Broad Influence of Quorum Sensing in Environmental Biotechnology: From Mechanisms to Applications

IF 7.4 Q1 ENGINEERING, ENVIRONMENTAL
Shunan Zhao, Yunong Dai, Ruikang Wang, Qianli Guo, Ge Song, Liuying Song, Jiyong Bian, Kai Zhao*, Ruiping Liu and Yu-You Li, 
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引用次数: 0

Abstract

Quorum sensing (QS), a pivotal cell-to-cell communication mechanism in microbial communities, plays a significant role in regulating microbial behaviors such as biofilm formation and sludge granulation, which are critical for the efficiency of wastewater treatment systems. This review provides thorough insight into the QS pathway modulation, focusing on the utilization of signaling molecules, particularly N-acyl homoserine lactones (AHLs), to augment microbial aggregation and extracellular polymeric substance synthesis within wastewater biotreatment system. The strategic addition of exogenous AHLs has been demonstrated to significantly accelerate the granulation process in aerobic and anaerobic sludge, leading to the development of more stable and compact granules with enhanced settling velocity and nutrient removal efficiency. Furthermore, the QS pathway significantly impacts microbial community structure and function, with diverse signaling molecules forming a complex regulatory network that can be leveraged to improve the performance of biotechnological processes. In addition to enhancing the advantageous attributes of biofilms, researchers have also immersed themselves in the exploration of quorum quenching (QQ) strategies. These strategies are adeptly applied to disrupt QS pathways, thereby effectively managing membrane fouling within membrane bioreactors (MBRs). By employing QQ enzymes, synthetic analogs, and QQ bacterial strains, researchers present effective approaches to mitigate biofilm-related issues without adversely affecting the microbial treatment processes. The innovative use of immobilized QQ enzymes and the integration of QQ strains into the MBRs have shown promising results in reducing fouling and maintaining operational stability. This review highlights the dual potential of QS manipulation for both enhancing desirable microbial process and controlling detrimental ones. By providing a deeper understanding of the underlying mechanisms and practical applications for QS/QQ pathway, scholars would be expected to develop more efficient and sustainable environmental biotechnology solutions for wastewater treatment and beyond.

Abstract Image

群体感应在环境生物技术中的广泛影响:从机制到应用
群体感应(Quorum sensing, QS)是微生物群落中重要的细胞间通讯机制,在调节生物膜形成和污泥造粒等微生物行为中起着重要作用,这对污水处理系统的效率至关重要。这篇综述提供了对QS通路调节的深入了解,重点是利用信号分子,特别是n -酰基高丝氨酸内酯(AHLs),在废水生物处理系统中增加微生物聚集和细胞外聚合物物质合成。外源ahl的战略性添加已被证明可以显著加速好氧和厌氧污泥的造粒过程,从而形成更稳定、更致密的颗粒,提高沉降速度和去除营养物质的效率。此外,QS通路显著影响微生物群落的结构和功能,不同的信号分子形成了一个复杂的调控网络,可以用来提高生物技术过程的性能。除了增强生物膜的优势属性外,研究人员还致力于群体猝灭(QQ)策略的探索。这些策略被熟练地应用于破坏QS途径,从而有效地管理膜生物反应器(mbr)内的膜污染。通过使用QQ酶、合成类似物和QQ菌株,研究人员提出了有效的方法来缓解与生物膜相关的问题,而不会对微生物处理过程产生不利影响。固定化QQ酶的创新应用和将QQ菌株整合到mbr中,在减少污染和保持运行稳定性方面显示出良好的效果。这篇综述强调了QS操作在促进有益微生物过程和控制有害微生物过程方面的双重潜力。通过深入了解QS/QQ路径的潜在机制和实际应用,学者们有望在废水处理等领域开发出更高效、可持续的环境生物技术解决方案。
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来源期刊
ACS ES&T engineering
ACS ES&T engineering ENGINEERING, ENVIRONMENTAL-
CiteScore
8.50
自引率
0.00%
发文量
0
期刊介绍: ACS ES&T Engineering publishes impactful research and review articles across all realms of environmental technology and engineering, employing a rigorous peer-review process. As a specialized journal, it aims to provide an international platform for research and innovation, inviting contributions on materials technologies, processes, data analytics, and engineering systems that can effectively manage, protect, and remediate air, water, and soil quality, as well as treat wastes and recover resources. The journal encourages research that supports informed decision-making within complex engineered systems and is grounded in mechanistic science and analytics, describing intricate environmental engineering systems. It considers papers presenting novel advancements, spanning from laboratory discovery to field-based application. However, case or demonstration studies lacking significant scientific advancements and technological innovations are not within its scope. Contributions containing experimental and/or theoretical methods, rooted in engineering principles and integrated with knowledge from other disciplines, are welcomed.
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