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从总石油烃污染沉积物中分离并鉴定一种烃分解细菌富集培养物:生物基工艺中生物强化的潜在候选物

Isolation and characterization of a hydrocarbonoclastic bacterial enrichment from total petroleum hydrocarbon contaminated sediments: potential candidates for bioaugmentation in bio-based processes.

作者信息

Di Gregorio Simona, Siracusa Giovanna, Becarelli Simone, Mariotti Lorenzo, Gentini Alessandro, Lorenzi Roberto

机构信息

Department of Biology, University of Pisa, 56126, Pisa, Italy.

Teseco Spa, Via Carlo Ludovico Ragghianti 12, 56121, Pisa, Italy.

出版信息

Environ Sci Pollut Res Int. 2016 Jun;23(11):10587-10594. doi: 10.1007/s11356-015-5944-y. Epub 2016 Jan 12.

Abstract

Seven hydrocarbonoclastic new bacterial isolates were isolated from dredged sediments of a river estuary in Italy. The sediments were contaminated by shipyard activities since decades, mainly ascribable to the exploitation of diesel oil as the fuel for recreational and commercial navigation of watercrafts. The bacterial isolates were able to utilize diesel oil as sole carbon source. Their metabolic capacities were evaluated by GC-MS analysis, with reference to the depletion of both the normal and branched alkanes, the nC18 fatty acid methyl ester and the unresolved complex mixture of organic compounds. They were taxonomically identified as different species of Stenotrophomonas and Pseudomonas spp. by the combination of amplified ribosomal DNA restriction analysis (ARDRA) and repetitive sequence-based PCR (REP-PCR) analysis. The metabolic activities of interest were analyzed both in relation to the single bacterial strains and to the combination of the latter as a multibacterial species system. After 6 days of incubation in mineral medium with diesel oil as sole carbon source, the Stenotrophomonas sp. M1 strain depleted 43-46 % of Cn-alkane from C28 up to C30, 70 % of the nC18 fatty acid methyl ester and the 46 % of the unresolved complex mixture of organic compounds. On the other hand, the Pseudomonas sp. NM1 strain depleted the 76 % of the nC18 fatty acid methyl ester, the 50 % of the unresolved complex mixture of organic compounds. The bacterial multispecies system was able to completely deplete Cn-alkane from C28 up to C30 and to deplete the 95 % of the unresolved complex mixture of organic compounds. The isolates, either as single strains and as a bacterial multispecies system, were proposed as candidates for bioaugmentation in bio-based processes for the decontamination of dredged sediments.

摘要

从意大利某河口的疏浚沉积物中分离出七株新的烃类分解细菌。几十年来,这些沉积物一直受到造船厂活动的污染,主要是由于将柴油用作游艇和商船娱乐及商业航行的燃料所致。这些细菌分离株能够将柴油作为唯一碳源利用。通过气相色谱 - 质谱分析(GC-MS)评估它们的代谢能力,参考正构和支链烷烃、nC18脂肪酸甲酯以及未解析有机化合物复杂混合物的消耗情况。通过扩增核糖体DNA限制性分析(ARDRA)和基于重复序列的PCR(REP-PCR)分析相结合,将它们分类鉴定为嗜麦芽窄食单胞菌和假单胞菌属的不同物种。对感兴趣的代谢活性分别针对单个细菌菌株以及作为多菌种系统的后者组合进行了分析。在以柴油作为唯一碳源的矿物培养基中培养6天后,嗜麦芽窄食单胞菌M1菌株消耗了从C28到C30的43 - 46%的正构烷烃、70%的nC18脂肪酸甲酯以及46%的未解析有机化合物复杂混合物。另一方面,假单胞菌NM1菌株消耗了76%的nC18脂肪酸甲酯、50%的未解析有机化合物复杂混合物。细菌多菌种系统能够完全消耗从C28到C30的正构烷烃,并消耗95%的未解析有机化合物复杂混合物。这些分离株,无论是作为单个菌株还是作为细菌多菌种系统,都被提议作为生物基过程中疏浚沉积物去污生物强化的候选菌株。

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