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Phylogenetic and functional diversity of metagenomic libraries of phenol degrading sludge from petroleum refinery wastewater treatment system

机译:炼油废水处理系统苯酚降解污泥宏基因组库的系统发育和功能多样性

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In petrochemical refinery wastewater treatment plants (WWTP), different concentrations of pollutant compounds are received daily in the influent stream, including significant amounts of phenolic compounds, creating propitious conditions for the development of particular microorganisms that can rapidly adapt to such environment. In the present work, the microbial sludge from a refinery WWTP was enriched for phenol, cloned into fosmid vectors and pyrosequenced. The fosmid libraries yielded 13,200 clones and a comprehensive bioinformatic analysis of the sequence data set revealed a complex and diverse bacterial community in the phenol degrading sludge. The phylogenetic analyses using MEGAN in combination with RDP classifier showed a massive predominance of Proteobacteria, represented mostly by the genera Diaphorobacter, Pseudomonas, Thauera and Comamonas. The functional classification of phenol degrading sludge sequence data set generated by MG-RAST showed the wide metabolic diversity of the microbial sludge, with a high percentage of genes involved in the aerobic and anaerobic degradation of phenol and derivatives. In addition, genes related to the metabolism of many other organic and xenobiotic compounds, such as toluene, biphenyl, naphthalene and benzoate, were found. Results gathered herein demonstrated that the phenol degrading sludge has complex phylogenetic and functional diversities, showing the potential of such community to degrade several pollutant compounds. This microbiota is likely to represent a rich resource of versatile and unknown enzymes which may be exploited for biotechnological processes such as bioremediation.
机译:在石化炼油厂废水处理厂(WWTP)中,进水流中每天接收到不同浓度的污染物,包括大量的酚类化合物,这为开发能够快速适应这种环境的特定微生物创造了有利条件。在目前的工作中,来自炼油厂污水处理厂的微生物污泥富含苯酚,被克隆到fosmid载体中并进行焦磷酸测序。 fosmid文库产生了13,200个克隆,对序列数据集进行了全面的生物信息学分析,结果表明,酚降解污泥中存在着复杂多样的细菌群落。使用MEGAN结合RDP分类器进行的系统发育分析表明,变形杆菌占主导地位,主要表现为Diaphorobacter,Pseudomonas,Thauera和Comamonas属。 MG-RAST生成的苯酚降解污泥序列数据集的功能分类表明,微生物污泥的代谢多样性广泛,其中涉及苯酚及其衍生物的好氧和厌氧降解的基因比例很高。此外,还发现了与许多其他有机和异种生物化合物代谢有关的基因,例如甲苯,联苯,萘和苯甲酸酯。本文收集的结果表明,降解苯酚的污泥具有复杂的系统发育和功能多样性,显示出此类菌群降解几种污染物的潜力。该微生物群可能代表了丰富的多功能酶和未知酶,可用于生物技术过程(例如生物修复)。

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