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Identification and characterization of o-xylene-degrading Rhodococcus spp. which were dominant species in the remediation of o-xylene-contaminated soils

机译:降解邻二甲苯的红球菌的鉴定与表征。在修复被二甲苯污染的土壤中占主导地位的物种

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摘要

Soils contaminated with o-xylene were more difficult to bioremediate than those contaminated with other BTEX hydrocarbons (benzene, toluene, ethylbenzene, m-xylene and p-xylene). In order to identify microorganisms responsible for o-xylene degradation in soil, microbial community structure analyses were carried out with two soil samples in the presence of o-xylene and mineral nutrients. In two different soil samples, Rhodococcus opacus became abundant. We were also able to isolate o-xylene degrading Rhodococcus species from these soil samples. A primer set was developed to specifically detect a cluster of this Rhodococcus group including isolated Rhodococcus strains, Rhodococcus opacus and Rhodococcus koreensis. The growth of this bacterial group in an o-xylene-contaminated soil was followed by competitive PCR (cPCR). The decrease in o-xylene clearly paralleled the growth of the Rhodococcus group.
机译:与被其他BTEX碳氢化合物(苯,甲苯,乙苯,间二甲苯和对二甲苯)污染的土壤相比,被邻二甲苯污染的土壤更难以生物修复。为了鉴定造成邻二甲苯降解的微生物,在邻二甲苯和矿物质养分存在的情况下,对两个土壤样品进行了微生物群落结构分析。在两个不同的土壤样品中,不透明红球菌变得丰富。我们还能够从这些土壤样品中分离出降解邻二甲苯的红球菌。开发了一套引物组以特异性检测该红球菌群的簇,包括分离的红球菌菌株,不透明红球菌和朝鲜红球菌。该细菌群在邻二甲苯污染的土壤中生长,然后进行竞争性PCR(cPCR)。邻二甲苯的减少明显与红球菌群的增长平行。

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