Marina S Mingazova, Elena P Miroshnikova, Azamat Е Arinzhanov, Yulia V Kilyakova
Animal Husbandry and Fodder Production. 2024. Vol. 107, no 1. Р. 128-146.
doi:10.33284/2658-3135-107-1-128
Review article
General understanding of bacterial quorum sensing and use of quorum inhibitors in aquaculture (review)
Marina S Mingazova1,5, Elena P Miroshnikova2, Azamat Е Arinzhanov3, Yulia V Kilyakova4
1,2,3,4Orenburg State University, Orenburg, Russia
5 Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, Orenburg, Russia
1,5ms.mingazova@gmail.com, https://orcid.org/0000-0002-2818-1312
2elenaakva@rambler.ru, https://orcid.org/0000-0003-3804-5151
4arin.azamat@mail.ru, https://orcid.org/0000-0001-6534-71185fish-ka06@mail.ru, https://orcid.org/0000-0002-2385-264X
Abstract. The development of antibiotic resistance leads to the search for new solutions in the field of improving the quality of finished products and reducing the negative impact on the end user. Aquaculture being an actively developing industry imposes serious requirements on products, including reducing the incidence of diseases among farmed fish and reducing the use of antibiotics. Among the alternative drugs, there are various feed additives (pro-, prebiotics, phytogenic drugs) that can replace antibiotics without harm to the body of hydrobionts. A new branch is the study of quorum sensing bacteria and its effect on pathogenic organisms. Recent studies have shown that the use of quorum inhibitors can become a promising replacement for antibiotics without harm to the body and the end user. The main action of inhibitors is aimed at blocking the interaction of N-Acyl homoserine lactone with signaling receptors, which leads to inhibition of the expression of virulence-related genes. Scientists from different countries have conducted research on the effect of inhibitors on pathogenic bacteria for hydrobionts. The review presents information about quorum sensing of bacteria and general data on the study of quorum inhibitors that can become promising components in the feeding of hydrobionts.
Keywords: aquaculture, hydrobionts, fish, quorum sensing, quorum inhibitors, microbial community, pathogens
Acknowledgments: the work was supported by the Russian Science Foundation, Project No. 23-76-10054.
For citation: Mingazova MS, Miroshnikova EP, Arinzhanov AЕ, Kilyakova YuV. General understanding of bacterial quorum sensing and use of quorum inhibitors in aquaculture (review). Animal Husbandry and Fodder Production. 2024;107(1):128-146. (In Russ.). https://doi.org/10.33284/2658-3135-107-1-128
References
- Arinzhanova MS, Miroshnikova EP, Arinzhanov AЕ, Kilyakova JuV. Influence of a complex of amino acids and ultrafine particles of silicon dioxide on the growth of fish and the amino acid composition of the liver. Agrarian Scientific Journal. 2023;2:82-85. doi: 10.28983/asj.y2022i2pp82-85
- Kilyakova YuV, Miroshnikova EP, Arinzhanov AE, Arinzhanova MS. Influence of phytobiotic feed additives on growth and morphobiochemical parameters of fish blood. Animal Husbandry and Fodder Production. 2022;105(3):115-125. doi: 10.33284/2658-3135-105-3-115
- Zueva MS. Modern experience of including biologically active feed additives in the diet of fish. Animal Husbandry and Fodder Production. 2022;105(4):146-164. doi: 10.33284/2658-3135-105-4-146
