Fujian Provincial Key Laboratory of Soil Environmental Health and Regulation, College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Fujian Provincial Key Laboratory of Soil Environmental Health and Regulation, College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Biosens Bioelectron. 2017 Nov 15;97:369-376. doi: 10.1016/j.bios.2017.06.024. Epub 2017 Jun 13.
The impacts of exogenous or endogenous quorum sensing (QS) signaling molecules on mixed-culture electroactive biofilms (EABs), especially extracellular polymeric substances (EPS) and exoelectrogens using direct electron transfer mechanism inside EABs are poorly understood. This research focuses on the influence of acylhomoserine lactones (AHLs), the most common QS signaling molecules for gram negative bacteria, on mixed-culture EABs. Results indicated that both exogenous and endogenous AHLs played the role as regulators to improve the electrochemical activities of EABs. The energy recovery of MFCs increased from 20.5% ± 3.9% to 28.3% ± 4.1% with endogenous AHLs and further rose to 36.2% ± 5.1% with exogenous AHLs, and the start-up period of MFCs shortened from 13 days to 10 days with endogenous AHLs and further reduced to 4 days in the presence of exogenous AHLs. The influences of exogenous and endogenous AHLs were non-instantaneous. They improved some intrinsic properties, i.e. the electrode-associated biomass, the biofilm compactness and the ratio of live/dead cells to obtain superior EABs. Meanwhile, both endogenous and exogenous AHLs increased the concentration and redox activities of EPS. Besides, endogenous AHLs enhanced the diversity of EPS components. Noteworthily, the relative abundance of Geoboacter sp. which is the typical microbe using direct electron transfer mechanism is raised by exogenous AHLs, though so far neither known chemical QS-related gene nor protein has been reported in this genus. These findings will increase the current understanding of QS in EABs and open up an opportunity for regulating mixed-culture MFCs via QS.
外源性或内源性群体感应 (QS) 信号分子对混合培养电活性生物膜 (EAB) 的影响,特别是对 EAB 内直接电子转移机制的胞外聚合物物质 (EPS) 和外电子供体的影响,了解甚少。本研究重点研究了酰基高丝氨酸内酯 (AHLs),即革兰氏阴性菌最常见的 QS 信号分子,对混合培养 EAB 的影响。结果表明,外源性和内源性 AHLs 都起到了调节作用,提高了 EAB 的电化学活性。MFC 的能量回收从 20.5%±3.9%提高到 28.3%±4.1%,内源 AHLs 进一步提高到 36.2%±5.1%,MFC 的启动时间从 13 天缩短到 10 天,内源 AHLs 进一步缩短到 4 天。外源性和内源性 AHLs 的影响不是即时的。它们改善了一些内在特性,即电极相关生物量、生物膜致密性和活/死细胞的比例,从而获得了优越的 EAB。同时,内源性和外源性 AHLs 都增加了 EPS 的浓度和氧化还原活性。此外,内源性 AHLs 增加了 EPS 成分的多样性。值得注意的是,外源性 AHLs 增加了 Geoboacter sp.的相对丰度,Geoboacter sp. 是一种使用直接电子转移机制的典型微生物,尽管到目前为止,这个属中还没有报道过已知的化学 QS 相关基因或蛋白质。这些发现将增加我们对 EAB 中 QS 的现有理解,并为通过 QS 调节混合培养 MFC 开辟机会。