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规模化活性污泥生物反应器中的细菌群落动态:驱动群落组装和性能的运行和生态因素。

Bacterial community dynamics in full-scale activated sludge bioreactors: operational and ecological factors driving community assembly and performance.

机构信息

Department of Biology, University of Puerto Rico at Mayagüez, Mayagüez, Puerto Rico, United States of America.

出版信息

PLoS One. 2012;7(8):e42524. doi: 10.1371/journal.pone.0042524. Epub 2012 Aug 3.

Abstract

The assembling of bacterial communities in conventional activated sludge (CAS) bioreactors was thought, until recently, to be chaotic and mostly unpredictable. Studies done over the last decade have shown that specific, and often, predictable random and non-random factors could be responsible for that process. These studies have also motivated a "structure-function" paradigm that is yet to be resolved. Thus, elucidating the factors that affect community assembly in the bioreactors is necessary for predicting fluctuations in community structure and function. For this study activated sludge samples were collected during a one-year period from two geographically distant CAS bioreactors of different size. Combining community fingerprinting analysis and operational parameters data with a robust statistical analysis, we aimed to identify relevant links between system performance and bacterial community diversity and dynamics. In addition to revealing a significant β-diversity between the bioreactors' communities, results showed that the largest bioreactor had a less dynamic but more efficient and diverse bacterial community throughout the study. The statistical analysis also suggests that deterministic factors, as opposed to stochastic factors, may have a bigger impact on the community structure in the largest bioreactor. Furthermore, the community seems to rely mainly on mechanisms of resistance and functional redundancy to maintain functional stability. We suggest that the ecological theories behind the Island Biogeography model and the species-area relationship were appropriate to predict the assembly of bacterial communities in these CAS bioreactors. These results are of great importance for engineers and ecologists as they reveal critical aspects of CAS systems that could be applied towards improving bioreactor design and operation.

摘要

在传统活性污泥(CAS)生物反应器中,细菌群落的组装被认为是混沌的,而且在很大程度上是不可预测的。直到最近,过去十年的研究表明,特定的、通常是可预测的随机和非随机因素可能是导致这一过程的原因。这些研究还激发了一个“结构-功能”范式,目前尚未得到解决。因此,阐明影响生物反应器中群落组装的因素对于预测群落结构和功能的波动是必要的。在这项研究中,从两个地理位置不同、规模不同的 CAS 生物反应器中采集了活性污泥样本,在一年的时间里进行了采集。我们将群落指纹分析和操作参数数据与强大的统计分析相结合,旨在确定系统性能与细菌群落多样性和动态之间的相关联系。除了揭示生物反应器群落之间存在显著的β多样性外,结果还表明,在整个研究过程中,最大的生物反应器的细菌群落虽然动态性较低,但效率更高,多样性更大。统计分析还表明,与随机因素相比,确定性因素可能对最大生物反应器中的群落结构产生更大的影响。此外,该群落似乎主要依赖于抵抗机制和功能冗余来维持功能稳定性。我们认为,岛屿生物地理学模型和物种-面积关系背后的生态学理论适用于预测这些 CAS 生物反应器中细菌群落的组装。这些结果对工程师和生态学家来说非常重要,因为它们揭示了 CAS 系统的关键方面,可以应用于改进生物反应器的设计和操作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e73b/3411768/f856bb9035cb/pone.0042524.g001.jpg

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