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Sesamol:a novel quorum sensing inhibitor and colistin accelerator against Pseudomonas aeruginosa
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作者 Pengcheng Ji Kunyuan Yin +3 位作者 Yue Jiang Yulu Sun Wenqi Luo Jinwei Zhou 《Food Science and Human Wellness》 2025年第3期1158-1168,共11页
We assessed the quorum sensing(QS)inhibitory impact of sesamol against the foodborne bacterium Pseudomonas aeruginosa.At concentrations ranging from 50 to 200μg/mL,sesamol significantly inhibited the production of vi... We assessed the quorum sensing(QS)inhibitory impact of sesamol against the foodborne bacterium Pseudomonas aeruginosa.At concentrations ranging from 50 to 200μg/mL,sesamol significantly inhibited the production of virulence factors such as protease,elastase,pyocyanin,rhamnolipid,and chemotaxis,and improved the susceptibility of bacterial and biofilm cells to colistin.Integrated transcriptomics,metabolomics,and docking analyses indicated that exposure to sesamol destroyed the QS system and down-regulated the expressions of genes encoding virulence and antioxidant enzymes.The down-regulation of genes encoding antioxidant enzymes intensified oxidative stress,as demonstrated by the enhancement of reactive oxygen species and H_(2)O_(2).The enhanced oxidative stress changed the components of the cell membrane,improved its permeability,and ultimately enhanced the susceptibility of bacterial and biofilm cells to colistin.Moreover,exposure to sesamol also led to the disorder of amino acid metabolism and energy metabolism,eventually attenuating the pathogenicity of P.aeruginosa.These findings indicated that sesamol can function as a potent anti-virulence agent to defend against food spoilage caused by P.aeruginosa. 展开更多
关键词 SESAMOL Pseudomonas aeruginosa quorum sensing VIRULENCE BIOFILM
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The Role of the Quorum Sensing Signaling Pathway in Clinical Drug Resistance of Escherichia coli:A Review and Outlook
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作者 Chaolian Yang Bin Hu Chen Li 《Journal of Clinical and Nursing Research》 2025年第10期147-156,共10页
Quorum sensing(QS)represents a mechanism through which bacteria engage in communication via chemical signals,a phenomenon prevalent across diverse bacterial species.Recent investigations have elucidated that QS signal... Quorum sensing(QS)represents a mechanism through which bacteria engage in communication via chemical signals,a phenomenon prevalent across diverse bacterial species.Recent investigations have elucidated that QS signaling pathways are pivotal in governing bacterial physiological processes,collective behaviors,and the emergence of drug resistance.Escherichia coli(E.coli),a prominent pathogenic bacterium,is increasingly exhibiting severe drug resistance issues,posing substantial hurdles for clinical interventions.Presently,a burgeoning body of research is exploring the connection between QS signaling pathways and the drug resistance mechanisms in E.coli,unveiling the coordinating function of QS within bacterial communities and its influence on antibiotic resistance.Despite some research advancements,the precise mechanisms underlying the QS signaling pathway remain ambiguous,and its potential applications are somewhat constrained.This article endeavors to systematically review the research progress concerning the QS signaling pathway in the context of clinical drug resistance mechanisms in E.coli,delving into its potential clinical applications and future research avenues,with the aim of offering novel insights and strategies to counteract drug resistance. 展开更多
关键词 Antibiotic resistance BIOFILM Escherichia coli quorum sensing QS inhibitors
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Inhibition mechanism of quorum sensing and biofilm formation of Pseudomonas fluorescens by a novel quorum quenching bacteria Checkfor updates Lactiplantibacillus plantarum YP4-1-2
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作者 Xinran Lü Yangrui Wang +9 位作者 Dongyu Chang Fengling Bai Xin Wen Mengmin Lü Xueqing Liu Jianrong Li Xuepeng Li Defu Zhang Yuqiong Meng Rui Ma 《Food Science and Human Wellness》 2025年第12期5079-5090,共12页