- Mingazova MS, Miroshnikova EP, Arinzhanov AЕ, Kilyakova YuV. Concentration of chemical elements in carp muscle tissue when biologically active substances are included in the diet. Animal Husbandry and Fodder Production. 2023;106(4):18-29. doi: 10.33284/2658-3135-106-4-18
- Miroshnikova EP, Arinzhanov AE, Kilyakova YV, Zueva MS. Assessment of the elemental status of carp grown on a diet with the inclusion of probiotic preparations. Technologies of the Food and Processing Industry of the Agro-industrial Complex-Healthy Food Products. 2022;1:83-88. doi: 10.24412/2311-6447-2022-1-83-88
- Abdel-Tawwab M, Adeshina I, Jenyo-Oni A, Ajani EK, Emikpe BO. Growth, physiological, antioxidants, and immune response of African catfish, Clarias gariepinus (B.), to dietary clove basil, Ocimum gratissimum, leaf extract and its susceptibility to Listeria monocytogenes Fish & Shellfish Immunology. 2018;78:346-354. doi: 10.1016/j.fsi.2018.04.057
- Abisado RG, Benomar S, Klaus JR, Dandekar AA, Chandler JR. Bacterial quorum sensing and microbial community interactions. mBio. 2018;9(3):e02331-17. doi: 10.1128/mBio.02331-17
- Adams A. Progress, challenges and opportunities in fish vaccine development. Fish & Shellfish Immunology. 2019;90:210- doi: 10.1016/j.fsi.2019.04.066
- Ahator SD, Zhang LH. Small is mighty-chemical communication systems in Pseudomonas aeruginosa. Annual Review of Microbiology. 2019;73:559- doi: 10.1146/annurev-micro-020518-120044
- Alexpandi R, Ponraj JG, Swasthikka RP, Abirami G, Ragupathi Th, Jayakumar R, Ravi AV. Anti-QS mediated anti-infection efficacy of probiotic culture-supernatant against Vibrio campbellii infection and the identification of active compounds through in vitro and in silico. Biocatalysis and Agricultural Biotechnology. 2021;35:102108. doi: 10.1016/j.bcab.2021.102108
- Blandford MI, Taylor-Brown A, Schlacher Th, Nowak B, Polkinghorne A. Epitheliocystis in fish: An emerging aquaculture disease with a global impact. Transboundary and Emerging Diseases. 2018;65(6):1436-1446. doi: 1111/tbed.12908
- Chen B, Peng M, Tong W, Zhang Q, Song Z. The quorum quenching bacterium Bacillus licheniformis T-1 protects zebrafish against Aeromonas hydrophila Probiotics and Antimicrobial Proteins. 2020;12:160-171. doi: 10.1007/s12602-018-9495-7
- Chen J, Wang B, Lu Y, Guo Y, Sun J, Wei B, Zhang H, Wang H. Quorum sensing inhibitors from marine microorganisms and their synthetic derivatives. Marine Drugs. 2019;17(2):80. doi: 10.3390/md17020080
- Dai L, Wu TQ, Xiong YS, Ni HB, Ding Y, Zhang WC, Chu ShP, Ju Sh-Q, Yu J. Ibuprofen-mediated potential inhibition of biofilm development and quorum sensing in Pseudomonas aeruginosa. Life Sciences. 2019;237:116947. doi: 10.1016/j.lfs.2019.116947
- Dong YH, Xu JL, Li XZ, Zhang LH. AiiA, an enzyme that inactivates the acylhomoserine lactone quorum-sensing signal and attenuates the virulence of Erwinia carotovora. Proceedings of the National Academy of Sciences of the United States of America. 2000;97(7):3526-3531. doi: 10.1073/pnas.97.7.3526
- Eickhoff MJ, Bassler BL. SnapShot: bacterial quorum sensing. Cell. 2018;174(5):1328-el. doi: 10.1016/j.cell.2018.08.003
- El-Kurdi N, Abdulla H, Hanora A. Anti-quorum sensing activity of some marine bacteria isolated from different marine resources in Egypt. Biotechnology Letters. 2021;43(2):455- doi: 10.1007/s10529-020-03020-x
