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Hydrocarbon Biodegrading Potentials of a Proteus vulgaris Strain Isolated from Fish Samples | Science Publications

机译:鱼样品中的变形杆菌变形菌的烃类生物降解潜能科学出版物

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> A Proteus vulgaris bacterium SR-1 was isolated from a freshly killed fish sample collected close to the point of crude oil spill in the Niger Delta region, Nigeria. Problem statement: The application of native bacterial species in bioremediation processes has long been desired, because they would be cost effective and efficient in terms of acclimation time. The ability to isolate high numbers of certain oil-degrading microorganisms from oil-polluted environment is evidence that these microorganisms are the active degraders of that environment. In this study, we reported the potential of a candidate bacterium- Proteus vulgaris SR-1 in the biodegradation of Bonny light crude oil, diesel and kerosene. Approach: To screen for oil degrading capability, the bacterium was cultivated in Minimal Salts Medium (MSM) supplemented with 1% (v/v) sterile Bonny Light Crude Oil (BLCO). Oil degradation was monitored by measurement of turbidity using a spectrophotometer and the pH, total viable counts of the culture fluids were determined at time intervals as biodegradation indices. The ability of strain to degrade diesel and kerosene oils was also studied while the level of used hydrocarbon degradation was determined using the gravimetric analysis. The bacterium was screened for presence of Plasmid DNA and implication of plasmid in hydrocarbon degradation was investigated. Results: (1) The bacterium utilize hydrocarbons as sole source of carbon and it biodegraded Bonny light crude oil, kerosene and diesel media by as much as 78, 79 and 73.8% respectively, in the presence of 1.0% NaCl (w/v) after 96 h. The total viable count after 96, 120 and 168 h of biodegradation of the test hydrocarbons range between 6.2 and 9.1 log10 c.f.u mL-1, (2) The results showed that increasing NaCl concentration in water had decreasing effect on hydrocarbon degradation. (3) pH of media decreased from 7.0 to between 3.29 and 5.02 during the reaction period while growth increases. (4) Plasmid analysis revealed the presence of a plasmid of approximately 9.1 kb in the bacterial isolate. Conclusion/Recommendations: The results of this study showed that Proteus vulgaris SR-1 is a highly adapted bacterium with great potential to biodegrade hydrocarbons and the genes responsible for hydrocarbons biodegradation could be located on the (9.1 kb) plasmid it harbors.
机译: >从尼日利亚尼日尔三角洲地区原油泄漏点附近采集的新鲜杀死的鱼样品中分离出一种普通变形杆菌细菌SR-1。 问题陈述:长期以来,人们一直希望在生物修复过程中应用天然细菌,因为它们在适应时间方面具有成本效益和效率。从受油污染的环境中分离出大量的某些可降解石油的微生物的能力证明了这些微生物是该环境的活性降解剂。在这项研究中,我们报告了一种潜在的细菌-Proteus vulgaris SR-1在Bonny轻质原油,柴油和煤油的生物降解中的潜力。 方法:为了筛选油的降解能力,将细菌在补充有1%(v / v)无菌Bonny轻质原油(BLCO)的最小盐培养基(MSM)中进行培养。通过使用分光光度计测量浊度来监测油的降解,并以一定的时间间隔测定pH值,确定培养液的总存活数作为生物降解指数。还研究了菌株降解柴油和煤油的能力,同时使用重量分析法确定了所使用的烃降解水平。筛选细菌中质粒DNA的存在,并研究质粒在烃降解中的意义。 结果:(1)该细菌利用碳氢化合物作为唯一碳源,在1.0的存在下,可将邦尼轻质原油,煤油和柴油介质分别生物降解78%,79%和73.8%。 96小时后,%NaCl(w / v)。在96、120和168 h的测试碳氢化合物生物降解后,总存活数在6.2和9.1 log 10 cfu mL -1 之间,(2)结果表明:水中NaCl浓度的增加对烃降解的影响减小。 (3)在反应期间,培养基的pH从7.0降低到3.29至5.02,而生长增加。 (4)质粒分析表明在细菌分离物中存在约9.1kb的质粒。 结论/建议:该研究结果表明,寻常变形杆菌 SR-1是一种高度适应的细菌,具有生物降解碳氢化合物的巨大潜力,并且负责碳氢化合物生物降解的基因可能是位于它所携带的(9.1 kb)质粒上。

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