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Enrichment Using an Up-flow Column Reactor and Community Structure of Marine Anammox Bacteria from Coastal Sediment

机译:利用上流柱反应器进行富集和沿海沉积物海洋厌氧细菌的群落结构

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We established an enrichment culture of marine anaerobic ammonium oxidation (anammox) bacteria using an up-flow column reactor fed with artificial sea water supplemented with nitrogen and minerals and inoculated with coastal surface sediment collected from Hiroshima Bay. After 2 months of reactor operation, simultaneous removal of NH4+ and NO2- was observed, suggesting that an anammox reaction was proceeding. A total nitrogen removal rate of 2.17 g-N L-1 day(-1) was attained on day 594 while the nitrogen loading rate was 3.33 g-N L-1 day(-1). Phylogenetic analysis revealed that at least two dominant "Candidatus Scalindua" species were present in this reactor. Moreover, many uncultured bacteria and archaea, including candidate division or ammonia-oxidizing archaea, were present. Fluorescence in situ hybridization (FISH) revealed that anammox bacteria accounted for 85.5 +/- 4.5% of the total bacteria at day 393. We also designed two oligonucleotide probes specific to each dominant "Candidatus Scalindua" species. A simultaneous FISH analysis using both probes showed that two different "Candidatus Scalindua" species were clearly recognizable and coexisted during reactor operation, although there was some variation in their abundance. The marine anammox bacteria enriched in this study have potential applications to the treatment of industrial wastewater containing high levels of ammonium and salt.
机译:我们使用上流柱反应器建立了海水厌氧铵氧化细菌的富集培养,该反应器中注入了人工海水,其中补充了氮和矿物质,并接种了从广岛湾收集的沿海表层沉积物。反应器运行2个月后,观察到同时去除了NH4 +和NO2-,这表明厌氧氨氧化反应正在进行中。在第594天,总氮去除率达到2.17 g-N L-1天(-1),而氮负荷率是3.33 g-N L-1天(-1)。系统发育分析表明,该反应器中至少存在两种​​优势“ Candidatus Scalindua”。而且,存在许多未培养的细菌和古细菌,包括候选分裂或氨氧化古细菌。荧光原位杂交(FISH)表明,在第393天,厌氧氨氧化菌占细菌总数的85.5 +/- 4.5%。我们还设计了两种对每个优势“斯卡宾达杜斯”物种有特异性的寡核苷酸探针。同时使用这两种探针进行的FISH分析表明,尽管在反应堆的数量上存在一些差异,但在反应堆运行期间,两种不同的“ Candidatus Scalindua”物种可以清晰地识别并共存。在这项研究中富集的海洋厌氧细菌具有潜在的应用价值,可处理含有高含量铵盐的工业废水。

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