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一种单颗粒水平方法揭示了上流式厌氧污泥床反应器中的生态异质性。

A Single-Granule-Level Approach Reveals Ecological Heterogeneity in an Upflow Anaerobic Sludge Blanket Reactor.

作者信息

Kuroda Kyohei, Nobu Masaru K, Mei Ran, Narihiro Takashi, Bocher Benjamin T W, Yamaguchi Takashi, Liu Wen-Tso

机构信息

Department of Civil and Environmental Engineering, University of Illinois at Urbana-Champaign, North Mathews Ave, Urbana, Illinois, United States of America.

Department of Environmental systems Engineering, Nagaoka University of Technology, Kami-tomioka, Nagaoka, Niigata, Japan.

出版信息

PLoS One. 2016 Dec 9;11(12):e0167788. doi: 10.1371/journal.pone.0167788. eCollection 2016.

Abstract

Upflow anaerobic sludge blanket (UASB) reactor has served as an effective process to treat industrial wastewater such as purified terephthalic acid (PTA) wastewater. For optimal UASB performance, balanced ecological interactions between syntrophs, methanogens, and fermenters are critical. However, much of the interactions remain unclear because UASB have been studied at a "macro"-level perspective of the reactor ecosystem. In reality, such reactors are composed of a suite of granules, each forming individual micro-ecosystems treating wastewater. Thus, typical approaches may be oversimplifying the complexity of the microbial ecology and granular development. To identify critical microbial interactions at both macro- and micro- level ecosystem ecology, we perform community and network analyses on 300 PTA-degrading granules from a lab-scale UASB reactor and two full-scale reactors. Based on MiSeq-based 16S rRNA gene sequencing of individual granules, different granule-types co-exist in both full-scale reactors regardless of granule size and reactor sampling depth, suggesting that distinct microbial interactions occur in different granules throughout the reactor. In addition, we identify novel networks of syntrophic metabolic interactions in different granules, perhaps caused by distinct thermodynamic conditions. Moreover, unseen methanogenic relationships (e.g. "Candidatus Aminicenantes" and Methanosaeta) are observed in UASB reactors. In total, we discover unexpected microbial interactions in granular micro-ecosystems supporting UASB ecology and treatment through a unique single-granule level approach.

摘要

上流式厌氧污泥床(UASB)反应器一直是处理工业废水(如精对苯二甲酸(PTA)废水)的有效工艺。为了实现UASB的最佳性能,互营菌、产甲烷菌和发酵菌之间的平衡生态相互作用至关重要。然而,由于UASB一直是从反应器生态系统的“宏观”层面进行研究的,许多相互作用仍不清楚。实际上,此类反应器由一系列颗粒组成,每个颗粒都形成了处理废水的独立微生态系统。因此,典型方法可能会过度简化微生物生态学和颗粒发育的复杂性。为了确定宏观和微观层面生态系统生态学中的关键微生物相互作用,我们对来自一个实验室规模的UASB反应器和两个全尺寸反应器的300个PTA降解颗粒进行了群落和网络分析。基于对单个颗粒的基于MiSeq的16S rRNA基因测序,无论颗粒大小和反应器采样深度如何,两种全尺寸反应器中都共存着不同的颗粒类型,这表明整个反应器中不同颗粒存在着不同的微生物相互作用。此外,我们在不同颗粒中发现了新的互营代谢相互作用网络,这可能是由不同的热力学条件导致的。此外,在UASB反应器中观察到了未被发现的产甲烷关系(例如“候选氨基共生菌属”和甲烷八叠球菌属)。总之,我们通过独特的单颗粒水平方法,在支持UASB生态学和处理的颗粒微生态系统中发现了意想不到的微生物相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/447c/5147981/69152a025389/pone.0167788.g001.jpg

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