Candidatus Thiothrix phosphatis SCUT-1: A novel polyphosphate-accumulating organism abundant in the enhanced biological phosphorus removal system |
Chen et al. (2024). Water Research 267
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Ca. Thiothrix phosphatis
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The phototrophic metabolic behaviour of Candidatus accumulibacter |
Carvalho et al. (2024). Water Research 259
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“Accumulibacter”
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Metagenomic insights into the mechanism for the rapid enrichment and high stability of Candidatus Brocadia facilitated by Fe(Ⅲ) |
Hu et al. (2024). Water Research 252
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From metagenomes to metabolism: Systematically assessing the metabolic flux feasibilities for “Candidatus Accumulibacter” species during anaerobic substrate uptake |
Páez-Watson et al. (2024). Water Research 250
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“Accumulibacter”
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Candidatus Accumulibacter use fermentation products for enhanced biological phosphorus removal |
Chen et al. (2023). Water Research 246
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Unraveling the structure and function of bacterioferritin in Candidatus Kuenenia stuttgartiensis: Iron storage sites maintain cellular iron homeostasis |
Wang et al. (2023). Water Research 238
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“Kuenenia stuttgartensis”
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CRISPR-Cas phage defense systems and prophages in Candidatus Accumulibacter |
Deng et al. (2023). Water Research 235
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“Accumulibacter”
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Oligotyping and metagenomics reveal distinct Candidatus Accumulibacter communities in side-stream versus conventional full-scale enhanced biological phosphorus removal (EBPR) systems |
Srinivasan et al. (2021). Water Research 206
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“Accumulibacter”
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Stoichiometric and kinetic characterization of an acid-tolerant ammonia oxidizer ‘Candidatus Nitrosoglobus’ |
Wang et al. (2021). Water Research 196
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Ca. Nitrosoglobus
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“Candidatus Accumulibacter delftensis”: A clade IC novel polyphosphate-accumulating organism without denitrifying activity on nitrate |
Rubio-Rincón et al. (2019). Water Research 161
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Ca. Accumulibacter delftensis
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