首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Isolation and characterization of Rhodococcus sp. NB5 capable of degrading a high concentration of nitrobenzene.
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Isolation and characterization of Rhodococcus sp. NB5 capable of degrading a high concentration of nitrobenzene.

机译:红球菌的分离和鉴定。 NB5能够降解高浓度的硝基苯。

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An efficient nitrobenzene degrading bacterium strain NB5, which was able to utilize nitrobenzene as a sole source of carbon, nitrogen and energy under aerobic condition, was isolated from activated sludge in an oil refinery at Hangzhou, China. Based on phenotypic features, 16S rDNA gene sequencing and G + C content analysis, strain NB5 was identified as Rhodococcus sp. NB5. Nitrobenzene degradation experiments using high performance liquid chromatograph (HPLC) showed that strain NB5 could tolerate a high nitrobenzene concentration and completely degrade nitrobenzene with initial concentration ranging from 100 mg . l(-1) to 1000 mg . l(-1) within 144 h. The optimal degradation and cell growth were observed at 30 degrees C, pH 7.0. The addition of second nitrogen source (0.1%) such as urea, peptone, yeast extract and beef extract generally enhanced degradation of nitrobenzene. Rhodococcus sp. strain NB5 could be an excellent candidate for biotreatment of industrial wastewater containing high concentration of nitrobenzene.
机译:在中国杭州的一家炼油厂,从活性污泥中分离出一种高效的硝基苯降解细菌菌株NB5,该菌株能够在有氧条件下利用硝基苯作为碳,氮和能量的唯一来源。根据表型特征,16S rDNA基因测序和G + C含量分析,菌株NB5被鉴定为红球菌。 NB5。使用高效液相色谱仪(HPLC)进行的硝基苯降解实验表明,菌株NB5可以耐受较高的硝基苯浓度,并完全降解初始浓度为100 mg的硝基苯。 l(-1)至1000毫克。 144小时内的l(-1)。在30摄氏度,pH 7.0下观察到最佳降解和细胞生长。添加第二种氮源(0.1%),例如尿素,蛋白ept,酵母提取物和牛肉提取物通常会增强硝基苯的降解。红球菌NB5菌株可能是生物处理含高浓度硝基苯的工业废水的极佳候选者。

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