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Metagenomic sequencing of activated sludge filamentous bacteria community using the Ion Torrent platform

机译:使用离子洪流平台对活性污泥丝状细菌群落进行元基因组测序

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Filamentous bulking, the most common solids separation problems in wastewater treatment systems, is caused by filamentous bacteria extending outside the flocs. Previous studies using microscopy and conventional molecular techniques, such as fluorescence in situ hybridization and real-time qPCR, have difficulty in obtaining the complete profile of filaments. In this study, metagenomic analysis using an Ion Torrent Personal Genome Machine (PGM) platform was adopted to investigate the filamentous bacteria community in Macau wastewater treatment plant that is experiencing filamentous bulking in recent years. The results showed that approximately 571MB bases of raw data were obtained, acquiring a total of 561,943,741 clean and high-quality bases for further subsequent analysis. Haliscomenobacter hydrossis was identified as the dominant filaments that caused bulking. The present study indicated that the total filamentous bacteria could be determined well through PGM sequencing, from which the oligonucleotide probes and primers can be developed and used for targeting the interest species under different operational conditions. In addition, the distributions of Virus, Bacteria, Archaea, Eukaryote domain at read and contig level were determined in this study.
机译:丝状膨松是废水处理系统中最常见的固体分离问题,是由于丝状细菌延伸到絮凝物外部引起的。以前使用显微镜和常规分子技术(例如荧光原位杂交和实时qPCR)进行的研究难以获得细丝的完整轮廓。在这项研究中,采用离子激流个人基因组机(PGM)平台进行了宏基因组分析,以研究澳门污水处理厂近年来丝状堆积的丝状细菌群落。结果表明,已获得大约571MB的原始数据基础,总共获得了561,943,741个干净和高质量的基础,用于进一步的后续分析。幽门螺杆菌水解被认为是引起膨大的主要细丝。本研究表明,通过PGM测序可以很好地确定总丝状细菌,由此可以开发出寡核苷酸探针和引物,并将其用于在不同操作条件下靶向目标物种。此外,本研究还确定了病毒,细菌,古细菌,真核生物域在阅读和重叠群水平上的分布。

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