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首页> 外文期刊>Journal of Bioscience and Bioengineering >Characterization of novel &ITBacillus &ITstrain N31 from mariculture water capable of halophilic heterotrophic nitrification-aerobic denitrification
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Characterization of novel &ITBacillus &ITstrain N31 from mariculture water capable of halophilic heterotrophic nitrification-aerobic denitrification

机译:从嗜盐异养硝化的水皮水中的新型和Itstrain N31的表征嗜睡型硝化性硝化性硝化碳化水

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摘要

The development of an intensive aquaculture industry has been accompanied by increasing environmental impacts, especially nitrogen pollution. In this study, a novel halophilic bacterium capable of heterotrophic nitrification and aerobic denitrification was isolated from mariculture water and identified as Bacillus litoralis N31. The efficiency of ammonium, nitrite and nitrate removal by N31 were 86.3%, 89.3% and 89.4%, respectively, after a 48-h cultivation in sole N-source medium with initial nitrogen approximately 20 mg/L. However, ammonium was removed preferentially, and no obvious nitrite accumulated during the simultaneous nitrification and denitrification process in mixed N-source media. The existence of hao, napA and nirS genes further proved the heterotrophic nitrification-aerobic denitrification capability of N31. The optimal conditions for ammonium removal were 30 degrees C, initial pH 7.5-8.5, C/N ratio 5-20 and salinity 30-40 parts per thousand, and the nitrification rate of N31 increased with increasing initial NH4+-N from 10 to 250 mg/L. Biosecurity assessment with shrimp indicated that strain N31 could be applied in the marine aquaculture industry safely for culture water remediation and effluent treatment. (C) 2017, The Society for Biotechnology, Japan. All rights reserved.
机译:强化水产养殖业的发展伴随着增加环境影响,尤其是氮污染。在该研究中,从海水养水中分离出一种能够异养硝化和有氧脱氮的新型嗜盐细菌,并鉴定为Bacillus Literalis N31。在唯一的氮气培养的48小时培养之后,N31在初始氮气培养之后,N31的效率分别为86.3%,89.3%和89.4%,初始氮约20mg /升。然而,优先除去铵,并且在混合N-源介质中同时硝化和反硝化过程中累积的明显亚硝酸盐。 HaO,NaPa和Nirs基因的存在进一步证明了N31的异养硝化的无氧脱氮能力。铵去除的最佳条件为30℃,初始pH 7.5-8.5,C / N比5-20和盐度30-40份,N31的硝化速率随着10至250的初始NH4 + -N增加而增加。 mg / l。与虾的生物安全评估表明,菌株N31可以安全地应用于培养水处理和废水处理的海洋水产养殖业。 (c)2017年,日本生物技术协会。版权所有。

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