鱼源无乳链球菌致病机理研究进展Review on Pathogenesis of Streptococcus agalactiae from Fish
祝璟琳;杨弘;
摘要(Abstract):
从无乳链球菌的感染与传播途径,引起的病理学变化,致病机制,毒力因子和理化因子的影响等5个方面对鱼源无乳链球菌的致病机理作一综述。
关键词(KeyWords): 无乳链球菌;致病机理;毒力因子;理化因子
基金项目(Foundation): 农业部现代农业产业技术体系建设专项资金(CARS-49);; 中国水产科学研究院基本科研业务费(2012A0508;2013A0607);; 农业部现代农业人才支撑计划
作者(Authors): 祝璟琳;杨弘;
参考文献(References):
- [1]Jones N,Bohnsack J F,Takahashi S,et al.Multilocus sequence typing system for group B Streptococcus[J].Journal of Clinical Microbiology,2003,41(6):2530-2536.
- [2]Brochet M,CouvéE,Zouine M,et al.Genomic diversity and evolution within the species Streptococcus agalactiae[J].Microbes and Infection,2006,8(5):1227-1243.
- [3]Johri A K,Paoletti L C,Glaser P,et al.Group B Streptococcus:global incidence and vaccine development[J].Nature Reviews Microbiology,2006,4(12):932-942.
- [4]Farley M M,Strasbaugh L J.Group B streptococcal disease in nonpregnant adults[J].Clinical Infectious Diseases,2001,33(4):556-561.
- [5]Dogan B,Schukken Y H,Santisteban C,et al.Distribution of serotypes and antimicrobial resistance genes among Streptococcus agalactiae isolates from bovine and human hosts[J].Journal of Clinical Microbiology,2005,43(12):5899-5906.
- [6]Duremdez R,Al Marzouk A,Qasem J A,et al.Isolation of Streptococcus agalactiae from cultured silver pomfret,Pampus argenteus(Euphrasen),in Kuwait[J].Journal of Fish Diseases,2004,27(5):307-310.
- [7]Suanyuk N,Kong F,Ko D,et al.Occurrence of rare genotypes of Streptococcus agalactiae in cultured red tilapia Oreochromis sp.and Nile tilapia O.niloticus in Thailand—Relationship to human isolates?[J].Aquaculture,2008,284(1):35-40.
- [8]Hernández E,Figueroa J,Iregui C.Streptococcosis on a red tilapia,Oreochromis sp.,farm:a case study[J].Journal of Fish Diseases,2009,32(3):247-252.
- [9]Evans J J,Klesius P H,Pasnik D J,et al.Human Streptococcus agalactiae isolate in Nile tilapia(Oreochromis niloticus)[J].Emerging Infectious Diseases,2009,15(5):774.
- [10]Mian G F,Godoy D T,Leal C,et al.Aspects of the natural history and virulence of S.agalactiae infection in Nile tilapia[J].Veterinary Microbiology,2009,136(1):180-183.
- [11]Bowater R O,Forbes-Faulkner J,Anderson I G,et al.Natural outbreak of Streptococcus agalactiae(GBS)infection in wild giant Queensland grouper,Epinephelus lanceolatus(Bloch),and other wild fish in northern Queensland,Australia[J].Journal of Fish Diseases,2012,35(3):173-186.
- [12]Musa N,Wei L S,Musa N,et al.Streptococcosis in red hybrid tilapia(Oreochromis niloticus)commercial farms in Malaysia[J].Aquaculture Research,2009,40(5):630-632.
- [13]Siti-Zahrah A,Padilah B,Azila A,et al.Multiple Streptococcal species infection in cage-cultured red tilapia,but showing similar clinical signs[C]//Proceedings of the sixth symposium on diseases in Asian aquaculture.Colombo,Sri Lanka,2005:332-339.
- [14]张新艳,樊海平,钟全福,等.罗非鱼无乳链球菌的分离、鉴定及致病性研究[J].水产学报,2008,32(5):772-779.
- [15]祝璟琳,杨弘,邹芝英,等.海南养殖罗非鱼(Oreochromis niloticus)致病链球菌的分离、鉴定及其药敏试验[J].海洋与湖沼,2010,41(4):590-596.
- [16]卢迈新,黎炯,叶星,等.广东与海南养殖罗非鱼无乳链球菌的分离、鉴定与特性分析[J].微生物学通报,2010,37(5):766-774.
- [17]郭玉娟,张德锋,樊海平,等.中国南方地区罗非鱼无乳链球菌的分子流行病学研究[J].水产学报,2012,36(3):399-406.
