Monitoring microbial community structure and succession of an A/O SBR
during start-up period using PCR-DGGE |
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Authors: | WANG Xiuheng ZHANG Kun REN Nanqi LI Nan and REN Lijiao |
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Institution: | State Key Lab of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China |
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Abstract: | Polymerase chain reaction (PCR) - denaturing gradient gel electrophoresis (DGGE) protocol was employed for revealing microbial community structure and succession in a sequential anaerobic and aerobic reactor performing enhanced biological phosphorus removal (EBPR) during start-up period.High phosphorus removal was achieved after 15 d.On day 30, phosphorus removal efficiency reached to 83.2% and the start-up was finished.DGGE profiles of periodical sludge samples showed that dominant microbial species were 19 OTUs (operational taxonomy unit ).Unweighted pair-group method using Arithmetic averages (UPGMA clustering analysis revealed that rapid community succession correlated to lower phosphorus removal rate and higher phosphorus removal efficiency reflected on steady community structure.Sequencing results indicated that determined sequences (12 OTUs) belonged to proteobacterium, Actinobacteria, Gemmatimonadales and unaffiliate group.Proteobacterium, Tetrasphaera elongate and Gemmatimonas aurantiaca may act important roles in phosphorus removal.With little amount as known glycogen accumulating organisms, Candidatus Competibacter phosphatis still at accumulating-phase had limited influence on microbial community structure.When climax community was obtained, dominant microbes were 14 OTUs.Microbes in a large amount were uncultured bacterium, Thauera sp., uncultured γ-Proteobacterium and Tetrasphaera elongata. |
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Keywords: | biological phosphorus removal polyphosphate accumulating organisms glycogen accumulating organisms DGGE start-up |
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