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Degradation of a Mixture of Hydrocarbons Gasoline and Diesel Oil Additives by Rhodococcus aetherivorans and Rhodococcus wratislaviensis

机译:Aetherivorans和Ratidococcus wratislaviensis降解烃汽油和柴油添加剂的混合物

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摘要

Two strains, identified as Rhodococcus wratislaviensis IFP 2016 and Rhodococcus aetherivorans IFP 2017, were isolated from a microbial consortium that degraded 15 petroleum compounds or additives when provided in a mixture containing 16 compounds (benzene, toluene, ethylbenzene, m-xylene, p-xylene, o-xylene, octane, hexadecane, 2,2,4-trimethylpentane [isooctane], cyclohexane, cyclohexanol, naphthalene, methyl tert-butyl ether [MTBE], ethyl tert-butyl ether [ETBE], tert-butyl alcohol [TBA], and 2-ethylhexyl nitrate [2-EHN]). The strains had broad degradation capacities toward the compounds, including the more recalcitrant ones, MTBE, ETBE, isooctane, cyclohexane, and 2-EHN. R. wratislaviensis IFP 2016 degraded and mineralized to different extents 11 of the compounds when provided individually, sometimes requiring 2,2,4,4,6,8,8-heptamethylnonane (HMN) as a cosolvent. R. aetherivorans IFP 2017 degraded a reduced spectrum of substrates. The coculture of the two strains degraded completely 13 compounds, isooctane and 2-EHN were partially degraded (30% and 73%, respectively), and only TBA was not degraded. Significant MTBE and ETBE degradation rates, 14.3 and 116.1 μmol of ether degraded h−1 g−1 (dry weight), respectively, were measured for R. aetherivorans IFP 2017. The presence of benzene, toluene, ethylbenzene, and xylenes (BTEXs) had a detrimental effect on ETBE and MTBE biodegradation, whereas octane had a positive effect on the MTBE biodegradation by R. wratislaviensis IFP 2016. BTEXs had either beneficial or detrimental effects on their own degradation by R. wratislaviensis IFP 2016. Potential genes involved in hydrocarbon degradation in the two strains were identified and partially sequenced.
机译:从微生物财团中分离出两种菌株,鉴定为wratislaviensis IFP 2016和atherivorans IFP 2017,从含有16种化合物(苯,甲苯,乙苯,间二甲苯,对二甲苯,对二甲苯)的混合物中降解的15种石油化合物或添加剂的微生物菌群中分离出来。 ,邻二甲苯,辛烷,十六烷,2,2,4-三甲基戊烷[异辛烷],环己烷,环己醇,萘,甲基叔丁基醚[MTBE],乙基叔丁基醚[ETBE],叔丁醇[TBA] ]和硝酸2-乙基己基酯[2-EHN])。该菌株对这些化合物具有广泛的降解能力,包括难降解的MTBE,ETBE,异辛烷,环己烷和2-EHN。当单独提供时,wratislaviensis IFP 2016会降解和矿化到不同程度的11种化合物,有时需要2,2,4,4,6,8,8-七甲基壬烷(HMN)作为助溶剂。 Rether aetherivorans IFP 2017降低了底物的光谱范围。这两个菌株的共培养完全降解了13种化合物,异辛烷和2-EHN被部分降解(分别为30%和73%),只有TBA未被降解。测量了R. aetherivorans IFP 2017的MTBE和ETBE的显着降解率,分别为14.3和116.1μmol醚降解的h -1 g -1 (干重)。苯,甲苯,乙苯和二甲苯(BTEXs)的存在对ETBE和MTBE的生物降解有不利影响,而辛烷对wratislaviensis IFP 2016的MTBE的生物降解有积极影响。BTEXs对其有害或不利影响R. wratislaviensis IFP 2016自行降解。鉴定了两个菌株中涉及烃降解的潜在基因并进行了部分测序。

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