[Isolation and nitrogen transformation characterization of a moderately halophilic nitrification-aerobic denitrification strain Halomonas sp. 5505].

Q4 Biochemistry, Genetics and Molecular Biology
Zhuobin Xie, Yun Wang, Gangqiang Jiang, Yuwei Li, Wenchang Li, Yifan Liu, Zhangxiu Wu, Yuanyuan Huang, Shukun Tang
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引用次数: 0

Abstract

The biological nitrogen removal technology utilizing heterotrophic nitrification-aerobic denitrification (HN-AD) bacteria has shown effectiveness in wastewater treatment. However, the nitrogen removal efficiency of HN-AD bacteria significantly decreases as the salinity increases. To tackle the challenge of treating high-salt and high-nitrogen wastewater, we isolated a moderately halophilic HN-AD strain 5505 from a salt lake in Xinjiang. The strain was identified based on morphological, physiological, and biochemical characteristics and the 16S rRNA gene sequence. Single-factor experiments were carried out with NH4+-N, NO3--N, and NO2--N as sole or mixed nitrogen sources to study the nitrifying effect, denitrifying effect, and nitrogen metabolism pathway of the strain. The strain was identified as Halomonas sp.. It can grow in the presence of 1%-25% (W/V) NaCl and exhibited efficient nitrogen removal ability in the presence of 3%-8% NaCl. At the optimal NaCl concentration (8%), the strain showed the NH4+-N, NO3--N and NO2--N removal rates of 100.0%, 94.11% and 74.43%, respectively. Strain 5505 removed inorganic nitrogen mainly by assimilation, which accounted for over 62.68% of total nitrogen removal. In the presence of mixed nitrogen sources, strain 5505 showed a preference for utilizing ammonia, with a potential HN-AD pathway of NH4+→NH2OH→NO2-→NO3-→NO2-→NO/N2O/N2. The findings provide efficient salt-tolerant bacterial resources, enhance our understanding of biological nitrogen removal, and contribute to the nitrogen removal efficiency improvement in the treatment of high-salt and high-nitrogen wastewater.

[中等嗜盐硝化-好氧反硝化菌株Halomonas sp. 5505的分离及氮转化特性]。
利用异养硝化-好氧反硝化(HN-AD)菌的生物脱氮技术在污水处理中显示出了良好的效果。但随着盐度的增加,HN-AD菌的脱氮效率显著降低。为解决高盐高氮废水处理的难题,从新疆某盐湖中分离出一株中等嗜盐性HN-AD菌株5505。根据形态学、生理生化特征和16S rRNA基因序列对菌株进行鉴定。以NH4+-N、NO3——N和NO2——N为单一或混合氮源进行单因素试验,研究菌株的硝化效果、反硝化效果和氮代谢途径。菌株鉴定为Halomonas sp.。在NaCl浓度为1% ~ 25% (W/V)的条件下生长,在NaCl浓度为3% ~ 8%的条件下表现出较好的脱氮能力。在最佳NaCl浓度为8%时,菌株对NH4+-N、NO3——N和NO2——N的去除率分别为100.0%、94.11%和74.43%。菌株5505主要通过同化去除无机氮,占总氮去除量的62.68%以上。在混合氮源条件下,菌株5505表现出对氨的偏好,其潜在的HN-AD途径为NH4+→NH2OH→NO2-→NO3-→NO2-→NO/N2O/N2。该研究结果提供了高效的耐盐细菌资源,增强了我们对生物脱氮的认识,有助于提高高盐高氮废水处理中的脱氮效率。
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来源期刊
Sheng wu gong cheng xue bao = Chinese journal of biotechnology
Sheng wu gong cheng xue bao = Chinese journal of biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
1.50
自引率
0.00%
发文量
298
期刊介绍: Chinese Journal of Biotechnology (Chinese edition) , sponsored by the Institute of Microbiology, Chinese Academy of Sciences and the Chinese Society for Microbiology, is a peer-reviewed international journal. The journal is cited by many scientific databases , such as Chemical Abstract (CA), Biology Abstract (BA), MEDLINE, Russian Digest , Chinese Scientific Citation Index (CSCI), Chinese Journal Citation Report (CJCR), and Chinese Academic Journal (CD version). The Journal publishes new discoveries, techniques and developments in genetic engineering, cell engineering, enzyme engineering, biochemical engineering, tissue engineering, bioinformatics, biochips and other fields of biotechnology.
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