Pseudomonas fluorescens is a widespread spoilage bacterium in food,and its spoilage characteristics and biofilm formation are regulated by N-acyl-homoserine lactone(AHLs)quorum sensing(QS)system.Quorum quenching(QQ)is... Pseudomonas fluorescens is a widespread spoilage bacterium in food,and its spoilage characteristics and biofilm formation are regulated by N-acyl-homoserine lactone(AHLs)quorum sensing(QS)system.Quorum quenching(QQ)is considered as an effective strategy to control the spoilage bacteria.Therefore,this study revealed a new QQ bacteria Lactiplantibacillus plantarumYP4-1-2.Notably,the crude cell extract(CCE)from L.plantarum YP4-1-2 showed strongly QQ activity against the AHLs of P.fluorescens.The degradation rate of AHLs(N-octanoyl-L-homoserine lactone)reached 25.90%,78.57%and 100%at theCCE protein concentrations of 57,86 and 114 g/mL,respectively.In addition,the CCE could drastically reduce the formation of biofilm,bacterial motility(swimming and swarming),and the release of extracellular protease and biogenic amines of P.fluorescens.Real-time polymerase chain reaction(PCR)results revealed that the CCE downregulated QS-related genes(rhlI,rhlR,aprX,algA,orm,flgA,and ldcA).Finally,using whole-genome sequencing analysis,the active substance in the CCE was identified to be penicillin V acylase(PVA)and named LpPVA.Meanwhile,homologous modeling and molecular docking analysis showed that the binding effect of LpPVA on long-chain AHLs was better than that on short-chain AHLs.This study demonstrated that L.plantarum YP4-1-2 could be considered as a promising QS inhibitor and antibiofilm agent against foodborne spoilage bacteria. 展开更多
关键词 quorum sensing quorum quenching Pseudomonas fluorescens Lactiplantibacillus plantarum YP4-1-2 Penicillin V acylase
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Degradation of N-Acyl Homoserine Lactone Quorum Sensing Signals by Bacillus thuringiensis AHL Lactonase 被引量:1
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作者 Waeel H. Alramadhan Anthony Ejiofor Terrance Johnson 《Advances in Microbiology》 2023年第11期526-538,共13页
Bacterial cells rely on signaling molecules to communicate with others from the same species and induce certain genes in a process known as quorum sensing (QS). A common molecule is N-acyl homoserine lactone (AHL) whi... Bacterial cells rely on signaling molecules to communicate with others from the same species and induce certain genes in a process known as quorum sensing (QS). A common molecule is N-acyl homoserine lactone (AHL) which is responsible for the expression of virulence and other factors that allow the organisms to compete in a given environment. On the other hand, other bacteria produce certain enzymes such as AHL-lactonase that break down AHL molecules and prevent gene expression of these factors. The aim of this work was to examine the level of degradation of AHL molecules by AHL-lactonase in 62 Bacillus thuringiensis (Bt) strains isolated from Middle Tennessee, Mississippi, and Alabama. N-hexanoyl-homoserine lactone (C<sub>6</sub>-HSL) and N-3-oxo-hexanoyl homoserine lactone (3-oxo-C<sub>6</sub>-HSL), which cause Chromobacterium violaceum (CV026) to produce a purple pigment were tested at different concentrations to view the Bt lactonase activity. In addition, PCR was used to test for the presence of the lactonase gene. The results showed that among the 62 Bt strains, there were 58 that possessed the AHL-lactonase (aiiA) gene and 48 strains were able to degrade C<sub>6</sub>-HSL. At high concentrations of AHL, only 13 strains were able to completely degrade C6-HSL. In addition, degradation of 3-oxo-C<sub>6</sub>-HSL was weak compared to C<sub>6</sub>-HSL. The results also revealed that AHL lactonase was thermostable, and it was concluded that the level of degradation varies in Bt strains. Only 13 of the strains studied have potent inhibitory activity against C<sub>6</sub>-HSL, which may be good to be used in field applications to control agricultural pest. 展开更多
关键词 quorum sensing quorum sensing Inhibitor N-Acyl Homoserine Lactone AHL Lactonase Bacillus thuringiensis CV026
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Role of quorum sensing in bacterial infections 被引量:17
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作者 Israel Castillo-Juárez Toshinari Maeda +5 位作者 Edna Ayerim Mandujano-Tinoco María Tomás Berenice Pérez-Eretza Silvia Julieta García-Contreras Thomas K Wood Rodolfo García-Contreras 《World Journal of Clinical Cases》 SCIE 2015年第7期575-598,共24页
Quorum sensing(QS) is cell communication that is widely used by bacterial pathogens to coordinate the expression of several collective traits, including the production of multiple virulence factors, biofilm formation,... Quorum sensing(QS) is cell communication that is widely used by bacterial pathogens to coordinate the expression of several collective traits, including the production of multiple virulence factors, biofilm formation, and swarming motility once a population threshold is reached. Several lines of evidence indicate that QS enhances virulence of bacterial pathogens in animal models as well as in human infections; however, its relative importance for bacterial pathogenesis is still incomplete. In this review, we discuss the present evidence from in vitro and in vivo experiments in animal models, as well as from clinical studies, that link QS systems with human infections. We focus on two major QS bacterial models, the opportunistic Gram negative bacteria Pseudomonas aeruginosa and the Gram positive Staphylococcus aureus, which are also two of the main agents responsible of nosocomial and wound infections. In addition, QS communication systems in other bacterial, eukaryotic pathogens, and even immune and cancer cells are also reviewed, and finally, the new approaches proposed to combat bacterial infections by the attenuation of their QS communication systems and virulence are also discussed. 展开更多
