School of Chemical and Biological Engineering, Seoul National University, Seoul, Republic of Korea.
Department of Microbiology, Pusan National University, Pusan, Republic of Korea.
J Appl Microbiol. 2020 Mar;128(3):907-918. doi: 10.1111/jam.14514. Epub 2019 Nov 22.
Quorum quenching (QQ) is an attractive strategy for mitigating biofouling in membrane bioreactors (MBRs). However, the effects of QQ on the activated sludge (AS) process have not been adequately evaluated. This study investigated the long-term effects of QQ on a laboratory-scale anoxic-oxic MBR, focusing on AS performance and microbial community.
Anoxic-oxic MBRs with and without QQ were operated for 91 days. QQ did not affect COD and TN removal efficiencies over the experimental period, during which its activity remained >90%. QQ reduced floc size by approximately 8% but had no effect on biomass concentration. AS microbial communities were regularly analysed using massively parallel sequencing. AS bacterial communities were temporally dynamic irrespective of QQ presence, for example, a temporal increase in bacterial diversity and a temporal decay of community similarity. QQ counteracted the temporal change in diversity and the temporal distance-community decay. Community comparison revealed that QQ changed the successional trajectory of the AS community at a late period, because it decelerated temporal changes of specific members, such as Thiothrix and Sphingomonadaceae*. Correlation networks revealed that QQ increased network clustering, complexity and density. The combined results suggest that the tighter microbial association by QQ increased the community resistance.
QQ can enhance the diversity and stability of the AS community in MBR by counteracting the innate temporal change in community structure.
Our findings are useful for the further advancement of QQ-based strategies in engineered microbial environments.
群体感应淬灭(QQ)是减轻膜生物反应器(MBR)中生物结垢的一种有吸引力的策略。然而,QQ 对活性污泥(AS)过程的影响尚未得到充分评估。本研究在实验室规模的缺氧-好氧 MBR 中考察了 QQ 的长期影响,重点是 AS 性能和微生物群落。
运行缺氧-好氧 MBR 有无 QQ 共 91 天。在整个实验期间,QQ 对 COD 和 TN 去除效率没有影响,其活性一直保持在>90%。QQ 使絮体大小减小了约 8%,但对生物量浓度没有影响。使用大规模平行测序定期分析 AS 微生物群落。无论 QQ 是否存在,AS 细菌群落都是随时间动态变化的,例如,细菌多样性随时间增加,群落相似性随时间衰减。QQ 抵消了多样性的时间变化和群落衰减的时间距离。群落比较表明,QQ 在后期改变了 AS 群落的演替轨迹,因为它减缓了特定成员(如硫丝菌属和鞘氨醇单胞菌科*)的时间变化。相关网络显示,QQ 增加了网络聚类、复杂性和密度。综合结果表明,QQ 通过拮抗群落结构的固有时间变化,增强了 AS 群落的多样性和稳定性。
QQ 可以通过拮抗群落结构的固有时间变化,增强 MBR 中 AS 群落的多样性和稳定性。
我们的发现有助于进一步推进基于 QQ 的策略在工程微生物环境中的应用。