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首页> 外文期刊>Journal of Environmental Management >Deciphering the black box of microbial community of common effluent treatment plant through integrated metagenomics: Tackling industrial effluent
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Deciphering the black box of microbial community of common effluent treatment plant through integrated metagenomics: Tackling industrial effluent

机译:通过综合偏心神经解密普通污水处理厂的黑匣子的微生物群落:解决工业污水

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摘要

Identifying the microbial community and their functional potential from different stages of common effluent treatment plants (CETP) can enhance the efficiency of wastewater treatment systems. In this study, wastewater metagenomes from 8 stages of CETP were screened for microbial diversity and gene profiling along with their corresponding degradation activities. The microbial community displayed 98.46% of bacterial species, followed by Eukarya (0.10%) and Archaea 0.02%. At the Phylum level, Proteobacteria (28.8%) was dominant, followed by Bacteroidetes (16.1%), Firmicutes (11.7%), and Fusobacteria (6.9%) which are mainly capable of degrading the aromatic compounds. Klebsiella pneumoniae, Wolinella succinogenes, Pseudomonas stutzeri, Desulfovibrio vulgaris, and Clostridium sticklandii were the most prevalent species. The functional analysis further demonstrated the presence of enzymes linked with genes/pathways known to be involved in the degradation/metabolization of aromatic compounds like benzoate, bisphenol, 1,2-dichloroethane phenylalanine. This information was further validated with the whole genome analysis of the bacteria isolated from the CETP. We anticipate that integrating both shotgun and whole-genome analyses can reveal the rich reservoir for novel enzymes and genes present in CETP effluent that can contribute to designing efficient bioremediation strategies for the environment in general CETP system, in particular.
机译:鉴定微生物群落及其来自普通污水处理厂(CETP)的不同阶段的功能势能可以提高废水处理系统的效率。在该研究中,筛选来自CETP的8个阶段的废水梅毒,用于微生物多样性和基因分析以及相应的降解活性。微生物群体显示98.46%的细菌物种,其次是Eukarya(0.10%)和Archaea 0.02%。在门水平下,植物体外(28.8%)占主导地位,其次是菌体(16.1%),更加迫切(11.7%)和fusobacteria(6.9%),主要能够降解芳族化合物。 Klebsiella Pneumoniae,Wolinella Succinogenes,Pseudomonas Stutzeri,Desulfoviro Venrgaris和Clostridium Sticklandii是最普遍的物种。功能分析进一步证明存在与已知苯甲酸苯甲酸酯,双酚,1,2-二氯乙烷苯丙氨酸等芳族化合物的降解/代谢的基因/途径连接的酶的存在。该信息进一步验证了从CETP中分离的细菌的全基因组分析。我们预期整合霰弹枪和全基因组分析可以揭示富含氯化石流出物中存在的新型酶和基因的丰富水库,这有助于为一般CETP系统设计有效的生物修复策略。

著录项

  • 来源
    《Journal of Environmental Management 》 |2021年第1期| 112448.1-112448.11| 共11页
  • 作者单位

    Gujarat Biotechnology Research Centre (GBRC) Department of Science and Technology (DST) 6th Floor MS Building Gandhtnagar Gujarat 382011 India;

    Gujarat Biotechnology Research Centre (GBRC) Department of Science and Technology (DST) 6th Floor MS Building Gandhtnagar Gujarat 382011 India;

    Gujarat Biotechnology Research Centre (GBRC) Department of Science and Technology (DST) 6th Floor MS Building Gandhtnagar Gujarat 382011 India;

    Gujarat Biotechnology Research Centre (GBRC) Department of Science and Technology (DST) 6th Floor MS Building Gandhtnagar Gujarat 382011 India;

    Gujarat Biotechnology Research Centre (GBRC) Department of Science and Technology (DST) 6th Floor MS Building Gandhtnagar Gujarat 382011 India;

    Discipline of Earth Sciences IIT Gandhinagar Gujarat 382355 India;

    Gujarat Biotechnology Research Centre (GBRC) Department of Science and Technology (DST) 6th Floor MS Building Gandhtnagar Gujarat 382011 India;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microbial diversity; Common effluent treatment plant (CETP); Shotgun metagenomics; Water remediation; Aromatic compounds;

    机译:微生物多样性;普通污水处理厂(CETP);霰弹枪偏心组合;水处理;芳香化合物;

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