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首页> 外文期刊>Journal of applied microbiology >Enhanced biodegradation of crude oil in soil by a developed bacterial consortium and indigenous plant growth promoting bacteria
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Enhanced biodegradation of crude oil in soil by a developed bacterial consortium and indigenous plant growth promoting bacteria

机译:通过发达的细菌联盟和土着植物生长促进细菌的土壤中原油的生物降解

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摘要

Aims This study aimed to develop an efficient, cost-effective and eco-friendly bacterial consortium to degrade petroleum sludge. Methods and Results Four bacterial strains belonging to generaAcinetobacterandPseudomonaswere selected to constitute three different consortia based on their initial concentration. The highest degradation rate (78%) of 1% (v/v) crude oil after 4 weeks of incubation was recorded when the concentration of biosurfactant (BS) producing isolate was high. Genes, such asalkB, almA,cyp153,pah-rhdGN, nah, phnACandcat23were detected using the polymerase chain reaction method and their induction levels were optimal at pH 7 center dot 0. A crude oil sludge was artificially constituted, and its bacterial composition was investigated using 16S rRNA gene amplicon sequencing. The results showed that the soil bacterial community was dominated by plant growth-promoting bacteria (PGPB) after crude oil treatment. Conclusions Our findings indicate the decontamination of the crude oil contaminated soil was more effective in the presence of both the constituted consortium and PGPB compared to the presence of PGPB alone. Significance and Impact of the Study This study showed that the PGPB (Taibaiella) present in petroleum uncontaminated soil can promote the soil decontamination. The addition of both efficient hydrocarbon-degrading and BS producing bacteria is also necessary to improve the decontamination.
机译:本研究旨在开发一种高效、经济、环保的石油污泥降解菌群。方法和结果根据初始浓度,选择4株属于通用菌和假单胞菌的菌株组成三个不同的联合体。当产生生物表面活性剂(BS)的分离物浓度较高时,培养4周后,1%(v/v)原油的最高降解率(78%)。采用聚合酶链反应法检测基因,如LKB、almA、cyp153、pah rhdGN、nah、PHNA和CAT23,它们的诱导水平在pH 7.0时达到最佳。人工构建了一种原油污泥,并用16S rRNA基因扩增子测序对其细菌组成进行了研究。结果表明,原油处理后土壤细菌群落以植物生长促进菌(PGPB)为主。结论我们的研究结果表明,与单独使用PGPB相比,联合体和PGPB对原油污染土壤的净化更有效。研究的意义和影响本研究表明,石油未污染土壤中存在的PGPB(Taibaiella)可以促进土壤去污。此外,还需要添加高效碳氢化合物降解菌和BS产生菌,以改善去污效果。

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