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首页> 外文期刊>Journal of environmental biology >Characterization of a novel heterotrophic nitrifying and aerobically denitrifying bacterium, Halomonas sp. Z8, as a potential bioagent for wastewater treatment
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Characterization of a novel heterotrophic nitrifying and aerobically denitrifying bacterium, Halomonas sp. Z8, as a potential bioagent for wastewater treatment

机译:新型异养硝化和有氧含氮细菌的表征,Halomonas Sp。 Z8,作为废水处理的潜在生物制造

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Aim: The aim of the present study was to identify and characterize the functions of key microbes mediating nitrification.Methodology : After sampling the biofilm from a submerged biofilter in a marine aquaculture system, selective media were used to isolate microbial strains involved in nitrification. Isolates were identified using physiological and biochemical assays and sequencing of 16S rRNA gene. Nitrogen removal under different conditions was characterized. Nitrogen removal pathway was characterized by a N-15 tracer experiment. Representation of key microbes in the biolfim was characterized by metagenomics analysis.Results : Single-factor tests showed that Halomonas sp. strain Z8 exhibited good heterotrophic nitrification and aerobic denitrification abilities, with maximum NH4+-N, NO2--N and No-3(-)-N removal rates of 2.37, 1.26 and 1.7 mg N l(-1) hr(-1), respectively. The N-15 isotope tracer experiment confirmed the aerobic nitrogen removal pathway of strain Z8. Average NO, removal efficiencies were all above 80% in an aerated moving bed bioreactor inoculated with strain Z8 and employed to treat synthetic marine aquaculture wastewater. Metagenomic microbial community analysis revealed that Halomonas sp. Z8 was one of the dominant taxa at genus level, suggesting a vital role in removing nitrate from bioreactor.Interpretation : The results of the present study indicate the potential of Halomonas sp. ZB for treating wastewater in marine re-circulating aquaculture systems.
机译:目的:目前研究的目的是识别和表征亚硝化的关键微生物的功能。方法:在海洋水产养殖系统中从浸没的生物过滤器取样生物膜后,使用选择性培养基分离硝化的微生物菌株。使用生理和生物化学测定和16S rRNA基因的测序鉴定分离物。特征在于不同条件下的氮去除。通过N-15示踪剂实验表征了氮去除途径。通过Metagenomics分析表征Biolfim中的关键微生物的表示。结果:单因素测试显示Halomonas SP。菌株Z8表现出良好的异养硝化和有氧脱氮能力,最大NH4 + -N,NO2-N和NO-3( - ) - N去除率为2.37,1.26和1.7mg N L(-1)HR(-1) , 分别。 N-15同位素示踪试验证实了菌株Z8的有氧氮去除途径。平均否,除去效率在菌株Z8接种的充气移动床生物反应器中,除去效率全部80%,并用于治疗合成海洋水产养殖废水。 Metagenomic微生物群落分析显示Halomonas sp。 Z8是属属级别的主要素制之一,表明从生物反应器中除去硝酸盐的重要作用。解释:本研究的结果表明Halomonas SP的潜力。用于处理海洋重新循环水产养殖系统中的废水的ZB。

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