] Devercelli M. Phytoplankton of the Middle Paraná River during an anomalous hydrological period: a morphological and functional approach[J]. Hydrobiologia, 2006,563(1): 465—478.
[36] Borics G, Várbíró G, Grigorszky I, Krasznai E, Szabó S, Kiss K T. A new evaluation technique of potamo-plankton for the assessment of the ecological status of rivers[J]. Archiv Für Hydrobiologie Supplementband Large Rivers, 2007,17(3—4): 465—486.
[37] Soares M C S, Huszar V L M, Roland F. Phytoplankton dynamics in two tropical rivers with different degrees of human impact (Southeast Brazil)[J]. River research and applications, 2007,23(7): 698—714.
[38] Devercelli M. Changes in phytoplankton morpho-functional groups induced by extreme hydroclimatic events in the Middle Parana River (Argentina)[J]. Hydrobiologia, 2010,639(1): 5—19.
[39] Abonyi A, Leit?o M, Lan?on A M, Padisák J. Phytoplankton functional groups as indicators of human impacts along the River Loire (France)[J]. Hydrobiologia, 2012,698(1): 233—249.
[40] Carlson R E. A trophic state index for lakes[J]. Limnology and Oceanography, 1977, 22: 361—369.
[41] Becker V, Huszar V L M , Crossetti L O. Responses of phytoplankton functional groups to the mixing regime in a deep subtropical reservoir[J]. Hydrobiologia, 2009,628 (1):137—151.
[42] 李哲,方芳,郭劲松,孙志禹,陈永柏,龙曼. 三峡小江(澎溪河)藻类功能分组及其季节演替特点[J]. 环境科学, 2011,32(2): 392—400.
[43] 庄道阔,刘存歧,刘录三,李黎,刘志超,杨晨晨. 镜泊湖流域浮游植物群落及其功能类群的时空演替特征研究[J]. 环境科学与管理, 2015,40(5): 142—147.
[44] 黄国佳,李秋华,陈椽,商立海,张垒,欧滕,高廷进,李钥,邓龙. 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.
[45] 高国敬,肖利娟,林秋奇,胡韧,雷腊梅. 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.
[46] Solbrig O T. Plant traits and adaptive strategies: their role in ecosystem function[J]. Biodiversity and Ecosystem Function, 1993,99: 97—116.
[47] Ten B B, Hosper S, Colijn F. A quantitative method for description & assessment of ecosystems: The AMOEBA-approach[J]. Marine Pollution Bulletin, 1991,23: 265—270.
[48] Seip K, Reynolds C. Phytoplankton functional attributes along trophic gradient and season[J]. Limnology and Oceanography, 1995,40: 589—597.
|