- Escobar-Mucino E, Arenas-Hernandez MMP, Luna-Guevara ML. Mechanisms of inhibition of quorum sensing as an alternative for the control of coli and Salmonella. Microorganisms. 2022;10(5):884. doi: 10.3390/microorganisms10050884
- Firmino JP, Galindo-Villegas J, Reyes-Lopez FE, Gisbert E. Phytogenic bioactive compounds shape fish mucosal immunity. Frontiers in Immunology. 2021;12:695973. doi: 10.3389/fimmu.2021.695973
- Fuqua C, Winans SC, Greenberg EP. Quorum sensing in bacteria: The LuxR-LuxI family of cell density-responsive transcriptional Journal of Bacteriology. 1994;176(2):269-275. doi: 10.1128/jb.176.2.269-275.1994
- Gajdacs M, Spengler G. The role of drug repurposing in the development of novel antimicrobial drugs: non-antibiotic pharmacological agents as quorum sensing-inhibitors. Antibiotics. 2019;8(4):270. doi: 10.3390/antibiotics8040270
- Ganesh PS, Rai VR. Attenuation of quorum-sensing-dependent virulence factors and biofilm formation by medicinal plants against antibiotic resistant Pseudomonas aeruginosa. Journal of Traditional and Complementary Medicine. 2018;8(1):170- doi: 10.1016/j.jtcme.2017.05.008
- Garcia-Contreras R, Wood TK, Tomas M. Editorial: Quorum Network (Sensing/Quenching) in Multidrug-Resistant Pathogens. Frontiers in Cellular and Infection Microbiology. 2019;9:80. doi: 10.3389/fcimb.2019.00080
- Garza M, Mohan ChV, Rahman M, Wieland B, Hasler B. The role of infectious disease impact in informing decision-making for animal health management in aquaculture systems in Bangladesh. Preventive Veterinary Medicine. 2019;167:202- doi: 10.1016/j.prevetmed.2018.03.004
- Girard L. Quorum sensing in Vibrio: the complexity of multiple signaling molecules in marine and aquatic environments. Critical Reviews in Microbiology. 2019;45(4):451-471. doi: 10.1080/1040841X.2019.1624499
- Gupta DS, Kumar MS. The implications of quorum sensing inhibition in bacterial antibiotic resistance- with a special focus on aquaculture. Journal of Microbiological Methods. 2022;203:106602. doi: 10.1016/j.mimet.2022.106602
- Hasan KN. Banerjee G. Recent studies on probiotics as beneficial mediator in aquaculture: a review. The Journal of Basic and Applied Zoology. 2020;81:53. doi: 10.1186/s41936-020-00190-y
- Huang X, Ma Y, Wang Y, Niu Ch, Liu Zh, Yao X, Jiang X, Pan R, Jia Sh, Li D, Guan X, Wang L, Xu Y. Oral probiotic vaccine expressing koi herpesvirus (KHV) ORF81 protein delivered by chitosan-alginate capsules is a promising strategy for mass oral vaccination of carps against KHV infection. Journal of Virology. 2021;95(12):e00415-21. doi: 10.1128/JVI.00415-21
- Iorizzo M, Albanese G, Letizia F, Testa B, Tremonte P, Vergalito F, Lombardi SJ, Succi M, Coppola R, Sorrentino E. Probiotic potentiality from versatile Lactiplantibacillus plantarum strains as resource to enhance freshwater fish health. Microorganism. 2022;10(2):463. doi: 10.3390/microorganisms10020463
- James G, Das BC, Jose S, Kumar VJR. Bacillus as an aquaculture friendly microbe. Aquaculture International. 2021;29:323- doi: 10.1007/s10499-020-00630-0
- James G, Geetha PP, Puthiyedathu ST, Jayadradhan RKV. Applications of Actinobacteria in aquaculture: prospects and challenges. 3 Biotech. 2023;13:42. doi: 10.1007/s13205-023-03465-7
