4.7 Article

Seasonal succession and spatial distribution of bacterial community structure in a eutrophic freshwater Lake, Lake Taihu

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 669, 期 -, 页码 29-40

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2019.03.087

关键词

Cyanobacterial blooms; Bacterial community; 16S rRNA gene; Seasonal succession; Spatial distribution; Driving factors

资金

  1. National Natural Science Foundation of China [61305066, 61561146396, 61322308, 61872218, 31600096, 61673241]
  2. Tsinghua-Fuzhou Institute research program
  3. Siemens
  4. Deanship of Scientific Research at King Saud University [RG-1435-012]

向作者/读者索取更多资源

In aquatic ecosystems, both phytoplankton and bacteria play pivotal roles. Based on 16S rRNA gene sequencing, considerable research focused on phytoplankton colony attached and free-living bacteria has revealed the close relationship between them, and indicated that the entire bacterial community mediates crucial biogeochemical processes in aquatic ecosystems. However, our understanding of their distribution patterns and response to environmental factors remains poor. Besides, picocyanobacteria, which were omitted from attached bacteria analysis, were reported to be important in cyanobacterial blooms. To explore the spatiotemporal variation of the entire bacterial community with their driving environmental factors and detect the relationships among them, we collected 61water samples spanning one year and the entire Lake Taihu regions for surveying the entire bacterial community. Our results indicated: 1) seasonal variation of the bacterial community composition was stronger than spatial variation due to the clearly seasonal variation of Microcystis, Synechococcus (picocyanobacteria) and other bacteria (Actinomycetales, Pirellulaceae and Sphingobacteriaceae); 2) the spatial distribution of the bacterial community showed that different phylawere dominant in different regions; 3) the bacterial co-occurrence networks varied seasonally andwere dominated byMicrocystis, ACK-M1, Chthoniobacteraceae, Synechococcus, Pirellulaceae and Pelagibacteraceae; 4) phytoplankton density, chlorophyll a, water temperature and total nitrogen were the major factors that drove the spatiotemporal variation of bacterial community composition. This study revealed the seasonal succession and spatial distribution of the entire bacterial community in Lake Taihu, providing newinsights into the relationship betweenwater bloom-forming cyanobacterial species and other bacteria, and their response to environmental factors in eutrophic freshwater ecosystem. Published by Elsevier B.V.

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