PLoS ONE (Jan 2016)

Exploring the Shift in Structure and Function of Microbial Communities Performing Biological Phosphorus Removal.

  • Yanping Mao,
  • Zhiping Wang,
  • Liguan Li,
  • Xiaotao Jiang,
  • Xuxiang Zhang,
  • Hongqiang Ren,
  • Tong Zhang

DOI
https://doi.org/10.1371/journal.pone.0161506
Journal volume & issue
Vol. 11, no. 8
p. e0161506

Abstract

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A sequencing batch reactor fed mainly by acetate was operated to perform enhanced biological phosphorus removal (EBPR). A short-term pH shock from 7.0 to 6.0 led to a complete loss of phosphate-removing capability and a drastic change of microbial communities. 16S rRNA gene pyrosequencing showed that large proportions of glycogen accumulating organisms (GAOs) (accounted for 16% of bacteria) bloomed, including Candidatus Competibacter phosphatis and Defluviicoccus-related tetrad-forming organism, causing deteriorated EBPR performance. The EBPR performance recovered with time and the dominant Candidatus Accumulibacter (Accumulibacter) clades shifted from Clade IIC to IIA while GAOs populations shrank significantly. The Accumulibacter population variation provided a good opportunity for genome binning using a bi-dimensional coverage method, and a genome of Accumulibacter Clade IIC was well retrieved with over 90% completeness. Comparative genomic analysis demonstrated that Accumulibacter clades had different abilities in nitrogen metabolism and carbon fixation, which shed light on enriching different Accumulibacter populations selectively.