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Characterization of bacterial composition and diversity in a long-term petroleum contaminated soil and isolation of high-efficiency alkane-degrading strains using an improved medium

机译:长期石油污染土壤中细菌组成和多样性的表征及使用改进培养基分离高效烷烃降解菌株

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摘要

Bacterial community and diversity in a long-term petroleum-contaminated soil of an oilfield were characterized using 16S rRNA gene-based Illumina MiSeq high-throughput sequencing. Results indicated that Proteobacteria (49.11%) and Actinobacteria (24.24%) were the most dominant phyla, and the most abundant genera were Pseudoxanthomonas (8.47%), Luteimonas (3.64%), Alkanindiges (9.76%), Acinetobacter (5.26%) and Agromyces (8.56%) in the soil. Meanwhile a series of cultivations were carried out for isolation of alkane degraders from petroleum-contaminated soil with gellan gum and agar as gelling agents. And the isolates were classified by their 16S rRNA genes. Nine of the isolates including Enterobacter, Pseudomonas, Acinetobacter, Rhizobium, Bacillus, Sphingomonas, Paenibacillus, Variovorax and Rhodococcus showed strong biodegradability of alkane mixture (C9-C30) in a wide range of chain-length, which could be potentially applied in enhancement of bioremediation.
机译:使用16S rRNA基因的Illumina Miseq高通量测序表征油田长期石油污染土壤中的细菌群落和多样性。 结果表明,植物体外(49.11%)和肌动菌(24.24%)是最占优势的植物,最丰富的属于假瘤芽孢菌(8.47%),叶黄素(3.64%),链烷酮(9.76%),actobacter(5.26%)和 土壤中的Agromyces(8.56%)。 同时,通过用Gellan Gul Gum和琼脂分离来自石油污染的土壤的烷烃脱落剂作为胶凝剂来进行一系列培养。 并且分离株由16S rRNA基因分类。 包括肠杆菌,假单胞菌,传导杆菌,根序,芽孢杆菌,鞘氨基醇,Paenibacils,Variovorax和rhodococc的九个分离物在宽范围的链长中显示出烷烃混合物(C9-C30)的强生物降解性,这可能适用于增强 生物修复。

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