- Jia Sh, Zhou K, Pan R, Wei J, Liu Zh, Xu Y. Oral immunization of carps with chitosan-alginate microcapsule containing probiotic expressing spring viremia of carp virus (SVCV) G protein provides effective protection against SVCV infection. Fish & Shellfish Immunology. 2020;105:327-329. doi: 10.1016/j.fsi.2020.07.052
- Jiang Q, Chen J, Yang Ch, Yin Y, Yao K. Quorum sensing: a prospective therapeutic target for bacterial diseases. BioMed Research International. 2019;2019:2015978. doi: 10.1155/2019/2015978
- Kalia VC, Patel SKS, Kang YCh, Lee J-K. Quorum sensing inhibitors as antipathogens: biotechnological applications. Biotechnology Advances. 2019;37(1):68- doi: 10.1016/j.biotechadv.2018.11.006
- Karuppiah V, Seralathan M. Quorum sensing inhibitory potential of vaccenic acid against Chromobacterium violaceum and methicillin-resistant Staphylococcus aureus. World Journal of Microbiology and Biotechnology. 2022;38:146. doi: 10.1007/s11274-022-03335-z
- Kasanah N, Ulfah M, Rowley DC. Natural products as antivibrio agents: insight into the chemistry and biological activity. RCS Advances. 2022;12(53):34531- doi: 10.1039/d2ra05076e
- Krzyzek P. Challenges and limitations of anti-quorum sensing therapies. Frontiers in Microbiology. 2019;10:2473. doi: 10.3389/fmicb.2019.02473
- Li J, Li Zh, Xie J, Xia Y, Gong W, Tian J, Zhang K, Yu E, Wang G. Quorum-quenching potential of recombinant PvdQ-engineered bacteria for biofilm formation. International Microbiology. 2023;26(3):639-650. doi: 10.1007/s10123-023-00329-1
- Liang Q, Liu G, Guo Z, Wang Y, Xu Z, Ren Y, Zhang Q, Cui M, Zhao X, Xu D. Application of potential probiotic strain Streptomyces SH5 on anti-Aeromonas infection in zebrafish larvae. Fish & Shellfish Immunology. 2022;127:375-385. doi: 10.1016/j.fsi.2022.06.049
- Liu J, Fu K, Wu Ch, Qin K, Li F, Zhou L. “In-Group” communication in marine Vibrio: a review of N-Acyl homoserine lactones-driven quorum sensing. Frontiers in Cellular and Infection Microbiology. 2018;8:139. doi: 10.3389/fcimb.2018.00139
- Liu Y, Ebalunode JO, Briggs JM. Insights into the substrate binding specificity of quorum-quenching acylase PvdQ. Journal of Molecular Graphics and Modelling. 2019;88:104- doi: 10.1016/j.jmgm.2019.01.006
- Longo SB, Clark B, York R, Jorgenson AK. Aquaculture and the displacement of fisheries captures. Conservation Biology. 2019;33(4):832-841. doi: 10.1111/cobi.13295
- Lulijwa R, Rupia E J, Alfaro AC. Antibiotic use in aquaculture, policies and regulation, health and environmental risks: a review of the top 15 major producers. Reviews in Aquaculture. 2019;12(2):640- doi: 10.1111/raq.12344
- Mai T, Toullec J, Wynsberge SV, Besson M, Soulet S, Petek S, Aliotti E, Ekins M, Hall K, Erpenbeck D, Lecchini D, Beniddir MA, Saulnier D, Debitus C. Potential of fascaplysin and palauolide from Fascaplysinopsis cf reticulata to reduce the risk of bacterial infection in fish farming. Fisheries and Aquatic Sciences. 2019;22:30. doi: 10.1186/s41240-019-0145-0
- Milivojevic D, Sumonja N, Medic S, Pavic A, Moric I, Vasiljevic V, Senerovic L, Nikodinovic-Runic J. Biofilm-forming ability and infection potential of Pseudomonas aeruginosa strains isolated from animals and humans. Pathogens and Disease. 2018;76(4):fty041. doi: 10.1093/femspd/fty041
