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红球菌属MK1菌株的特性及其在柴油污染土壤生物修复中的中试应用。

Characterization of the Rhodococcus sp. MK1 strain and its pilot application for bioremediation of diesel oil-contaminated soil.

作者信息

Kis Ágnes Erdeiné, Laczi Krisztián, Zsíros Szilvia, Kós Péter, Tengölics Roland, Bounedjoum Naila, Kovács Tamás, Rákhely Gábor, Perei Katalin

机构信息

1 Department of Biotechnology, University of Szeged , Szeged, Hungary.

2 Institute of Biophysics, Biological Research Centre Hungarian Academy of Sciences , Szeged, Hungary.

出版信息

Acta Microbiol Immunol Hung. 2017 Dec 1;64(4):463-482. doi: 10.1556/030.64.2017.037. Epub 2017 Dec 6.

Abstract

Petroleum hydrocarbons and derivatives are widespread contaminants in both aquifers and soil, their elimination is in the primary focus of environmental studies. Microorganisms are key components in biological removal of pollutants. Strains capable to utilize hydrocarbons usually appear at the contaminated sites, but their metabolic activities are often restricted by the lack of nutrients and/or they can only utilize one or two components of a mixture. We isolated a novel Rhodococcus sp. MK1 strain capable to degrade the components of diesel oil simultaneously. The draft genome of the strain was determined and besides the chromosome, the presence of one plasmid could be revealed. Numerous routes for oxidation of aliphatic and aromatic compounds were identified. The strain was tested in ex situ applications aiming to compare alternative solutions for microbial degradation of hydrocarbons. The results of bioaugmentation and biostimulation experiments clearly demonstrated that - in certain cases - the indigenous microbial community could be exploited for bioremediation of oil-contaminated soils. Biostimulation seems to be efficient for removal of aged contaminations at lower concentration range, whereas bioaugmentation is necessary for the treatment of freshly and highly polluted sites.

摘要

石油碳氢化合物及其衍生物是含水层和土壤中广泛存在的污染物,它们的去除是环境研究的主要重点。微生物是生物去除污染物的关键组成部分。能够利用碳氢化合物的菌株通常出现在受污染的地点,但其代谢活动往往受到营养物质缺乏的限制,并且/或者它们只能利用混合物中的一种或两种成分。我们分离出了一种新型的红球菌属MK1菌株,它能够同时降解柴油的成分。测定了该菌株的基因组草图,除了染色体外,还发现存在一个质粒。鉴定出了许多脂肪族和芳香族化合物的氧化途径。该菌株在异位应用中进行了测试,旨在比较碳氢化合物微生物降解的替代解决方案。生物强化和生物刺激实验的结果清楚地表明,在某些情况下,可以利用本地微生物群落对受石油污染的土壤进行生物修复。生物刺激对于在较低浓度范围内去除老化污染物似乎是有效的,而生物强化对于处理新的和高度污染的场地是必要的。

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