关键词 quorum sensing VIRULENCE INFECTIONS Pseudomonas aeruginosa Staphylococcus aureus Animal models
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LsrR-binding site recognition and regulatory characteristics in Escherichia coli AI-2 quorum sensing 被引量:13
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作者 Ting Xue Liping Zhao +2 位作者 Haipeng Sun Xianxuan Zhou Baolin Sun 《Cell Research》 SCIE CAS CSCD 2009年第11期1258-1268,共11页
In quorum sensing (QS) process, bacteria regulate gene expression by utilizing small signaling molecules called autoinducers in response to a variety of environmental cues. Autoinducer 2 (AI-2), a QS signaling mol... In quorum sensing (QS) process, bacteria regulate gene expression by utilizing small signaling molecules called autoinducers in response to a variety of environmental cues. Autoinducer 2 (AI-2), a QS signaling molecule proposed to be involved in interspecies communication, is produced by many species of gram-negative and gram-positive bacteria. In Escherichia coil and Salmonella typhimurium, the extracellular AI-2 is imported into the cell by a transporter encoded by the lsr operon. Upstream of the lsr operon, there is a divergently transcribed gene encoding LsrR, which was reported previously to repress the transcription of the lsr operon and itself. Here, we have demonstrated for the first time that LsrR represses the transcription of the lsr operon and itself by directly binding to their promoters using gel shift and DNase I footprinting assays. The β-galactosidase reporter assays further suggest that two motifs in both the lsrR and lsrA promoter regions are crucial for the LsrR binding. Furthermore, in agreement with the conclusion that phosphorylated AI-2 can relieve the repression of LsrR in previous studies, our data show that phospho- AI-2 renders LsrR unable to bind to its own promoter in vitro. 展开更多
关键词 quorum sensing LSRR AI-2
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Medicinal plant products targeting quorum sensing for combating bacterial infections 被引量:7
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作者 Abdelhakim Bouyahya Nadia Dakka +2 位作者 Abdeslam Et-Touys Jamal Abrini Youssef Bakri 《Asian Pacific Journal of Tropical Medicine》 SCIE CAS 2017年第8期795-809,共15页
Traditional treatment of infectious diseases is based on compounds that aim to kill or inhibit bacterial growth. The bacterial resistance against antibiotics is a serious issue for public health. Today, new therapeuti... Traditional treatment of infectious diseases is based on compounds that aim to kill or inhibit bacterial growth. The bacterial resistance against antibiotics is a serious issue for public health. Today, new therapeutic targets other than the bacterial wall were deciphered. Quorum sensing or bacterial pheromones are molecules called auto-inducer secreted by bacteria to regulate some functions such as antibiotic resistance and biofilms formation. This therapeutic target is well-studied worldwide, nevertheless the scientific data are not updated and only recent researches started to look into its potential as a target to fight against infectious diseases. A major concern with this approach is the frequently observed development of resistance to antimicrobial compounds. Therefore, this paper aims to provide a current overview of the quorum sensing system in bacteria by revealing their implication in biofilms formation and the development of antibiotic resistance, and an update on their importance as a potential target for natural substances. 展开更多
关键词 quorum sensing Biofilms Bacterial resistance Natural compounds
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Performance and role of N-acyl-homoserine lactone(AHL)-based quorum sensing(QS) in aerobic granules 被引量:6
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作者 Yaochen Li Junping Lv +3 位作者 Chen Zhong Wen Hao Yaqin Wang Jianrong Zhu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2014年第8期1615-1621,共7页