- Mugwanya M, Dawood MAO, Kimera F, Sewilam H. Updating the role of probiotics, prebiotics, and synbiotics for tilapia aquaculture as leading candidates for food sustainability: a review. Probiotics and Antimicrobial Proteins. 2022;14:130- doi: 10.1007/s12602-021-09852-x
- Mukherjee S, Bassler BL. Bacterial quorum sensing in complex and dynamically changing environments. Nature Reviews 2019;17(6):371-382. doi: 10.1038/s41579-019-0186-5
- Nathalia O, Waturangi DE. Extract from phyllosphere bacteria with antibiofilm and quorum quenching activity to control several fish pathogenic bacteria. BMC Research Notes. 2021;14(1):202. doi: 10.1186/s13104-021-05612-w
- Noor NM, Defoirdt T, Alipiah N, Karim M, Daud H, Natrah I. Quorum sensing is required for full virulence of Vibrio campbellii towards tiger grouper (Epinephelus fuscoguttatus). Journal of Fish Diseases. 2019;42(4):489- doi: 10.1111/jfd.12946
- Oluwabusola ET, Katermeran NP, Poh WH, Goh MB, Tan LT, Diyaolu O, Tabudravu J, Ebel R, Rice SA, Jaspars M. Inhibition of the quorum sensing system, elastase production and biofilm formation in Pseudomonas aeruginosa by psammaplin a and bisaprasin. Molecules. 2022;27(5):1721. doi: 10.3390/molecules27051721
- Padder SA, Prasad R, Shah AH. Quorum sensing: A less known mode of communication among fungi. Microbiological Research. 2018;210:51- doi: 10.1016/j.micres.2018.03.007
- Padra JT, Loibman SO, Thorell K, Sundh H, Sundell K, Linden SK. Atlantic salmon mucins inhibit luxs-dependent Salmonicida AI-2 quorum sensing in an n-acetylneuraminic acid-dependent manner. International Journal of Molecular Sciences. 2022;23(8):4326. doi: 10.3390/ijms23084326
- Pang Zh, Raudonis R, Glick BR, Lin TJ, Cheng Zh. Antibiotic resistance in Pseudomonas aeruginosa: mechanisms and alternative therapeutic strategies. Biotechnology Advances. 2019;37(1):177- doi: 10.1016/j.biotechadv.2018.11.013
- Paopradit P, Aksonkird T, Mittraparp P. Indole inhibits quorum sensing-dependent phenotypes and virulence of acute hepatopancreatic necrosis disease-causing Vibrio parahaemolyticus. Aquaculture Research. 2022;53(10):3586- doi: 10.1111/are.15863
- Pelusio NF, Rossi B, Parma L, Volpe E, Ciulli S, Piva A, D'Amico F, Scicchitano D, Candela M, Gatta PP, Bonaldo A, Grilli E. Effects of increasing dietary level of organic acids and nature-identical compounds on growth, intestinal cytokine gene expression and gut microbiota of rainbow trout (Oncorhynchus mykiss) reared at normal and high temperature. Fish & Shellfish Immunology. 2020;107(Part A):324-335. doi: 10.1016/j.fsi.2020.10.021
- Perez-Sanchez T, Mora-Sanchez B, Balcazar JL. Biological approaches for disease control in aquaculture: advantages, limitations and challenges. Trends in Microbiology. 2018;26(11):896- doi: 10.1016/j.tim.2018.05.002
- Qais FA, Khan MS, Ahmad I, Husain FM, Khan RA, Hassan I, Shahzad SA, AlHarbi W. Coumarin exhibits broad-spectrum antibiofilm and antiquorum sensing activity against gram-negative bacteria: In Vitro and In Silico. ACS Omega. 2021;6(29):18823- doi: 10.1021/acsomega.1c02046
- Raissa G, Waturangi DE, Wahjuningrum D. Screening of antibiofilm and anti-quorum sensing activty of Actinomycetes isolates extracts against aquaculture pathogenic bacteria. BMC Microbiology. 2020;20(1):343. doi: 10.1186/s12866-020-02022-z
