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Microbial Community Structure of Activated Sludge in Treatment Plants with Different Wastewater Compositions

机译:不同废水组成的污水处理厂活性污泥微生物群落结构

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摘要

Activated sludge (AS) plays a crucial role in the treatment of domestic and industrial wastewater. AS is a biocenosis of microorganisms capable of degrading various pollutants, including organic compounds, toxicants, and xenobiotics. We performed 16S rRNA gene sequencing of AS and incoming sewage in three wastewater treatment plants (WWTPs) responsible for processing sewage with different origins: municipal wastewater, slaughterhouse wastewater, and refinery sewage. In contrast to incoming wastewater, the taxonomic structure of AS biocenosis was found to become stable in time, and each WWTP demonstrated a unique taxonomic pattern. Most pathogenic microorganisms (Streptococcus, Trichococcus, etc.), which are abundantly represented in incoming sewage, were significantly decreased in AS of all WWTPs, except for the slaughterhouse wastewater. Additional load of bioreactors with influent rich in petroleum products and organic matter was associated with the increase of bacteria responsible for AS bulking and foaming. Here, we present a novel approach enabling the prediction of the metabolic potential of bacterial communities based on their taxonomic structures and MetaCyc database data. We developed a software application, XeDetect, to implement this approach. Using XeDetect, we found that the metabolic potential of the three bacterial communities clearly reflected the substrate composition. We revealed that the microorganisms responsible for AS bulking and foaming (most abundant in AS of slaughterhouse wastewater) played a leading role in the degradation of substrates such as fatty acids, amino acids, and other bioorganic compounds. Moreover, we discovered that the chemical, rather than the bacterial composition of the incoming wastewater was the main factor in AS structure formation. XeDetect (freely available: ) represents a novel powerful tool for the analysis of the metabolic capacity of bacterial communities. The tool will help to optimize bioreactor performance and avoid some most common technical problems.
机译:活性污泥(AS)在处理生活和工业废水中起着至关重要的作用。 AS是能够降解各种污染物(包括有机化合物,有毒物质和异种生物)的微生物的生物群落学。我们在三个废水处理厂(WWTP)中对AS和进水进行了16S rRNA基因测序,这三个废水处理厂负责处理不同来源的废水:市政废水,屠宰场废水和炼油厂废水。与进水相比,AS生物污染的分类结构在时间上变得稳定,并且每个污水处理厂都显示出独特的分类模式。在所有污水处理厂的AS中,除屠宰场废水外,大多数在进来的污水中大量存在的致病微生物(链球菌,Trichococcus等)均显着减少。富含石油产品和有机物的生物反应器的额外负荷与导致AS膨胀和起泡的细菌增加有关。在这里,我们提出了一种新颖的方法,可以根据细菌的生物分类结构和MetaCyc数据库数据预测细菌群落的代谢潜能。我们开发了一个软件应用程序XeDetect来实现这种方法。使用XeDetect,我们发现三个细菌群落的代谢潜能清楚地反映了底物组成。我们发现负责AS膨胀和起泡沫的微生物(在屠宰场废水的AS中含量最高)在降解基质(例如脂肪酸,氨基酸和其他生物有机化合物)方面起着主导作用。此外,我们发现进水废水的化学成分而非细菌成分是AS结构形成的主要因素。 XeDetect(免费提供:)代表了一种新型强大的工具,可用于分析细菌群落的代谢能力。该工具将有助于优化生物反应器的性能并避免一些最常见的技术问题。

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