The present study investigated the relationship between N-acyl-homoserine lactone(AHL)-based quorum sensing(QS) and the physico-chemical properties of aerobic granules.Stable mature granules were observed in SBR2 ... The present study investigated the relationship between N-acyl-homoserine lactone(AHL)-based quorum sensing(QS) and the physico-chemical properties of aerobic granules.Stable mature granules were observed in SBR2 and SBR3 with average diameters of 0.96,and1.49 mm,respectively. The sludge densities of aerobic granules in SBR2 and SBR3 were1.0246,and 1.0201 g/mL,respectively,which were higher than that of flocculent sludge in SBR1(1.0065 g/mL). The results showed that the activity of AHL-based QS in SBR2 and SBR3 amounted to 2.4- and 2.1-fold induction,however,that in SBR1 with flocculent sludge was1.6-fold induction. In addition,the results also showed that the activity of AHL-based QS in the three reactors rose in the feast condition,and then dropped with the consumption of substrate. However,the activity of AHL-based QS in these three reactors recovered again in prolonged starvation. Furthermore,the results showed that the enhancement of AHL-based QS favored the extracellular polymeric substance production of microorganisms in activated sludge. Thus,it could be concluded that aerobic granules showed higher AHL-based QS than flocculent sludge,which resulted from the higher sludge density of aerobic granules than flocculent sludge. AHL-based QS was related to the metabolism energy in the feast condition; however,in prolonged starvation,microorganisms would emit more AHL-like molecules to protect themselves to resist starvation. Moreover,the enhancement of AHL-based QS favored the EPS component productivity of the microorganisms in activated sludge,which contributed to maintain the aerobic granular structure. 展开更多
关键词 Aerobic granules N-acyl-homoserine lactone quorum sensing Extracellular polymeric substances
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Gossip in the gut: Quorum sensing, a new player in the hostmicrobiota interactions 被引量:5
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作者 Garance Coquant Doriane Aguanno +5 位作者 Sandrine Pham Nathan Grellier Sophie Thenet Véronique Carrière Jean-Pierre Grill Philippe Seksik 《World Journal of Gastroenterology》 SCIE CAS 2021年第42期7247-7270,共24页
Bacteria are known to communicate with each other and regulate their activities in social networks by secreting and sensing signaling molecules called autoinducers,a process known as quorum sensing(QS).This is a growi... Bacteria are known to communicate with each other and regulate their activities in social networks by secreting and sensing signaling molecules called autoinducers,a process known as quorum sensing(QS).This is a growing area of research in which we are expanding our understanding of how bacteria collectively modify their behavior but are also involved in the crosstalk between the host and gut microbiome.This is particularly relevant in the case of pathologies associated with dysbiosis or disorders of the intestinal ecosystem.This review will examine the different QS systems and the evidence for their presence in the intestinal ecosystem.We will also provide clues on the role of QS molecules that may exert,directly or indirectly through their bacterial gossip,an influence on intestinal epithelial barrier function,intestinal inflammation,and intestinal carcinogenesis.This review aims to provide evidence on the role of QS molecules in gut physiology and the potential shared by this new player.Better understanding the impact of intestinal bacterial social networks and ultimately developing new therapeutic strategies to control intestinal disorders remains a challenge that needs to be addressed in the future. 展开更多
关键词 Inflammatory bowel disease quorum sensing Gut microbiota DYSBIOSIS INFLAMMATION Intestinal barrier
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Screening strategies for quorum sensing inhibitors in combating bacterial infections 被引量:5
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作者 Lan Lu Mingxing Li +7 位作者 Guojuan Yi Li Liao Qiang Cheng Jie Zhu Bin Zhang Yingying Wang Yong Chen Ming Zeng 《Journal of Pharmaceutical Analysis》 SCIE CAS CSCD 2022年第1期1-14,共14页
Interference with quorum sensing(QS)represents an antivirulence strategy with a significant promise for the treatment of bacterial infections and a new approach to restoring antibiotic tolerance.Over the past two deca... Interference with quorum sensing(QS)represents an antivirulence strategy with a significant promise for the treatment of bacterial infections and a new approach to restoring antibiotic tolerance.Over the past two decades,a novel series of studies have reported that quorum quenching approaches and the discovery of quorum sensing inhibitors(QSIs)have a strong impact on the discovery of anti-infective drugs against various types of bacteria.The discovery of QSI was demonstrated to be an appropriate strategy to expand the anti-infective therapeutic approaches to complement classical antibiotics and antimicrobial agents.For the discovery of QSIs,diverse approaches exist and develop in-step with the scale of screening as well as specific QS systems.This review highlights the latest findings in strategies and methodologies for QSI screening,involving activity-based screening with bioassays,chemical methods to seek bacterial QS pathways for QSI discovery,virtual screening for QSI screening,and other potential tools for interpreting QS signaling,which are innovative routes for future efforts to discover additional QSIs to combat bacterial infections. 展开更多