- Reina JC, Pérez-Victoria I, Martín J, Llamas I. A quorum-sensing inhibitor strain of Vibrio alginolyticus blocks qs-controlled phenotypes in Chromobacterium violaceum and Pseudomonas aeruginosa. Marine Drugs. 2019;17(9):494. doi: 3390/md17090494
- Reina JC, Romero M, Salto R, Camara M, Llamas I. AhaP, a quorum quenching acylase from Psychrobacter M9-54-1 that attenuates Pseudomonas aeruginosa and Vibrio coralliilyticus virulence. Marine Drugs. 2021:19(1):16. doi: 10.3390/md19010016
- Rezende RAE, Soares MP, Sampaio FG, Cardoso IL, Ishikawa MM, Dallago BSL, Rantin FT, Duarte MCT. Phytobiotics blend as a dietary supplement for Nile tilapia health improvement. Fish & Shellfish Immunology. 2021;114:293- doi: 10.1016/j.fsi.2021.05.010
- Ruiz CH, Osorio-Llanes E, Trespalacios MH, Mendoza-Torres E, Rosales W, Melendez Gomez CM. Quorum Sensing regulation as a target for antimicrobial therapy. Mini Reviews in Medicinal Chemistry. 2022;22(6):848- doi: 10.2174/1389557521666211202115259
- Santhakumaria S, Jayakumar R, Logalakshmi R, Prabhu NM, Nazar AKA, Pandian SK, Ravi AV. In vitro and in vivo effect of 2,6-Di-tert-butyl-4-methylphenol as an antibiofilm agent against quorum sensing mediated biofilm formation of Vibrio International Journal of Food Microbiology. 2018;281:60-71. doi: 10.1016/j.ijfoodmicro.2018.05.024
- Santos RA, Monteiro M, Rangel F, Jerusik R, Saavedra MJ, Carvalho AP, Oliva-Teles A, Serra CR. Bacillus inhibit Edwardsiella tarda quorum-sensing and fish infection. Marine Drugs. 2021;19(11):602. doi: 10.3390/md19110602
- Shaw E, Wuest WM. Virulence attenuating combination therapy: a potential multi-target synergy approach to treat Pseudomonas aeruginosa infections in cystic fibrosis patients. RSC Medicinal Chemistry. 2020;11(3):358- doi: 10.1039/c9md00566h
- Shrestha P, Cooper BS, Coast J, Oppong R, Thuy NDT, Phodha T, Celhay O, Guerin PhJ, Wertheim H, Lubell Y. Enumerating the economic cost of antimicrobial resistance per antibiotic consumed to inform the evaluation of interventions affecting their use. Antimicrobial Resistance & Infection Control. 2018;7:98. doi: 10.1186/s13756-018-0384-3
- Sindeldecker D, Stoodley P. The many antibiotic resistance and tolerance strategies of Pseudomonas aeruginosa. 2021;3:100056. doi: 10.1016/j.bioflm.2021.100056
- Soukarieh F, Williams P, Stocks MJ, Camara M. Pseudomonas aeruginosa quorum sensing systems as drug discovery targets: current position and future perspectives. Journal of Medical Chemistry. 2018;61(23):10385- doi: 10.1021/acs.jmedchem.8b00540
- Sun Y, Guo D, Hua Z, Sun H, Zheng Z, Xia X, Shi Ch. Attenuation of multiple Vibrio parahaemolyticus virulence factors by citral. Frontiers in Microbiology. 2019;10:894. doi: 10.3389/fmicb.2019.00894
- Torabi Delshad S, Soltanian S, Sharifiyazdi H, Haghkhah M, Bossier P. Identification of N-acyl homoserine lactone-degrading bacteria isolated from rainbow trout (Oncorhynchus mykiss). Journal of Applied Microbiology. 2018;125(2):356- doi: 10.1111/jam.13891
- Torres M, Dessaux Y, Llamas I. Saline environments as a source of potential quorum sensing disruptors to control bacterial infections: a review. Marine Drugs. 2019;17(3):191. doi: 3390/md17030191
