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Seasonal Dynamics of the Activated Sludge Microbiome in Sequencing Batch Reactors, Assessed Using 16S rRNA Transcript Amplicon Sequencing

机译:测序批量反应器中活性污泥微生物组的季节性动态,使用16S rRNA转录扩增子测序评估

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Activated sludge is comprised of diverse microorganisms which remediate wastewater. Previous research has characterized activated sludge using 16S rRNA gene amplicon sequencing, which can help to address questions on the relative abundance of microorganisms. In this study, we used 16S rRNA transcript sequencing in order to characterize “active” populations (via protein synthesis potential) and gain a deeper understanding of microbial activity patterns within activated sludge. Seasonal abundances of individual populations in activated sludge change over time, yet a persistent group of core microorganisms remains throughout the year which are traditionally classified on presence or absence without monitoring of their activity or growth. The goal of this study was to further our understanding of how the activated sludge microbiome changes between seasons with respect to population abundance, activity, and growth. Triplicate sequencing batch reactors were sampled at 10-min intervals throughout reaction cycles during all four seasons. We quantified the gene and transcript copy numbers of 16S rRNA amplicons using real-time PCR and sequenced the products to reveal community abundance and activity changes. We identified 108 operational taxonomic units (OTUs) with stable abundance, activity, and growth throughout the year. Nonproliferating OTUs were commonly human health related, while OTUs that showed seasonal abundance changes have previously been identified as being associated with floc formation and bulking. We observed significant differences in 16S rRNA transcript copy numbers, particularly at lower temperatures in winter and spring. The study provides an analysis of the seasonal dynamics of microbial activity variations in activated sludge based on quantifying and sequencing 16S rRNA transcripts.IMPORTANCE Sequencing batch reactors are a common design for wastewater treatment plants, particularly in smaller municipalities, due to their low footprint and ease of operations. However, like for most treatment plants in temperate/continental climates, the microbial community involved in water treatment is highly seasonal and its biological processes can be sensitive to cold temperatures. The seasonality of these microbial communities has been explored primarily in conventional treatment plants and not in sequencing batch reactors. Furthermore, most studies often only address which organisms are present. However, the activated sludge microbial community is very diverse, and it is often hard to discern which organisms are active and which organisms are simply present. In this study, we applied additional sequencing techniques to also address the issues of which organisms are active and which organisms are growing. By addressing these issues, we gained new insights into seasonal microbial populations dynamics and activity patterns affecting wastewater treatment.
机译:活性污泥由各种微生物组成,所述微生物修复废水。以前的研究表征了使用16S rRNA基因扩增子测序的活性污泥,这有助于解决关于微生物的相对丰度的问题。在该研究中,我们使用了16S rRNA转录物测序,以表征“活性”群体(通过蛋白质合成潜力)并在活性污泥中获得对微生物活性模式的更深理解。随着时间的推移,活性污泥的个体种群的季节性丰富,但持续的一组核心微生物仍然是一年中,传统上在没有监测他们的活动或增长的情况下分类或缺席。本研究的目的是进一步了解如何在人口丰富,活动和生长方面如何改变季节之间的变化。在所有四季期间,在反应循环中以10分钟的间隔进行三份测序批量反应器。我们使用实时PCR量化16S rRNA扩增子的基因和转录物拷贝数,并测序产品以显示社区丰富和活动变化。我们确定了全年稳定,活动和增长的108个运营分类单位(OTUS)。无溶解的Otus通常是人体健康相关的,而Otus以前已经确定了季节性丰度变化的奥特斯与絮状物形成和膨胀有关。我们观察到16S RRNA转录物拷贝数的显着差异,特别是在冬季和春季的较低温度下。该研究提供了基于定量和测序16S rRNA转录物的激活污泥的微生物活性变化的季节性动态分析。分批反应器是废水处理厂的常见设计,特别是在较小的城市,由于它们的占地面积低和容易。操作。然而,就像在温带温带/大陆气候的大多数治疗厂一样,参与水处理的微生物群落是高度季节性的,其生物过程可以对寒冷的温度敏感。这些微生物社区的季节性主要是在常规治疗厂中探讨而不是在测序批量反应器中探讨。此外,大多数研究通常只是解决哪些生物存在。然而,活化的污泥微生物群落是非常多样化的,并且往往很难辨别哪种生物是活跃的,并且简单地存在哪种生物。在这项研究中,我们应用了额外的测序技术来解决有机体活跃的问题,有哪些生物正在增长。通过解决这些问题,我们对季节性微生物群体的新见解,影响废水处理的季节性微生物种群动态和活动模式。

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