关键词 quorum sensing inhibitor quorum quenching Anti-infective agent Screening strategies
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Bioaugmentation and quorum sensing disruption as solutions to increase nitrate removal in sequencing batch reactors treating nitrate-rich wastewater 被引量:3
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作者 Xinyi Ruan Jun Yin +2 位作者 Xueyan Cui Na Li Dongsheng Shen 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2020年第12期179-185,共7页
Bioaugmentation of denitrifying bacteria can serve as a promising technique to improve nutrient removal during wastewater treatment. While denitrification inhibition by bacterial quorum sensing(QS) in Pseudomonas aeru... Bioaugmentation of denitrifying bacteria can serve as a promising technique to improve nutrient removal during wastewater treatment. While denitrification inhibition by bacterial quorum sensing(QS) in Pseudomonas aeruginosa has been indicated, the application of bacterial QS disruption to improve nitrate removal from wastewater has not been investigated. In this study, the effect of bioaugmentation of P. aeruginosa SD-1 on nitrate removal in sequencing batch reactors that treat nitrate rich wastewater was assessed. Additionally, the potential of a quorum sensing inhibitor(QSI) to improve denitrification following bacterial bioaugmentation was evaluated. Curcumin, a natural plant extract, was used as a QSI. The chemical oxygen demand(COD) and initial nitrate concentration of the influent were 700 ±20 mg/L and 200 ±10 mg/L respectively, and their respective concentrations in the effluent were 56.9 ±3.2 mg/L and 9.0 ±3.2 mg/L. Thus, the results revealed that bioaugmentation of P. aeruginosa SD-1 resulted in an increased nitrate removal to 82% ±1%. Further, nitrate was almost completely removed following the addition of the QSI, and activities of nitrate reductase and nitrite reductase increased by 88% ±2% and 74% ±2% respectively. The nitrogen mass balance indicated that aerobic denitrification was employed as the main pathway for nitrogen removal in the reactors. The results imply that bioaugmentation and modulation of QS in denitrifying bacteria, through the use of a QSI, can enhance nitrate removal during wastewater treatment. 展开更多
关键词 BIOAUGMENTATION DENITRIFICATION Nitrate removal quorum sensing inhibitor CURCUMIN
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An EAL domain protein and cyclic AMP contribute to the interaction between the two quorum sensing systems in Escherichia coli 被引量:2
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作者 Xianxuan Zhou Xiaoming Meng Baolin Sun 《Cell Research》 SCIE CAS CSCD 2008年第9期937-948,共12页
Quorum sensing (QS) is a bacterial cell-cell communication process by which bacteria communicate using extracellular signals called autoinducers. Two QS systems have been identified in Escherichia coli K-12, includi... Quorum sensing (QS) is a bacterial cell-cell communication process by which bacteria communicate using extracellular signals called autoinducers. Two QS systems have been identified in Escherichia coli K-12, including an intact QS system 2 that is stimulated by the cyclic AMP (cAMP)-cAMP receptor protein (CRP) complex and a partial QS system 1 that consists of SdiA (suppressor of cell division inhibitor) responding to signals generated by other microbial species. The relationship between QS system 1 and system 2 in E. coli, however, remains obscure. Here, we show that an EAL domain protein, encoded by ydiV, and cAMP are involved in the interaction between the two QS systems in E. coli. Expression of sdiA and ydiV is inhibited by glucose. SdiA binds to the ydiV promoter region in a dose-dependent, but nonspecific, manner; extracellular autoinducer 1 from other species stimulates ydiV expression in an sdiA-depen- dent manner. Furthermore, we discovered that the double sdiA-ydiV mutation, but not the single mutation, causes a 2-fold decrease in intracellular cAMP concentration that leads to the inhibition of QS system 2. These results indicate that signaling pathways that respond to important environmental cues, such as autoinducers and glucose, are linked together for their control in E. coli. 展开更多
关键词 quorum sensing ydi V CAMP
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Dynamics and Mechanism of A Quorum Sensing Network Regulated by Small RNAs in Vibrio Harveyi 被引量:1
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作者 SHEN Jian-Wei 《Communications in Theoretical Physics》 SCIE CAS CSCD 2011年第3期465-472,共8页
