Research progress of Vibrio parahaemolyticus virulence factors and drug resistance mechanism

  • ZHANG Jian ,
  • ZHU Qiuhua ,
  • ZHANG Ming ,
  • WANG Liwei ,
  • DONG Hao ,
  • ZENG Xiantong ,
  • BAI Wutong ,
  • GUO Xiaohua ,
  • SHEN Zhaohua ,
  • SONG Gang ,
  • ZHANG Defu ,
  • LI Jianrong
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  • 1(College of Food Science and Technology,Institute of Ocean,Bohai University;Food Safety Key Lab of Liaoning Province;National and Local Joint Engineering Research Center of Storage,Processing and Safety Control Technology for Fresh Agricultural and Aquatic Products,Jinzhou 121013,China)
    2(State Key Laboratory of Biochemical Engineering,Institute of Process Engineering, Chinese Academy of Sciences,Beijing 100190,China)
    3(Shandong Meijia Group Co.Ltd.,Rizhao 276806,China)
    4(Jinzhou Longhaixingang Science and Technology Co.Ltd.,Jinzhou 121211,China)
    5(Linghai Dalian Seafood Process Co.Ltd.,Jinzhou 121211,China)

Received date: 2021-02-03

  Revised date: 2021-05-24

  Online published: 2022-01-27

Abstract

Vibrio parahaemolyticus is one of the main pathogenic bacteria in aquatic products.It can cause diseases and deaths of aquaculture products,as well as gastroenteritis and other diseases in humans.It not only has potential food safety hazards,but also poses potential hazards to human health.This article mainly describes the virulence factor tdh of V.parahaemolyticus and the mechanism of the type III secretion system(T3SS),T3SS1 and T3SS2 in the strains,and five mechanisms of V.parahaemolyticus resistance to drugs were reviewed:production of biofilm,plasmid mediated drug resistance,the production of inactivated or inactivated enzymes,the efflux pump,and the change of drug targets.

Cite this article

ZHANG Jian , ZHU Qiuhua , ZHANG Ming , WANG Liwei , DONG Hao , ZENG Xiantong , BAI Wutong , GUO Xiaohua , SHEN Zhaohua , SONG Gang , ZHANG Defu , LI Jianrong . Research progress of Vibrio parahaemolyticus virulence factors and drug resistance mechanism[J]. Food and Fermentation Industries, 2022 , 48(1) : 301 -307 . DOI: 10.13995/j.cnki.11-1802/ts.026973

