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首页> 外文期刊>Biotechnology Advances: An International Review Journal >Polycyclic aromatic hydrocarbon degradation and biosurfactant production by a newly isolated Pseudomonas sp strain from used motor oil-contaminated soil
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Polycyclic aromatic hydrocarbon degradation and biosurfactant production by a newly isolated Pseudomonas sp strain from used motor oil-contaminated soil

机译:多环芳烃降解和生物素质剂通过来自二手汽车污染土壤的新分离的假鼠SP菌株生产

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摘要

The aim of this study was to isolate and characterize a newly isolated bacterium, designated strain W10, a polycyclic aromatic hydrocarbon (PAHs) degrader and biosurfactant producer, belonged to Pseudomonas genus and closely related to Pseudomonas aeruginosa, with the 16 rRNA gene sequence similarity of 99.1%. Based on GC-MS analyses, it degraded around 80% of phenanthrene, used as the sole carbon and energy source, at an initial concentration of 200 mg l(-1), after 30 days of incubation at 37 degrees C and 180 rpm, reducing the surface tension (ST) from 56.1 to 42 mN m(-1) after 4 days of incubation. Furthermore, strain W10 utilized about 10%, 20%, 90%, and 99% of hexadecane (C16), pyrene, fluoranthene, and crude oil, respectively, after 30 days of incubation at 37 C and 180 rpm. During the growth of strain W10 on phenanthrene and fluoranthene, some metabolites were identified, supporting the biodegradation pathways of the two PAHs. Interestingly, strain W10 showed also a significant potential to produce surface-active agents reducing the surface tension to 32 mN m(-1) and reaching a production around 2 g l(-1) after 48 h of incubation, in the presence of olive oil (1%,v/v) as substrate, at 37 degrees C and 180 rpm. Its biosurfactant, namely BSW10, showed an interesting emulsification activity and a high stability over a wide range of salinity (0-150 g l(-1)), temperature (0-100 degrees C), pH (2-12) and thus a promising abilities in used motor oil and crude oil removal from contaminated soils. Overall, these results provide evidence that strain W10 and its biosurfactant (BSW10) could be potential candidates for further bioremediation applications. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本研究的目的是分离和表征新分离的细菌,指定的菌株W10,多环芳烃(PAH)降解剂和生物活性剂的生产者,属于假单胞菌属,与铜绿假单胞菌密切相关,具有16 rRNA基因序列相似性99.1%。基于GC-MS分析,它在初始浓度为200mg L(-1)的唯一浓度为200mg L(-1)的唯一碳和能量源中降低了约80%的菲苯乙烯。在37℃和180rpm的30天后,在孵育4天后将表面张力(ST)从56.1至42mN m(-1)减少。此外,在37℃和180rpm温育30天后,菌株W10分别使用约10%,20%,90%和99%的十六烷(C16),芘,氟,粗油。在膦酮和氟的菌株W10生长期间,鉴定了一些代谢物,支持两种PAHs的生物降解途径。有趣的是,菌株W10还显示出产生表面活性剂的显着潜力,从而将表面张力降低至32mN m(-1)并在橄榄油的存在下在48小时内达到约2gl(-1)的产生(1%,v / v)为底物,37摄氏度和180rpm。其生物活性剂即bsw10,在宽范围内(0-150g(-1)),温度(0-100℃),pH(2-12)并因此是一个有趣的乳化活性和高稳定性。采用汽车油的有希望的能力和来自受污染的土壤的原油清除。总体而言,这些结果提供了菌株W10及其生物活性剂(BSW10)的证据可以是进一步生物化应用的潜在候选者。 (c)2017 Elsevier Ltd.保留所有权利。

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