Spatial heterogeneity of cyanobacterial communities and genetic variation of Microcystis populations within large,shallow eutrophic lakes(Lake Taihu and Lake Chaohu,China)

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作者
Yuanfeng Cai Fanxiang Kong Limei Shi Yang Yu State Key Laboratory of Lake Science and EnvironmentNanjing Institute of Geography and LimnologyChinese Academy of SciencesNanjing ChinaGraduate University of Chinese Academy of SciencesBeijing China [1 ,2 ,1 ,1 ,1 ,1 ,210008 ,2 ,100049 ]
机构
关键词
cyanobacteria; Microcystis; Synechococcus; bloom; diversity;
D O I
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中图分类号
X524 [湖泊、水库];
学科分类号
0815 ;
摘要
Cyanobacteria,specifically Microcystis,usually form massive blooms in eutrophic freshwater lakes.Cyanobacterial samples were collected from eight sites of both Lake Taihu and Lake Chaohu in late summer to determine the diversity and distribution pattern of cyanobacteria and Microcystis in large,shallow,entropic lakes with significant spatial heterogeneity and long-term Microcystis bloom.Molecular methods based on denaturing gradient gel electrophoresis and clone library analysis were used.A similar heterogeneous distribution pattern of cyanobacteria in both lakes was observed.Most parts of these two lakes with high trophic level were dominated by Microcystis.However,in the regions with low trophic levels as well as low concentrations of chlorophyll a,Synechococcus occupied a considerable percentage.Different morphospecies and genotypes dominated the bloom-forming Microcystis populations in these two lakes.Microcystis viridis and Microcystis novacekii were dominant in Lake Chaohu,whereas Microcystis flos-aquae was dominant in Lake Taihu.Only 2 of the13 Microcystis operational taxonomic units were shared between these two lakes.Analysis of molecular variance based on 16S to 23S internal transcribed spacer sequences indicated the significant genetic differentiation of Microcystis between these two lakes(F st = 0.19,p < 0.001).However,only 19.46% of the genetic variability was explained by the population variation between lakes,whereas most(80.54%) of the genetic variability occurred within the lakes.Phylogenetic analysis revealed no phylogeographic structure of Microcystis population in these two lakes,as illustrated by their cosmopolitan nature.Our results revealed that spatial heterogeneity within lakes has more impact on the cyanobacterial diversity than geographical isolation in a local scale.
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页码:1832 / 1842
页数:11
相关论文
共 12 条
[1]   Genetic diversity of cyanobacteria in four eutrophic lakes [J].
Miller, Todd R. ;
McMahon, Katherine D. .
FEMS MICROBIOLOGY ECOLOGY, 2011, 78 (02) :336-348
[2]   Temporal variability of cyanobacterial populations in the water and sediment samples of Lake Taihu as determined by DGGE and real-time PCR [J].
Ye, Wenjin ;
Tan, Jing ;
Liu, Xianglong ;
Lin, Shengqin ;
Pan, Jianliang ;
Li, Daotang ;
Yang, Hong .
HARMFUL ALGAE, 2011, 10 (05) :472-479
[3]   China [J].
不详 .
NUCLEAR PLANT JOURNAL, 2011, 29 (01) :8-8
[4]  
Nutrients and heavy metals in multi-cores from Zhushan Bay at Taihu Lake, the largest shallow lake in the Yangtze Delta, China[J] . Yao Shuchun,Xue Bin.Quaternary International . 2010 (1)
[5]  
Spatiotemporal changes in the genetic diversity in French bloom‐forming populations of the toxic cyanobacterium, Microcystis aeruginosa[J] . Environmental Microbiology Reports . 2009 (4)
[6]  
Genetic Diversity: Geographical Distribution and Toxin Profiles of Microcystis Strains (Cyanobacteria) in China[J] . Zhong‐XingWu,Nan‐QinGan,Li‐RongSong.Journal of Integrative Plant Biology . 2007 (3)
[7]   Genetic diversity in Microcystis populations of a French storage reservoir assessed by sequencing of the 16S-23S rRNA intergenic spacer [J].
Humbert, JF ;
Duris-Latour, D ;
Le Berre, B ;
Giraudet, H ;
Salencon, MJ .
MICROBIAL ECOLOGY, 2005, 49 (02) :308-314
[8]   Detection of phycobilin pigments and their seasonal change in Lake Kasumigaura using a sensitive in situ fluorometric sensor [J].
Asai, R ;
Horiguchi, Y ;
Yoshida, A ;
McNiven, S ;
Tahira, P ;
Ikebukuro, K ;
Uchiyama, S ;
Masuda, Y ;
Karube, I .
ANALYTICAL LETTERS, 2001, 34 (14) :2521-2533
[9]  
Cyanobacterial dominance in lakes[J] . Martin T. Dokulil,Katrin Teubner.Hydrobiologia . 2000 (1)
[10]  
Mechanisms of dominance: coexistence of picocyanobacterial genotypes in a freshwater ecosystem[J] . C. Postius,Anneliese Ernst.Archives of Microbiology . 1999 (2)