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首页> 外文期刊>Current Microbiology: An International Journal >Extrication of the Microbial Interactions of Activated Sludge Used in the Textile Effluent Treatment of Anaerobic Reactor Through Metagenomic Profiling
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Extrication of the Microbial Interactions of Activated Sludge Used in the Textile Effluent Treatment of Anaerobic Reactor Through Metagenomic Profiling

机译:通过偏心细胞分析提出纺织反应器纺织污泥的微生物污泥微生物相互作用

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Industrial effluents are potential threats to water bodies owing to the chemicals they contain to create pollution. Activated sludge effluents represent an ecosystem of multifaceted and interactive microbial consortia that flourish with different genetic as well as metabolic potential. This study is applied to a nanopore sequencing to understand the microbial organisms involved in degradation pathways, and their interaction among them. The taxonomic profile determined the occurrence of Proteobacteria, Actinobacteria, Terrabacteria, bacteria, and Firmicutes with the dominance of Burkholderiales. Burkholderia pseudomallei was found to be 13.79% of the classified reads. The Gene ontology evaluation revealed that mobile elements and tRNA genes were the predominant genetic composition of the community with 16% of the total genes. The functional annotation of genes ensured the presence of genes encoding various types of RNA, homo and heteromultimeric proteins and pseudogenes as well. Pathways that involved in effluent treatment such as amines, aromatic, organic, and aromatic compound degradation were also illustrated. Amino acyl tRNA charging, signal transduction, and hormone degradation were the pathways that are identified to be common in all the organisms of the activated sludge. The study elaborated on the xenobiotic degradation that is exclusive of the predominant Burkholderiales and the interaction of them in the community as a whole. The present study revealed the genes, proteins, and the pathways of the activated sludge microbiome which will enhance the perceptions of the core mechanisms of effluent degradation.
机译:由于它们含有污染的化学品,工业污水是对水体的潜在威胁。活性污泥流出物代表了多方面和交互微生物联原的生态系统,其具有不同的遗传和代谢潜力。该研究应用于纳米孔测序以了解参与降解途径的微生物生物,以及它们之间的相互作用。分类程序简档确定了植物菌,肌动菌,肌科,诱导菌,细菌和伯克德利人的主导地位的发生。 Burkholderia pseudomallei被发现为分类读数的13.79%。基因本体论评估显示,移动元素和TRNA基因是群体的主要遗传组成,占总基因的16%。基因的功能注释确保了编码各种类型的RNA,同源和异统蛋白和假生素的基因存在。还示出了涉及流出物处理的途径,例如胺,芳族,有机和芳族化合物降解。氨基酰基TRNA充电,信号转导和激素降解是识别在活性污泥的所有生物中常见的途径。该研究阐述了异鹅退化,这些退化是占主导地位的缅因力,以及他们整个社区中的互动。本研究揭示了活性污泥微生物组的基因,蛋白质和途径,其将提高流出物降解核心机制的看法。

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