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Metagenome Analysis of a Hydrocarbon-Degrading Bacterial Consortium Reveals the Specific Roles of BTEX Biodegraders

机译:烃可降解细菌结核的聚蛋白酶体分析揭示了BTEX生物学生的特定作用

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摘要

Environmental contamination by petroleum hydrocarbons is of concern due to the carcinogenicity and neurotoxicity of these compounds. Successful bioremediation of organic contaminants requires bacterial populations with degradative capacity for these contaminants. Through successive enrichment of microorganisms from a petroleum-contaminated soil using diesel fuel as the sole carbon and energy source, we successfully isolated a bacterial consortium that can degrade diesel fuel hydrocarbons. Metagenome analysis revealed the specific roles of different microbial populations involved in the degradation of benzene, toluene, ethylbenzene and xylene (BTEX), and the metabolic pathways involved in these reactions. One hundred and five putative coding DNA sequences were identified as responsible for both the activation of BTEX and central metabolism (ring-cleavage) of catechol and alkylcatechols during BTEX degradation. The majority of the Coding DNA sequences (CDSs) were affiliated to Acidocella, which was also the dominant bacterial genus in the consortium. The inoculation of diesel fuel contaminated soils with the consortium resulted in approximately 70% hydrocarbon biodegradation, indicating the potential of the consortium for environmental remediation of petroleum hydrocarbons.
机译:由于这些化合物的致癌性和神经毒性,石油烃的环境污染是有关的。有机污染物的成功生物修复需要细菌种群,这些污染物具有降解能力。通过使用柴油燃料作为唯一碳和能源的柴油污染土壤的微生物富集微生物,我们成功地分离了一种可以降解柴油燃料碳氢化合物的细菌联盟。 Metagenome分析揭示了不同微生物种群参与苯,甲苯,乙苯和二甲苯(BTEX)的降解的特定作用,以及参与这些反应中的代谢途径。在BTEX降解期间,鉴定了一百五个推定的编码DNA序列,对儿茶酚和烷基香法的BTEX和中央代谢(环裂解)的激活。将大多数编码DNA序列(CDSS)隶属于acidocella,其也是联盟中的主要细菌属。与联盟的柴油燃料污染土壤接种导致烃生物降解约为70%,表明该联盟的潜在用于石油烃的环境修复。

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