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Correlations between molecular and operational parameters in continuous lab-scale anaerobic reactors

机译:连续实验室规模厌氧反应器中分子参数与操作参数之间的相关性

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摘要

In this study, the microbial community characteristics in continuous lab-scale anaerobic reactors were correlated to reactor functionality using the microbial resource management (MRM) approach. Two molecular techniques, denaturing gradient gel electrophoresis (DGGE) and terminal-restriction fragment length polymorphism (T-RFLP), were applied to analyze the bacterial and archaeal communities, and the results obtained have been compared. Clustering analyses showed a similar discrimination of samples with DGGE and T-RFLP data, with a clear separation between the meso- and thermophilic communities. Both techniques indicate that bacterial and mesophilic communities were richer and more even than archaeal and thermophilic communities, respectively. Remarkably, the community composition was highly dynamic for both Bacteria and Archaea, with a rate of change between 30% and 75% per 18 days, also in stable performing periods. A hypothesis to explain the latter in the context of the converging metabolism in anaerobic processes is proposed. Finally, a more even and diverse bacterial community was found to be statistically representative for a well-functioning reactor as evidenced by a low Ripley index and high biogas production.
机译:在这项研究中,使用微生物资源管理(MRM)方法将连续实验室规模厌氧反应器中的微生物群落特征与反应器功能相关联。两种分子技术,变性梯度凝胶电泳(DGGE)和末端限制性片段长度多态性(T-RFLP),被用来分析细菌和古细菌群落,并比较了获得的结果。聚类分析表明,具有DGGE和T-RFLP数据的样品具有相似的判别力,中,嗜热群落之间有明显的分离。两种技术都表明,细菌和嗜温菌群落分别比古细菌和嗜热菌群落更丰富甚至更均匀。值得注意的是,细菌和古细菌的群落组成都是高度动态的,每18天的变化率在30%到75%之间,而且在稳定的时期也是如此。提出了在厌氧过程中新陈代谢趋同的情况下解释后者的假设。最终,发现一个更均匀和多样化的细菌群落在统计学上代表了一个功能良好的反应器​​,这由低的里普利指数和高的沼气产量证明。

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