References

[1] 唐震,乔昕,秦思,等.2015—2017年江苏省水产品中副溶血性弧菌污染状况及毒力基因与耐药性[J].江苏预防医学,2018,29(4):378-381.
TANG Z,QIAO X,QIN S,et al.Analysis of contamination status,virulence genes distribution and drug resistance of Vibrio parahaemolyticus in aquatic products of Jiangsu Province from 2015 to 2017[J].Jiangsu Journal of Preventive Medicine,2018,29(4):378-381.
[2] 李薇薇,王三桃,梁进军,等.2013年中国大陆食源性疾病暴发监测资料分析[J].中国食品卫生杂志,2018,30(3):293-298.
LI W W,WANG S T,LIANG J J,et al.Analysis of foodborne disease outbreaks in China mainland in 2013[J].Chinese Journal of Food Hygiene,2018,30(3):293-298.
[3] LETCHUMANAN V,CHAN K G,PUSPARAJAH P,et al.Insights into bacteriophage application in controlling Vibrio species[J].Frontiers in Microbiology,2016,7:1114.
[4] TENA D,ARIAS M,ÁLVAREZ B T,et al.Fulminant necrotizing fasciitis due to Vibrio parahaemolyticus[J].Journal of Medical Microbiology,2010,59(Pt 2):235-238.
[5] 江艳华,姚琳,李风铃,等.青岛市售养殖海水虾中副溶血性弧菌的分离及耐药性分析[J].中国人兽共患病学报,2013,29(5):516-519.
JIANG Y H,YAO L,LI F L,et al.Isolation and antimicrobial resistance of Vibrio parahaemolyticus in farmed marine shrimps from Qingdao markets[J].Chinese Journal of Zoonoses,2013,29(5):516-519.
[6] GUTIERREZ WEST C K,KLEIN S L,LOVELL C R.High frequency of virulence factor genes tdh,trh,and tlh in Vibrio parahaemolyticus strains isolated from a pristine estuary[J].Applied and Environmental Microbiology,2013,79(7):2 247-2 252.
[7] LETCHUMANAN V,CHAN K G,LEE L H.Vibrio parahaemolyticus:A review on the pathogenesis,prevalence,and advance molecular identification techniques[J].Frontiers in Microbiology,2014,5:705.
[8] COSTA R A,ARAÙJO R L,DOS FERNANDES VIEIRARH S.Hemolytic and urease activities in Vibrios isolated from fresh and frozen oysters[J].Revista Da Sociedade Brasileira De Medicina Tropical,2013,46(1):103-105.
[9] HONDA T,NI Y X,MIWATANI T,et al.The thermostable direct hemolysin of Vibrio parahaemolyticus is a pore-forming toxin[J].Canadian Journal of Microbiology,1992,38(11):1 175-1 180.
[10] ZHANG L L,ORTH K.Virulence determinants for Vibrio parahaemolyticus infection[J].Current Opinion in Microbiology,2013,16(1):70-77.
[11] OHNISHI K,NAKAHIRA K,UNZAI S,et al.Relationship between heat-induced fibrillogenicity and hemolytic activity of thermostable direct hemolysin and a related hemolysin of Vibrio parahaemolyticus[J].FEMS Microbiology Letters,2011,318(1):10-17.
[12] DE KONING-WARD T F,ROBINS-BROWNE R M.Contribution of urease to acid tolerance in Yersinia enterocolitica[J].Infection and Immunity,1995,63(10):3 790-3 795.
[13] BURDETTE D L,SEEMANN J,ORTH K.Vibrio VopQ induces PI-3 kinase-independent autophagy and antagonizes phagocytosis[J].Molecular Microbiology,2009,73(4):639-649.
[14] BURDETTE D L,YARBROUGH M L,ORVEDAHL A,et al.Vibrio parahaemolyticus orchestrates a multifaceted host cell infection by induction of autophagy,cell rounding,and then cell lysis[J].PNAS,2008,105(34):12 497-12 502.
[15] LUONG P,KINCH L N,BRAUTIGAM C A,et al.Kinetic and structural insights into the mechanism of AMPylation by VopS fic domain[J].Journal of Biological Chemistry,2010,285(26):20 155-20 163.
[16] SALOMON D,GUO Y R,KINCH L N,et al.Effectors of animal and plant pathogens use a common domain to bind host phosphoinositides[J].Nature Communications,2013,4:2973.
[17] PARANJPYE R,HAMEL O S,STOJANOVSKI A,et al.Genetic diversity of clinical and environmental Vibrio parahaemolyticus strains from the Pacific Northwest[J].Applied and Environmental Microbiology,2012,78(24):8 631-8 638.
[18] HAM H,ORTH K.The role of type III secretion System 2 in Vibrio parahaemolyticus pathogenicity[J].Journal of Microbiology,2012,50(5):719-725.
[19] TROSKY J E,MUKHERJEE S,BURDETTE D L,et al.Inhibition of MAPK signaling pathways by VopA from Vibrio parahaemolyticus[J].Journal of Biological Chemistry,2004,279(50):51 953-51 957.
[20] BARBIERI J T,SUN J.Pseudomonas aeruginosa ExoS and ExoT[J].Reviews of Physiology,Biochemistry and Pharmacology,2004,152:79-92.
[21] ZHOU X H,MASSOL R H,NAKAMURA F,et al.Remodeling of the intestinal brush border underlies adhesion and virulence of an enteric pathogen[J].mBio,2014,5(4):e01639-14.
[22] ZHANG L L,KRACHLER A M,BROBERG C A,et al.Type III effector VopC mediates invasion for Vibrio species[J].Cell Reports,2012,1(5):453-460.
[23] OKADA R,ZHOU X H,HIYOSHI H,et al.The Vibrio parahaemolyticus effector VopC mediates Cdc42-dependent invasion of cultured cells but is not required for pathogenicity in an animal model of infection[J].Cellular Microbiology,2014,16(6):938-947.
[24] KODAMA T,ROKUDA M,PARK K S,et al.Identification and characterization of VopT,a novel ADP-ribosyltransferase effector protein secreted via the Vibrio parahaemolyticus type III secretion system 2[J].Cellular Microbiology,2007,9(11):2 598-2 609.
