He, Shaomei


Publications
6

Comparative genomics of two ‘Candidatus Accumulibacter’ clades performing biological phosphorus removal

Citation
Flowers et al. (2013). The ISME Journal 7 (12)
Names
“Accumulibacter”
Abstract
Abstract Members of the genus Candidatus Accumulibacter are important in many wastewater treatment systems performing enhanced biological phosphorus removal (EBPR). The Accumulibacter lineage can be subdivided phylogenetically into multiple clades, and previous work showed that these clades are ecologically distinct. The complete genome of Candidatus Accumulibacter phosphatis strain UW-1, a member of Clade IIA, was previously sequenced. Here, we report a draft genome sequence of C
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Microbiology of ‘ Candidatus Accumulibacter’ in activated sludge

Citation
He, McMahon (2011). Microbial Biotechnology 4 (5)
Names
“Accumulibacter”
Abstract
Summary ‘ Candidatus Accumulibacter’ is a biotechnologically important bacterial group that can accumulate large amounts of intracellular polyphosphate, contributing to biological phosphorus removal in wastewater treatment. Since its first molecular identification more than a decade ago, this bacterial group has drawn significant research attention due to its high abundance in many biological phosphorus removal system
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Candidatus Accumulibacter’ gene expression in response to dynamic EBPR conditions

Citation
He, McMahon (2011). The ISME Journal 5 (2)
Names
“Accumulibacter”
Abstract
Abstract Enhanced biological phosphorus removal (EBPR) activated sludge communities enriched in ‘Candidatus Accumulibacter’ relatives are widely used in wastewater treatment, but much remains to be learned about molecular-level controls on the EBPR process. The expression of genes found in the carbon and polyphosphate metabolic pathways in Accumulibacter was investigated using reverse transcription quantitative PCR. During a normal anaerobic/aerobic EBPR cycle, gene expression exh
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Bacterial Community and “ Candidatus Accumulibacter” Population Dynamics in Laboratory-Scale Enhanced Biological Phosphorus Removal Reactors

Citation
He et al. (2010). Applied and Environmental Microbiology 76 (16)
Names
“Accumulibacter”
Abstract
ABSTRACT “ Candidatus Accumulibacter” and total bacterial community dynamics were studied in two lab-scale enhanced biological phosphorus removal (EBPR) reactors by using a community fingerprint technique, automated ribosomal intergenic spacer analysis (ARISA). We first evaluated the quantitative capability of ARISA compared to quantitative real-time PCR (qPCR). ARISA and qPCR provided comparable relative quantification of the two dominant “
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Metatranscriptomic array analysis of ‘ Candidatus Accumulibacter phosphatis’‐enriched enhanced biological phosphorus removal sludge

Citation
He et al. (2010). Environmental Microbiology 12 (5)
Names
“Accumulibacter phosphatis”
Abstract
Summary Here we report the first metatranscriptomic analysis of gene expression and regulation of ‘ Candidatus Accumulibacter’‐enriched lab‐scale sludge during enhanced biological phosphorus removal (EBPR). Medium density oligonucleotide microarrays were generated with probes targeting most predicted genes hypothesized to be important for the EBPR phenotype. RNA samples were collected at the early stage of anaerobic a
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Candidatus Accumulibacter” Population Structure in Enhanced Biological Phosphorus Removal Sludges as Revealed by Polyphosphate Kinase Genes

Citation
He et al. (2007). Applied and Environmental Microbiology 73 (18)
Names
“Accumulibacter”
Abstract
ABSTRACT We investigated the fine-scale population structure of the “ Candidatus Accumulibacter” lineage in enhanced biological phosphorus removal (EBPR) systems using the polyphosphate kinase 1 gene ( ppk1 ) as a genetic marker. We retrieved fragments of “ Candidatus Accumulibacter” 16S rRNA and ppk1 genes from one laboratory-scale and several full-scale EBPR systems. Phylogeni
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