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首页> 外文期刊>International Biodeterioration & Biodegradation >Pyrene metabolism metabolism by the novel bacterial strains Burkholderia fungorum (T3A13001) and Caulobacter sp (T2A12002) isolated from an oil-polluted site in the Arabian Gulf
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Pyrene metabolism metabolism by the novel bacterial strains Burkholderia fungorum (T3A13001) and Caulobacter sp (T2A12002) isolated from an oil-polluted site in the Arabian Gulf

机译:从阿拉伯海湾一个油污场所分离出的新型细菌菌株Burkholderia fungorum(T3A13001)和Caulobacter sp(T2A12002)进行metabolism代谢

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摘要

The novel bacterial strains Burkholderia fungorum T3A13001 and Caulobacter sp T2A12002, which were previously isolated from oil-contaminated sites and identified via 16S RNA sequences, were tested for their hydrocarbon degrading efficiency. Media spiked with 100 ppm pyrene were incubated at 25 degrees C and 37 degrees C. The bacterial isolates' pyrene-degrading capability was assessed in acidic (pH 5.0) and alkaline (pH 9.0) media. Caulobacter sp degraded 21% and 24% of the pyrene at pH 9.0 and 5.0, respectively; thus, the strain was more active at pH 5.0 than pH 9.0. B. fungorum was active in a wide range of pH values, because it biodegraded 59%-62% of the provided pyrene in acidic and alkaline media. Caulobacter sp degraded 35%-36% of the provided pyrene in cultures at 37 degrees C and 25 degrees C. B. fungorum degraded 56% and 59% of the provided pyrene at 37 degrees C and 25 degrees C, respectively. Given that B. fungorum biodegraded over the half-life of the initial 100 ppm pyrene in the cultures, the strain may be suitable for bioremediation of high molecular weight PAHs. The study provides important insight into possible PAH biodegradation and bioremediation of hydrocarbon-polluted sites using novel bacterial strains. (C) 2016 Elsevier Ltd. All rights reserved.
机译:测试了先前从油污染位点分离并通过16S RNA序列鉴定的新型细菌菌株Burkholderia fungorum T3A13001和Caulobacter sp T2A12002的烃降解效率。将掺有100 ppm pyr的培养基在25摄氏度和37摄氏度下孵育。在酸性(pH 5.0)和碱性(pH 9.0)培养基中评估细菌分离物的pyr降解能力。杆状杆菌在pH 9.0和5.0时分别降解了21%和24%的;。因此,该菌株在pH 5.0比pH 9.0更具活性。真菌杆菌在很宽的pH值范围内均具有活性,因为它在酸性和碱性介质中可生物降解所提供的59的59%-62%。在37℃和25℃下,杆状杆菌sp降解了所提供的pyr的35%-36%。真菌在37℃和25℃下真菌分别降解了所提供的pyr的56%和59%。鉴于在培养物中最初100 ppm的pyr的半衰期中已对真菌芽孢杆菌进行了生物降解,该菌株可能适用于高分子量PAHs的生物修复。该研究为使用新型细菌菌株可能的PAH生物降解和烃污染位点的生物修复提供了重要的见识。 (C)2016 Elsevier Ltd.保留所有权利。

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