Jo Sung Jun, Kwon Hyeokpil, Jeong So-Yeon, Lee Sang Hyun, Oh Hyun-Suk, Yi Taewoo, Lee Chung-Hak, Kim Tae Gwan
School of Chemical and Biological Engineering, Seoul National University, Seoul 08826, Republic of Korea.
Department of Microbiology, Pusan National University, Pusan 46241, Republic of Korea.
J Microbiol Biotechnol. 2016 Sep 28;26(9):1593-604. doi: 10.4014/jmb.1604.04070.
Recently, bacterial quorum quenching (QQ) has been proven to have potential as an innovative approach for biofouling control in membrane bioreactors (MBRs) for advanced wastewater treatment. Although information regarding the microbial community is crucial for the development of QQ strategies, little information exists on the microbial ecology in QQ-MBRs. In this study, the microbial communities of biofilm were investigated in relation to the effect of QQ on anoxic/oxic MBRs. Two laboratory-scale MBRs were operated with and without QQ-beads (QQ-bacteria entrapped in beads). The transmembrane pressure increase in the QQ-MBRs was delayed by approximately 100-110% compared with conventional- and vacant-MBRs (beads without QQ-bacteria) at 45 kPa. In terms of the microbial community, QQ gradually favored the development of a diverse and even community. QQ had an effect on both the bacterial composition and change rate of the bacterial composition. Proteobacteria and Bacteroidetes were the most dominant phyla in the biofilm, and the average relative composition of Proteobacteria was low in the QQ-MBR. Thiothrix sp. was the dominant bacterium in the biofilm. The relative composition of Thiothrix sp. was low in the QQ-MBR. These findings provide useful information that can inform the development of a new QQ strategy.
最近,细菌群体淬灭(QQ)已被证明具有作为一种创新方法用于高级废水处理的膜生物反应器(MBR)中生物污染控制的潜力。尽管有关微生物群落的信息对于QQ策略的开发至关重要,但关于QQ-MBR中微生物生态学的信息却很少。在本研究中,研究了生物膜的微生物群落与QQ对缺氧/好氧MBR的影响之间的关系。运行了两个实验室规模的MBR,一个添加了QQ珠(包裹有QQ细菌的珠子),另一个未添加。在45 kPa时,与传统MBR和空白MBR(不含QQ细菌的珠子)相比,QQ-MBR中的跨膜压力增加延迟了约100-110%。就微生物群落而言,QQ逐渐有利于多样化且均匀的群落的发展。QQ对细菌组成和细菌组成的变化率均有影响。变形菌门和拟杆菌门是生物膜中最主要的门类,在QQ-MBR中变形菌门的平均相对组成较低。硫丝菌属是生物膜中的优势细菌。硫丝菌属的相对组成在QQ-MBR中较低。这些发现提供了有用的信息,可为新的QQ策略的开发提供参考。