Bacterial quorum sensing (QS) has attracted much interests and it is an important process of cell communication. Recently, Bassler et al. studied the phenomena of QS regulated by small RNAs and the experimental data... Bacterial quorum sensing (QS) has attracted much interests and it is an important process of cell communication. Recently, Bassler et al. studied the phenomena of QS regulated by small RNAs and the experimental data showed that smafl RNAs played important role in the QS of Vibrio harveyi and it can permit the fine-tuning of gene regulation and mmntenance of homeostasis. According to Michaelis-Menten kinetics and mass action law in this paper, we construct a mathematical model to investigate the mechanism induced QS by coexist of small RNA and signal molecular (AI) and show that there are periodic oscillation when the time delay and Hill coefficient exceed a critical value and the periodic oscillation produces the change of concentration and induces QS. These results are fit to the experimental results. In the meanwhile, we also get some theoretical value of Hopf Bifurcation on time deday. In addition, we also find this network is robust against noise. 展开更多
关键词 quorum sensing genetic network OSCILLATION small RNA BIFURCATION negative feedback loop
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Initial detection of the quorum sensing autoinducer activity in the rumen of goats in vivo and in vitro 被引量:5
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作者 RAN Tao ZHOU Chuan-she +6 位作者 XU Li-wei GENG Mei-mei TAN Zhi-liang TANG Shao-xun WANG Min HAN Xue-feng KANG Jin-he 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第10期2343-2352,共10页
Quorum sensing(QS) is a type of microbe-microbe communication system that is widespread among the microbial world, particularly among microorganisms that are symbiotic with plants and animals. Thereby, the cell-cell... Quorum sensing(QS) is a type of microbe-microbe communication system that is widespread among the microbial world, particularly among microorganisms that are symbiotic with plants and animals. Thereby, the cell-cell signalling is likely to occur in an anaerobic rumen environment, which is a complex microbial ecosystem. In this study, using six ruminally fistulated Liuyang black goats as experimental animals, we aimed to detect the activity of quorum sensing autoinducers(AI) both in vivo and in vitro and to clone the lux S gene that encoded autoinducer-2(AI-2) synthase of microbial samples that were collected from the rumen of goats. Neutral detergent fiber(NDF) and soluble starch were the two types of substrates that were used for in vitro fermentation. The fermented fluid samples were collected at 0, 2, 4, 6, 8, 12, 24, 36, and 48 h of incubation. The acyl-homoserine lactones(AHLs) activity was determined using gas chromatography-mass spectrometer(GC-MS) analysis. However, none of the rumen fluid extracts that were collected from the goat rumen showed the same or similar fragmentation pattern to AHLs standards. Meanwhile, the AI-2 activity, assayed using a Vibrio harveyi BB170 bioassay, was negative in all samples that were collected from the goat rumen and from in vitro fermentation fluids. Our results indicated that the activities of AHLs and AI-2 were not detected in the ruminal contents from six goats and in ruminal fluids obtained from in vitro fermentation at different sampling time-points. However, the homologues of lux S in Prevotella ruminicola were cloned from in vivo and in vitro ruminal fluids. We concluded that AHLs and AI-2 could not be detected in in vivo and in vitro ruminal fluids of goats using the current detection techniques under current dietary conditions. However, the microbes that inhabited the goat rumen had the potential ability to secrete AI-2 signaling molecules and to communicate with each other via AI-2-mediated QS because of the presence of lux S. 展开更多
关键词 quorum sensing AHLs AI-2 lux S rumen bacteria goat
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Anti-quorum sensing and anti-biofilm formation activities of plant extracts from South Korea 被引量:1
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作者 Okhee Choi Dong-Wan Kang +7 位作者 Su Kyung Cho Yeyeong Lee Byeongsam Kang Juyoung Bae Seunghoe Kim Jeong Hoon Lee Seung Eun Lee Jinwoo Kim 《Asian Pacific Journal of Tropical Biomedicine》 SCIE CAS 2018年第8期411-417,共7页
