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首页> 外文期刊>Microbial Biotechnology >First evidence of mineralization of petroleum asphaltenes by a strain of Neosartorya fischeri.
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First evidence of mineralization of petroleum asphaltenes by a strain of Neosartorya fischeri.

机译:Neosartorya fischeri菌株使石油沥青质矿化的第一个证据。

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A fungal strain isolated from a microbial consortium growing in a natural asphalt lake is able to grow in purified asphaltenes as the only source of carbon and energy. The asphaltenes were rigorously purified in order to avoid contamination from other petroleum fractions. In addition, most of petroporphyrins were removed. The 18S rRNA and beta-tubulin genomic sequences, as well as some morphologic characteristics, indicate that the isolate is Neosartorya fischeri. After 11 weeks of growth, the fungus is able to metabolize 15.5% of the asphaltenic carbon, including 13.2% transformed to CO(2) . In a medium containing asphaltenes as the sole source of carbon and energy, the fungal isolate produces extracellular laccase activity, which is not detected when the fungus grow in a rich medium. The results obtained in this work clearly demonstrate that there are microorganisms able to metabolize and mineralize asphaltenes, which is considered the most recalcitrant petroleum fraction. 2011 The Authors; Journal compilation 2011 Society for Applied Microbiology and Blackwell Publishing Ltd.Registry Number/Name of Substance 0 (Hydrocarbons). 0 (Petroleum). 8052-42-4 (asphalt).
机译:从在天然沥青湖中生长的微生物群落分离出的真菌菌株能够在纯净的沥青质中生长,这是唯一的碳和能量来源。沥青质经过严格纯化,以避免受到其他石油馏分的污染。另外,大部分卟啉被去除。 18S rRNA和β-微管蛋白基因组序列,以及一些形态特征,表明该分离株是费氏新孢子虫。生长11周后,真菌能够代谢15.5%的沥青质碳,其中13.2%转化为CO(2)。在含有沥青质作为唯一碳和能量来源的培养基中,真菌分离物产生细胞外漆酶活性,当真菌在丰富的培养基中生长时无法检测到。这项工作获得的结果清楚地表明,有些微生物能够代谢和矿化沥青质,这被认为是最顽强的石油馏分。 2011作者;期刊汇编,2011年应用微生物学协会和Blackwell Publishing Ltd.注册编号/物质名称0(烃)。 0(石油)。 8052-42-4(沥青)。

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