[25] CALDER T,KINCH L N,FERNANDEZ J,et al.Vibrio type III effector VPA1380 is related to the cysteine protease domain of large bacterial toxins[J].PLoS One,2014,9(8):e104387.
[26] FRIDMAN C M,KEPPEL K,GERLIC M,et al.A comparative genomics methodology reveals a widespread family of membrane-disrupting T6SS effectors[J].Nature Communications,2020,11:1085.
[27] JIANG N,TANG L,XIE R Q,et al.Retraction Note:Vibrio parahaemolyticus RhsP represents a widespread group of pro-effectors for type VI secretion systems[J].Nature Communications,2019,10:1 277.
[28] RUSSELL A B,PETERSON S B,MOUGOUS J D.Type VI secretion system effectors:Poisons with a purpose[J].Nature Reviews Microbiology,2014,12(2):137-148.
[29] JANA B,FRIDMAN C M,BOSIS E,et al.A modular effector with a DNase domain and a marker for T6SS substrates[J].Nature Communications,2019,10:3595.
[30] LEE L H,AB MUTALIB N S,LAW J W,et al.Discovery on antibiotic resistance patterns of Vibrio parahaemolyticus in Selangor reveals carbapenemase producing Vibrio parahaemolyticus in marine and freshwater fish[J].Frontiers in Microbiology,2018,9:2513.
[31] YANO Y,HAMANO K,SATOMI M,et al.Prevalence and antimicrobial susceptibility of Vibrio species related to food safety isolated from shrimp cultured at inland ponds in Thailand[J].Food Control,2014,38:30-36.
[32] COSTERTON J W,STEWART P S,GREENBERG E P.Bacterial biofilms:A common cause of persistent infections[J].Science,1999,284(5 418):1 318-1 322.
[33] MIZAN M F R,ASHRAFUDOULLA M,SADEKUZZAMAN M,et al.Effects of NaCl,glucose,and their combinations on biofilm formation on black tiger shrimp(Penaeus monodon) surfaces by Vibrio parahaemolyticus[J].Food Control,2018,89:203-209.
[34] ELEXSON N,AFSAH-HEJRI L,RUKAYADI Y,et al.Effect of detergents as antibacterial agents on biofilm of antibiotics-resistant Vibrio parahaemolyticus isolates[J].Food Control,2014,35(1):378-385.
[35] YILDIZ F H,VISICK K L.Vibrio biofilms:So much the same yet so different[J].Trends in Microbiology,2009,17(3):109-118.
[36] CHUNG C H,FEN S Y,YU S C,et al.Influence of oxyR on growth,biofilm formation,and mobility of Vibrio parahaemolyticus[J].Applied and Environmental Microbiology,2016,82(3):788-796.
[37] KIRN T J,JUDE B A,TAYLOR R K.A colonization factor links Vibrio cholerae environmental survival and human infection[J].Nature,2005,438(7069):863-866.
[38] WELLINGTON E M,BOXALL A B,CROSS P,et al.The role of the natural environment in the emergence of antibiotic resistance in Gram-negative bacteria[J].The Lancet Infectious Diseases,2013,13(2):155-165.
[39] PARTRIDGE S R.Analysis of antibiotic resistance regions in Gram-negative bacteria[J].FEMS Microbiology Reviews,2011,35(5):820-855.
[40] BISCHOFF K M,WHITE D G,MCDERMOTT P F,et al.Characterization of chloramphenicol resistance in beta-hemolytic Escherichia coli associated with diarrhea in neonatal swine[J].Journal of Clinical Microbiology,2002,40(2):389-394.
[41] LI L,WANG Q Y,ZHANG H,et al.Sensor histidine kinase is a β-lactam receptor and induces resistance to β-lactam antibiotics[J].PNAS,2016,113(6):1 648-1 653.
[42] CHIOU J C,LI R C,CHEN S.CARB-17 family of β-lactamases mediates intrinsic resistance to penicillins in Vibrio parahaemolyticus[J].Antimicrobial Agents and Chemotherapy,2015,59(6):3 593-3 595.
[43] PIDDOCK L J V.Multidrug-resistance efflux pumps-not just for resistance[J].Nature Reviews.Microbiology,2006,4(8):629-636.
[44] OTSUKA M,YASUDA M,MORITA Y,et al.Identification of essential amino acid residues of the NorM Na+/multidrug antiporter in Vibrio parahaemolyticus[J].Journal of Bacteriology,2005,187(5):1 552-1 558.
[45] WIEDEMANN B,HEISIG P.Mechanisms of quinolone resistance[J].Infection,1994,22(2):S73-S79.
[46] STEINLECHNER S,KING T S,CHAMPNEY T H,et al.Comparison of the effects of β-adrenergic agents on pineal serotonin N-acetyltransferase activity and melatonin content in two species of hamsters[J].Journal of Pineal Research,1984,1(1):23-30.
[47] SAGA T,AKASAKA T,TAKASE H,et al.First detection of the plasmid-mediated quinolone resistance determinant qnrA in Enterobacteriaceae clinical isolates in Japan[J].International Journal of Antimicrobial Agents,2007,29(6):738-739.
[48] 周海波, 薛峰,高璐,等.副溶血性弧菌vpa0166基因与耐药性相关性研究[J].中国人兽共患病学报,2018,34(6):509-514.
ZHOU H B,XUE F,GAO L,et al.Relationship between vpa0166 gene and drug resistance of Vibrio parahemolyticus[J].Chinese Journal of Zoonoses,2018,34(6):509-514.
[49] 赵禹宗.质粒介导动物源性肠杆菌科细菌多药耐药性研究[D].锦州:渤海大学,2018.
ZHAO Y Z.The mechanism of plasmid-mediated multidrug resistance of Enterobacteriaceae isolated from food-producing animals[D].Jinzhou:Bohai University,2018.
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