Objective:To investigate anti-quorum sensing(anti-QS)and anti-biofilm formation(antiBF)activities of the ethanol extracts of 388 plants.Methods:The anti-QS activity of the plant extracts was evaluated by disc-diffusio... Objective:To investigate anti-quorum sensing(anti-QS)and anti-biofilm formation(antiBF)activities of the ethanol extracts of 388 plants.Methods:The anti-QS activity of the plant extracts was evaluated by disc-diffusion assays using the bio-reporter strain,Chromobacterium violaceum CV017.Pseudomonas aeruginosa PAO1,Yersinia enterocolitica ATCC 9610,and Agrobacterium tumefaciens C58,which possess QS systems,were used to evaluate the antiBF activity of the plant extracts.Results:Among 388 plant extracts,the Cornus controversa(C.controversa)and Cynanchum wilfordii extracts exhibited the strongest anti-QS activity.The C.controversa extract exhibited anti-BF activity against Pseudomonas aeruginosa,Yersinia enterocolitica and Agrobacterium tumefaciens,whereas the Cynanchum wilfordii extract exhibited no anti-BF activity against Pseudomonas aeruginosa.In addition,the C.controversa extract suppressed soft rot of cabbage.Conclusions:The C.controversa extract inhibits bacterial QS and BF,and is capable of controlling soft rot.Therefore,this extract has potential for the prevention and treatment of bacterial infections and for the development of alternatives to antibiotics. 展开更多
关键词 Plant extracts quorum sensing Biofilm formation Cornus controversa
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P_(luxI)mutants with different promoting period and their application for quorum sensing regulated protein expression 被引量:1
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作者 Zhuoning Cao Zhen Liu +1 位作者 Guilin Zhang Xiangzhao Mao 《Food Science and Human Wellness》 SCIE CSCD 2023年第5期1841-1849,共9页
Quorum sensing(QS)system can dynamically control the expression of proteins along with the cell growth.The promoting period of QS system has been little focused on until now.In this study,a self-induced dynamic regula... Quorum sensing(QS)system can dynamically control the expression of proteins along with the cell growth.The promoting period of QS system has been little focused on until now.In this study,a self-induced dynamic regulated expression(SIDRE)system was constructed in Escherichia coli.To enable the system suitable for the expression of enzymes,promoter engineering was used to obtain P_(luxI)mutants.To test the SIDRE system,alginate lyase AL493 and esterase Est7 were used as target protein for expression.The enzyme activity of alginate lyase and esterase reached 96.38%and 106.71%of the control strains containing the T7 promoter.In high-density fermentation,the activity of alginate lyase expressed by the SIDRE system with P_(luxI)(T-38C)as promoter was 4.34-fold of that expressed by the T7 promoter.Therefore,the P_(luxI)mutants with different promoting periods and/or different strengths show great potential in both laboratory and industrial scale for protein expression. 展开更多
关键词 quorum sensing Promoter engineering Enzymes Alginate lyase ESTERASE High-density fermentation
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Quantitative modeling of bacterial quorum sensing dynamics in time and space 被引量:1
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作者 Xiang Li Hong Qi +5 位作者 Xiao-Cui Zhang Fei Xu Zhi-Yong Yin Shi-Yang Huang Zhao-Shou Wang Jian-Wei Shuai 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第10期1-8,共8页
Quorum sensing (QS) refers to the cell communication through signaling molecules that regulate many important biological functions of bacteria by monitoring their population density. Although a wide spectrum of studie... Quorum sensing (QS) refers to the cell communication through signaling molecules that regulate many important biological functions of bacteria by monitoring their population density. Although a wide spectrum of studies on the QS system mechanisms have been carried out in experiments, mathematical modeling to explore the QS system has become a powerful approach as well. In this paper, we review the research progress of network modeling in bacterial QS to capture the system's underlying mechanisms. There are four types of QS system models for bacteria: the Gram-negative QS system model, the Gram-positive QS system model, the model for both Gram-negative and Gram-positive QS system, and the synthetic QS system model. These QS system models are mostly described by the ordinary differential equations (ODE) or partial differential equations (PDE) to study the changes of signaling molecule dynamics in time and space and the cell population density variations. Besides the deterministic simulations, the stochastic modeling approaches have also been introduced to discuss the noise effects on kinetics in QS systems. Taken together, these current modeling efforts advance our understanding of the QS system by providing systematic and quantitative dynamics description, which can hardly be obtained in experiments. 展开更多
关键词 hacterial quorum sensing signaling molecules mathematical modeling dynamic analysis
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Monooxygenase Gene from Acinetobacter sp. C42 Inactivates the Acyl Homoserine Lactone Quorum Sensing Signal 被引量:1
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作者 Aili TUREKE 《Agricultural Biotechnology》 CAS 2012年第5期30-33,39,共5页
