利用变形杆菌从尼日利亚石油公司卡诺州油库溢油污染土壤中分离鉴定蒽

U. Shehu, F. A. Ahmad, F. Yusuf, F. Muhammad, H. Yakasai
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引用次数: 4

摘要

微生物降解多环芳烃(PAHs)如蒽,是一种高效、及时、经济的污染环境生物修复方法。本研究旨在分离、鉴定和表征具有降解和利用蒽作为唯一碳源潜力的细菌。采用连续稀释(10-1-10-6)的无机盐培养基(MSM)富集方法,从卡诺石油泄漏污染现场分离出一株细菌。研究了温度和pH对含蒽无机盐介质(MSM)的影响。基于16S rRNA部分基因序列分析,对分离物进行形态、生化和分子鉴定。本研究分离物的形态和显微检查表明,分离物分别为奶油色、运动、革兰氏阴性、短棒状和不形成孢子。分离物的生化试验发现这些参数(甲基红、过氧化氢酶、活力、吲哚和脲酶)呈阳性,而(柠檬酸盐和氧化酶)呈阴性。16S rRNA序列分析及邻居连接树和1000陷阱的系统发育分析表明,该分离物与加入号为MW766369的Proteus vulgaris亲缘关系较近(在同一进化支上)。通过研究温度和pH的影响对其进行了表征,分离得到的细菌在35℃和pH 7.5的条件下效果最佳。该菌株有望用于多环芳烃污染环境的生物修复。
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Isolation and Identification of Anthracene Utilizing Proteus vulgaris from Oil Spill Contaminated Soil at NNPC Depot Kano State Nigeria
Microbial biodegradation of polycyclic aromatic hydrocarbons (PAHs) like Anthracene, represent an efficient, time, and cost-effective way for bioremediation of the polluted environment. This study was aimed at isolating, identifying and characterizing bacteria with potential to degrade and utilize anthracene as a sole carbon source. A bacteria was isolated from oil spilled contaminated site located in Kano, using an enrichment method on mineral salt media (MSM) following serial dilution (10-1-10-6). Characterization was done by studying the effects of temperature and pH on mineral salt media (MSM) containing anthracene. The isolate was then identified morphologically, biochemically and molecularly based on 16S rRNA partial gene sequence analysis. The morphological and microscopic examination of the isolate from this research shows that the isolate was creamy in color, motile, gram negative, short rod and non-spore forming respectively. The biochemical test of the isolate was found to be positive for these parameters (methyl red, catalase, motility, indole and urease) and negative for (citrate and oxidase). The 16S rRNA sequence and Phylogenetic analysis using neighbor joining tree and 1000 boos trap revealed that, the isolate was closely related (on the same clade) to Proteus vulgaris with accession number MW766369. Characterization was done by studying the effects of temperature and pH. The isolated bacterium was optimal at a temperature of 35ºC and pH 7.5. This isolate is a promising strain that could be used in bioremediation of polycylic aromatic hydrocarbons polluted environment.
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