[1] LIU L,LIU D F,JOHNSON D M,et al.Effects of vertical mixing on phytoplankton blooms in Xiangxi Bay of Three Gorges Reservoir: Implications for management[J]. Water research,2012,46(7): 2121-2130. [2] 罗专溪, 朱波, 郑丙辉,等. 三峡水库支流回水河段氮磷负荷与干流的逆向影响[J]. 中国环境科学, 2007,27(2): 208-212. [3] XU Y, CAI Q, YE L,et al.Asynchrony of spring phytoplankton response to temperature driver withina spatial heterogeneity bay of Three-Gorges Reservoir, China[J]. Limnologica,2011,41(3): 174-180. [4] 方芳,周红,李哲,等. 三峡小江回水区真光层深度及其影响因素分析[J]. 水科学进展, 2010,21(1): 113-119. [5] 邱光胜, 胡圣, 叶丹, 等. 三峡库区支流富营养化及水华现状研究[J]. 长江流域资源与环境, 2011,20(3): 311-316. [6] PAERL H W, MOISANDER P H, DYBLE J.Harmful freshwater algal blooms, with an emphasis on cyanobacteria[J]. The scientific world journal, 2001,1(1): 76. [7] WHITTON B A, POTTS M.The Ecology of Cyanobacteria[M]. Amsterdam:Kluwer Academic Pub, 2000. [8] 田泽斌, 刘德富, 杨正健, 等. 三峡水库香溪河库湾夏季蓝藻水华成因研究[J]. 中国环境科学, 2012,32(11): 2083-2089. [9] SUIKKANEN S,LAAMANEN M,HUTTUNEN M.Long-term changes in summer phytoplankton communities of the open northern Baltic Sea[J]. Estuarine coastal & shelf science, 2007,71(3-4): 580-592. [10] REYNOLDS C S.The Ecology of Phytoplankton[M]. Cambridge:Cambridge University Press,2006. [11] 方丽娟, 刘德富, 杨正健, 等. 水温对浮游植物群落结构的影响实验研究[J]. 环境科学与技术, 2014,37(S2): 45-50. [12] 张佳磊,郑丙辉,熊超军,等. 三峡大宁河水体光学特征及其对藻类生物量的影响[J]. 环境科学研究,2014,27(5):492-497. [13] 冉祥滨,陈洪涛,姚庆祯,等. 三峡水库小江库湾水体混合过程中营养盐的行为研究[J]. 水生态学杂志,2009,30(2):21-27. [14] GAMEIRO C,CARTAXANA P, BROTAS V.Environmental drivers of phytoplankton distribution and composition in Tagus Estuary, Portugal[J]. Estuarine coastal & shelf science, 2007,75(1-2):21-34. [15] 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. [16] 李哲, 张曾宇, 杨中华,等.三峡澎溪河回水区流速对藻类原位生长速率的影响[J]. 湖泊科学, 2015,27(5): 880-886. [17] GEORGE B A.Delineation of the role of nutrient dynamics and hydrologic forcing on phytoplankton patterns along a freshwater-marine continuum[J]. Ecological modelling, 2007,208(2):230-246. [18] 陈纯. 浮游植物群落演替过程中的趋同性与趋异性:围隔实验[D].广州:暨南大学,2014. [19] 国家环保局. 水和废水监测分析方法[M].北京: 中国环境科学出版社, 1997. [20] 胡鸿钧, 魏印心. 中国淡水藻类—系统、分类及生态[M]. 北京:科学出版社,2006. [21] 胡鸿钧, 李尧英, 魏印心, 等. 中国淡水藻类[M]. 上海:上海科学技术出版社,1980. [22] 黄祥飞. 湖泊生态调查观测与分析[M].北京: 中国标准出版社,2000. [23] HUBBLE D S, HARPER D M.Phytoplankton community structure and succession in the water column of Lake Naivasha, Kenya: A shallow tropical lake[J]. Hydrobiologia, 2002,488(1): 89-98. [24] SHANNON C E.The mathematical theory of communication. 1963[J]. Bell system technical journal,1948,27:379-423. [25] 马克平, 刘玉明. 生物群落多样性的测度方法:Ⅱβ多样性的测度方法[J]. 生物多样性, 1995,3(1):38-43. [26] 钱迎倩. 生物多样性研究的原理与方法[M].北京: 中国科学技术出版社, 1994. [27] 孔繁翔, 高光. 大型浅水富营养化湖泊中蓝藻水华形成机理的思考[J]. 生态学报, 2005,25(3): 589-595. [28] ODUM E P.生态学基础[M].北京:人民教育出版社,1981. [29] NOELIA R,MALVERN G.Microplankton diversity indices as indicators of eutrophication in the northern adriatic sea[J]. Hydrobiologia, 1980,70(3): 277-286. [30] CAROLINA F,ELISA R P,EDUARDO J C.Phytoplankton structure and diversity in the eutrophic-hypereutrophic reservoir Paso de las Piedras, Argentina[J]. Limnology, 2012,13(1): 13-25. [31] REYNOLDS C S, PADISÁK J, SOMMER U. Intermediate disturbance in the ecology of phytoplankton and the maintenance of species diversity: A synthesis[J]. Hydrobiologia, 1993,249(1-3): 183-188. [32] REYNOLDS C S.What factors influence the species composition of phytoplankton in lakes of different trophic status[M]. Berlin:Springer Netherlands, 1998. [33] REYNOLDS C S.Towards a functional classification of the freshwater phytoplankton[J]. Journal of plankton research,2002,24(5): 417-428. [34] ULRICH S.The periodicity of phytoplankton in Lake Constance (Bodensee) in comparison to other deep lakes of central Europe[J]. Hydrobiologia, 1986,138(1): 1-7. [35] XIAO Y, LI Z, GUO J, et al.Succession of phytoplankton assemblages in response to large-scale reservoir operation: A case study in a tributary of the Three Gorges Reservoir, China[J]. Environmental monitoring & assessment, 2016,188(3): 153. [36] 杨毓, 卢金锁, 张颖. 深水型水库藻形态功能组(MBFG)的季节演替特征[J]. 环境科学, 2017,38(1): 121-128. [37] 胡韧. 珠海水库富营养化现状、浮游植物群落特征与蓝藻水华风险分析[D].广州:暨南大学,2009. [38] 田泽斌,刘德富,姚绪姣,等. 水温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. [39] 郭劲松, 盛金萍, 李哲,等. 三峡水库运行初期小江回水区藻类群落季节变化特点[J]. 环境科学, 2010,31(7): 1492-1497. [40] 李哲, 方芳, 郭劲松, 等. 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. [41] PENG C,ZHANG L,ZHENG Y,et al.Seasonal succession of phytoplankton in response to the variation of environmental factors in the Gaolan River, Three Gorges Reservoir, China[J]. Chinese journal of oceanology and limnology, 2013,31(4): 737-749. |