- Torres M, Reina JC, Fuentes-Monteverde JC, Fernandez G, Rodriguez J, Jimenez C, Llamas I. AHL-lactonase expression in three marine emerging pathogenic Vibrio reduces virulence and mortality in brine shrimp (Artemia salina) and Manila clam (Venerupis philippinarum). PloS one. 2018;13(4):e0195176. doi: 10.1371/journal.pone.0195176
- Vadassery DH, Pillari D. Quorum quenching potential of Enterococcus faecium QQ12 isolated from gastrointestinal tract of Oreochromis niloticus and its application as a probiotic for the control of Aeromonas hydrophila infection in goldfish Carassius auratus (Linnaeus 1758). Brazilian Journal of Microbiology. 2020;51:1333- doi: 10.1007/s42770-020-00230-3
- Vasudevan S, Swamy SS, Kaur G, Princy SA, Balamurugan P. Synergism between quorum sensing inhibitors and antibiotics: combating the antibiotic resistance crisis. In: Kalia VC, editor. Biotechnological Applications of Quorum Sensing Inhibitors. Singapore: Springer; 2018:209- doi: 10.1007/978-981-10-9026-4_10
- Xie J, Bu L, Jin Sh, Wang X, Zhao Q, Zhou S, Xu Y. Outbreak of vibriosis caused by Vibrio harveyi and Vibrio alginolyticus in farmed seahorse Hippocampus kuda in China. Aquaculture. 2020;523:735168. doi: 10.1016/j.aquaculture.2020.735168
- Yusof NAM, Razali SA, Padzil AM, Lau BYCh, Baharum SN, Muhammad NAN, Raston NHA, Chong ChM, Ikhsan NFM, Situmorang ML, Fei LCh. Computationally designed Anti-LuxP DNA aptamer suppressed flagellar assembly- and quorum sensing-related gene expression in Vibrio parahaemolyticus. Biology (Basel). 2022;11(11):1600. doi: 10.3390/biology11111600
- Zeng YX, Liu JSh, Wang YJ, Tang Sh, Wang DY, Deng ShM, Jia AQ. Actinomycin D: a novel Pseudomonas aeruginosa quorum sensing inhibitor from the endophyte Streptomyces cyaneochromogenes World Journal of Microbiology and Biotechnology. 2022;38:170. doi: 10.1007/s11274-022-03360-y
- Zhang W, Li Ch. Virulence mechanisms of vibrios belonging to the Splendidus clade as aquaculture pathogens, from case studies and genome data. Reviews in Aquaculture. 2021;13(4):2004- doi: 10.1111/raq.12555
- Zhao X, Yu Z, Ding T. Quorum-Sensing Regulation of Antimicrobial Resistance in Bacteria. Microorganisms. 2020;8(3):425. doi: 10.3390/microorganisms8030425
Information about the authors:
Marina S Mingazova, Assistant of the Department of Biotechnology of Animal Raw Materials and Aquaculture, Orenburg State University, 13 Pobedy Ave, Orenburg, 460018, Postgraduate student of 2 year of study, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 29, 9 Yanvarya St., Orenburg, 460000, tel.: 8-922-853-24-46.
Elena P Miroshnikova, Dr. Sci. (Biology), Professor, Head of the Department of Biotechnology of Animal Raw Materials and Aquaculture, Orenburg State University, 13 Pobedy Ave, Orenburg, 460018, tel.: 8-987-862-98-86.
Azamat E Arinzhanov, Cand. Sci. (Agriculture), Associate Professor, Associate Professor of the Department of Biotechnology of Animal Raw Materials and Aquaculture, Orenburg State University, 13 Pobedy Ave, Orenburg, 460018, tel.: 8-922-806-33-43.
Yulia V Kilyakova, Cand. Sci. (Biology), Associate Professor, Associate Professor of the Department of Biotechnology of Animal Raw Materials and Aquaculture, Orenburg State University, 13 Pobedy Ave, Orenburg, 460018, tel.: 8-961-920-40-64.
The article was submitted 05.02.2024; approved after reviewing 16.02.2024; accepted for publication 18.03.2024.
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