[ Objective] This study aimed to investigate the function of aliD gene in the inactivation of AHLs. [ Method ] A bacterial isolate, Acinetobacter sp. CA2 from soil, is capable of inactivation of AHLs. A gene designed ... [ Objective] This study aimed to investigate the function of aliD gene in the inactivation of AHLs. [ Method ] A bacterial isolate, Acinetobacter sp. CA2 from soil, is capable of inactivation of AHLs. A gene designed as aliD, which is responsible for AHL-quenching activity and exhibits high similarity with Mo- nooxygenase genes, was cloned from the genomic library of Acinetobacter sp. CA2. [ Result ] The aliD gene in-frame deletion mutant, CA2 AliD, impaired its AHLs inactivating function when mixed with N-(3-oxooctanoyl) -L-homosefine lactone (30C8-HSL). Expression of AliD in plant pathogenic bacterium Pectobacterium ca- rotovorum subsp, carotovorum Z3-3 significantly reduced the AHLs production and the extracellular pectolytic enzyme activities, and attenuated soft rot disease symptoms on the plants tested, including potato, Chinese cabbage, radish and cabbage. [ Conclusion ] Our study suggests that the aliD gene complemented strain CA2-AliD showes a similar AHLs inactivating function. 展开更多
关键词 quorum sensing ACINETOBACTER Qcyl-homoserine lactones MONOOXYGENASE
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Homogentisic acid γ-lactone suppresses the virulence factors of Pseudomonas aeruginosa by quenching its quorum sensing signal molecules 被引量:2
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作者 Shuihong Li Polly H.M. Leung +1 位作者 Xinya Xu Chunhui Wu 《Chinese Chemical Letters》 SCIE CAS CSCD 2018年第2期313-316,共4页
Bacterial quorum sensing(QS) molecules are involved in the coordination of certain behaviors such as biofilm formation, virulence and antibiotic resistance. QS molecules(autoinducers) and their corresponding recep... Bacterial quorum sensing(QS) molecules are involved in the coordination of certain behaviors such as biofilm formation, virulence and antibiotic resistance. QS molecules(autoinducers) and their corresponding receptors have been recognized as important therapeutic targets for drug-resistant infections and biofilm-associated infections(BAI). This study assessed the multiple biological effects of homogentisic acid y-lactone(HgAL), a furanone derivative. The anti-QS and anti-biofilm effects of HgAL against PAO1 strain were evaluated using CLSM, SEM, HPLC and other biochemical methods The results showed that HgAL could effectively inhibit the production of pyocyanin and extracellular matrix, as well as reduce the adherence ability and biofilm formation of Pseudomonas aeruginosa. Inhibition of virulence is attributed to the suppressive effect of HgAL on biosynthesis of 3-oxo-C12-HSLand C4-HSL(two kinds of QS signaling molecules in P. aeruginosa). Our results support HgAL as a potential agent for prevention of BAI in the healthcare settings. 展开更多
关键词 Homogentisicacid γ-lactone quorum sensing Biofilm Pseudomonas aeruginosa Pyocyanin
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Biofilm Formation by Marine Cobetia marina alex and Pseudoaltero­monas spp: Development and Detection of Quorum Sensing N-Acyl Homoserine Lactones (AHLs) Molecules 被引量:2
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作者 Samia S.Abouelkheir Eman A.Abdelghany +1 位作者 Soraya A.Sabry Hanan A.Ghozlan 《Journal of Marine Science》 2021年第3期1-12,共12页
Surfaces submerged in seawater are colonized by various microorganisms,resulting in the formation of heterogenic marine biofilms.This work aims to evaluate the biofilm formation by Cobetia marina alex and doing a comp... Surfaces submerged in seawater are colonized by various microorganisms,resulting in the formation of heterogenic marine biofilms.This work aims to evaluate the biofilm formation by Cobetia marina alex and doing a comparative study between this promising strain with the two bacterial strains isolated previously from the Mediterranean seawater,Alexandria,Egypt.Three strains;Cobetia marina alex,Pseudoalteromonas sp.alex,and Pseudoalteromonas prydzensis alex were screened for biofilm formation using the crystal violet(CV)quantification method in a single culture.The values of biofilm formed were OD600=3.0,2.7,and 2.6,respectively leading to their selection for further evaluation.However,factors affecting biofilm formation by C.marina alex were investigated.Biofilm formation was evaluated in single and multispecies consortia.Synergistic and antagonistic interactions proved in this work lead to the belief that these bacteria have the capability to produce some interesting signal molecules N-acyl Homoserine Lactones(AHLs). 展开更多
关键词 quorum sensing BIOFILM Pseudoalteromonas prydzensis alex Pseudoalteromonas sp.alex Cobetia marina alex Extracellular polymeric substance(EPS)
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