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太湖夏季浮游细菌群落多样性的空间格局
THE SPATIAL PATTERN OF BACTERIOPLANKTON COMMUNITY COMPOSITION IN LAKE TAIHU IN SUMMER

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庞兴红 1   吕丽媛 2   牛远 3   沈宏 1   袁希功 1   陈文捷 2   陈隽 1   谢平 1 *  
文摘 为了研究太湖夏季浮游细菌群落多样性与水体营养盐的关系, 在太湖全湖范围内开展了一次大规模浮游细菌采样调查, 分析了太湖不同湖区浮游细菌丰度和多样性组成。研究发现, 浮游细菌丰度在不同湖区中存在明显的空间差异, 从北部和西部湖区沿湖流向东南方向至湖心和南部沿岸再到东部湖区呈下降趋势, 这与太湖水体营养水平从高到低变化趋势一致。浮游细菌丰度与营养盐浓度回归分析结果显示, 总磷(TP)与细菌丰度存在较好的正相关(R~2=0.6392, n=29, P<0.01), 而总氮(TN)与细菌丰度无显著相关(R~2=0.0663, n=29, P>0.05)。因此, 磷是太湖夏季浮游细菌生长的限制因子。不同湖区营养盐与浮游细菌群落多样性也具有显著的正相关, 随着营养水平的升高, 浮游细菌多样性增加。此外, 细菌群落的组成在不同湖区间亦具有明显的空间异质性, 与不同湖区营养水平空间变化一致。研究结果将有助于人们更好地理解淡水湖泊中微生物循环和生态系统功能。
其他语种文摘 The present study was designed to determine the spatial pattern of bacterioplankton community composition (BCC) in Lake Taihu in summer and to evaluate the relationship between trophic level and bacterial diversity. According to the survey conducted during August 2010, the bacterioplankton abundance significantly declined from the north and west of lake to the center and south, then to the east of the lake; and the changes were similar to the decline of the trophic levels in lake regions. In addition, Total phosphorus (TP) concentration but not total nitrogen (TN) was positively correlated with bacterioplankton abundance (R~2=0.6392, n=29, P<0.01; R~2=0.0663, n=29, P>0.05; respectively). Thus, P is a limiting factor for the growth of bacterioplankton in summer in Lake Taihu. A positive correlation between trophic level and bacterioplankton diversity in different lake regions was also observed in present study. Moreover, distinct spatial heterogeneity of BCC was observed in summer in Lake Taihu, which is mainly in accordance with the changes in trophic levels in various lake regions. Our study may contribute to better understanding of microbial loop and their ecological function in freshwater lakes.
来源 水生生物学报 ,2014,38(2):335-341 【核心库】
关键词 太湖 ; 浮游细菌群落 ; 丰度 ; 多样性 ; 空间格局 ; ;
地址

1. 中国科学院水生生物研究所, 武汉, 430072  

2. 华中农业大学, 430070  

3. 中国环境科学研究院湖泊生态环境创新基地, 北京, 100012

语种 中文
文献类型 研究性论文
ISSN 1000-3207
学科 普通生物学
基金 国家重大科技专项
文献收藏号 CSCD:5103856

参考文献 共 27 共2页

1.  秦伯强. 太湖水环境演化过程与机理,2004:19-28 被引 15    
2.  谢平. 太湖蓝藻的历史发展与水华灾害,2008:1-33 被引 1    
3.  O'Neil J M. The rise of harmful cyanobacteria blooms: The potential roles of eutrophication and climate change. Harmful Algae,2012,14:313-334 被引 86    
4.  Chen Y W. Long-term dynamics of phytoplankton assemblages: Microcystis-domination in LakeTaihu, a large shallow lake in China. Journal of Plankton Research,2003,25:445-453 被引 122    
5.  Hahn M W. The microbial diversity of inland waters. Current Opinion in Biotechnology,2006,17:256-261 被引 16    
6.  周纯. 太湖不同解有机磷菌株胞外碱性磷酸酶活性对蓝藻碎屑的响应. 水生生物学报,2012,36(1):119-125 被引 7    
7.  Dufour P. Advantages of distinguishing the active fraction in baeterioplankton assemblages: some examples. Hydrobiologia,1996,207:295-301 被引 2    
8.  Tian C. Spatiotemporal transition of bacterioplankton diversity in a large shallow hypertrophic freshwater lake, as determined by denaturing gradient gel electrophoresis. Journal of Plankton Research,2009,31:885-897 被引 9    
9.  Niu Y. Phytoplankton community succession shaping bacterioplankton community composition in Lake Taihu, China. Water Research,2011,45:4169-4182 被引 30    
10.  金相灿. 湖泊富营养化调查规范,1990:160-185 被引 16    
11.  Muyzer G. Profiling of complex microbial populations by denaturing gradient gel electrophoresis analysis of polymerase chain reaction amplified genes coding for 16S rRNA. Applied and Environmental Microbiology,1993,59:695-700 被引 1224    
12.  钟成华. 三峡库区水体富营养化研究,2004 被引 13    
13.  Xu H. Nitrogen and phosphorus inputs control phytoplankton growth in eutrophic Lake Taihu, China. Limnology and Oceanography,2010,55:420-432 被引 220    
14.  Wu Q L. Submersed macrophytes play a key role in structuring bacterioplankton community composition in the large shallow subtropical Taihu Lake China. Environmental Microbiology,2007,9:2765-2774 被引 20    
15.  冯胜. 细菌群落结构对水体富营养化的响应. 环境科学学报,2007,27(11):1823-1829 被引 45    
16.  Baines S B. The production of dissolved organic matter by phytoplankton and its importance to bacteria-patterns across marine and fresh-water systems. Limnology and Oceanography,1991,36:1078-1090 被引 16    
17.  Tao M. Use of generalized additive model to investigate key abiotic factors affecting microcystin cellular quotas in heavy bloom areas of Lake Taihu. PLoS One,2012,7:e32020 被引 4    
18.  Sun X X. Large-scale field evidence on the enhancement of small-sized cladocerans by Microcystis blooms in Lake Taihu, China. Journal of Plankton Research,2012,34:853-863 被引 2    
19.  Sand-Jensen K. Interactions among phytoplankton, periphytonand macrophytes in temperate freshwaters and estuaries. Aquatic Botany,1991,41:137-175 被引 23    
20.  Gonzalez J M. Identifying numerically abundant culturable bacteria from complex communities: an example from a lignin enrichment culture. Applied and Environmental Microbiology,1996,62:4433-4440 被引 2    
引证文献 6

1 李静 夏季蓝藻水华期间太湖河口区和敞水区纤毛虫群落组成及水平分布 水生生物学报,2014,38(5):860-867
被引 2

2 金颖薇 太湖水华期营养盐空间分异特征与赋存量估算 环境科学,2015,36(3):936-945
被引 16

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