- [18]田珂,贾爱卿,陈善真,等.罗非鱼无乳链球菌生物学特性与致病力研究[J].中国畜牧兽医,2013,40(6):203-207.
- [19]柯剑,赵飞,罗理,等.广东省罗非鱼主养区无乳链球菌的分离,鉴定与致病性[J].广东海洋大学学报,2010,30(3):22-27.
- [20]陈贺,吴灶和,王蓓,等.无乳链球菌灭活疫苗对罗非鱼的免疫效果[J].广东海洋大学学报,2012,32(6):50-56
- [21]Nguyen H T,Kanai K,Yoshikoshi K.Ecological investigation of Streptococcus iniae in cultured Japanese flounder Paralichthys olivaceus using selective isolation procedures[J].Aquaculture,2002,205(1):7-17.
- [22]Minami T.Streptococcus sp.pathogenic to cultured yellowtail isolated from fishes for diets.[J].Fish Pathology,1979,14:15-19.
- [23]Kim J H,Gomez D K,Choresca Jr C H,et al.Detection of major bacterial and viral pathogens in trash fish used to feed cultured flounder in Korea[J].Aquaculture,2007,272(1):105-110.
- [24]Jiménez A,TibatáV,Junca H,et al.Evaluating a nested-PCR assay for detecting Streptococcus agalactiae in red tilapia(Oreochromis sp.)tissue[J].Aquaculture,2011,321(3):203-206.
- [25]Shoemaker C A,Evans J J,Klesius P H.Density and dose:factors affecting mortality of Streptococcus iniae infected tilapia Oreochromis niloticus[J].Aquaculture,2000,188(3):229-235.
- [26]Evans J J,Shoemaker C A,Klesius P H.Effects of sublethal dissolved oxygen stress on blood glucose and susceptibility to Streptococcus agalactiae in Nile tilapia Oreochromis niloticus[J].Journal of Aquatic Animal Health,2003,15(3):202-208.
- [27]Inocente Filho C,Müller E E,Pretto-Giordano L G,et al.Histological findings of experimental Streptococcus agalactiae infection in Nile tilapias(Oreochromis niloticus).[J].Brazilian Journal of Veterinary Pathology,2009,2(1):12-15.
- [28]Zamri-Saad M,Amal M,Siti-Zahrah A.Pathological changes in red tilapias(Oreochromis spp.)naturally infected by Streptococcus agalactiae[J].Journal of Comparative Pathology,2010,143(2):227-229.
- [29]Abuseliana A,Hassan D,Saleha A A,et al.Streptococcus agalactiae the etiological agent of mass mortality in farmed red tilapia(Oreochromis sp.)[J].Journal of Animal and Veterinary Advances,2010,9(20):2640-2646.
- [30]Rodkhum C,Pirarat P K N.Effect of water temperature on susceptibility to Streptococcus agalactiae Serotype Ia infection in nile tilapia(Oreochromis niloticus)[J].Thai Journal of Veterinary Medicine,2011,41(3):309-314.
- [31]Chang P H,Plumb J A.Histopathology of experimental Streptococcus sp.infection in tilapia,Oroochromis niloticus(L.),and channel catfish,Ictafurus punctatus(Ratinesque)[J].Journal of Fish Diseases,1996,19(3):235-241.
- [32]Chen C,Chao C,Bowser P R.Comparative histopathology of Streptococcus iniae and Streptococcus agalactiae-infected tilapia[J].Bulletin-European Association of Fish Pathologists,2007,27(1):2-9.
- [33]Banerjee A,Kim B J,Carmona E M,et al.Bacterial Pili exploit integrin machinery to promote immune activation and efficient blood-brain barrier penetration[J].Nature Communications,2011,2:462.
- [34]Nguyen H T,Kanai K,Yoshikoshi K.Immunohistochemical examination of experimental Streptococcus iniae infection in Japanese flounder Paralichthys olivaceus[J].Fish Pathology,2001,36(3):169-178.
- [35]Bowater R O,Forbes Faulkner J,Anderson I G,et al.Natural outbreak of Streptococcus agalactiae(GBS)infection in wild giant Queensland grouper,Epinephelus lanceolatus(Bloch),and other wild fish in northern Queensland,Australia[J].Journal of Fish Diseases,2012,35(3):173-186.
- [36]Patterson H,Saralahti A,Parikka M,et al.Adult zebrafish model of bacterial meningitis in Streptococcus agalactiae infection[J].Developmental&Comparative Immunology,2012,38(3):447-455.
- [37]Chaffin D O,Mentele L M,Rubens C E.Sialylation of group B streptococcal capsular polysaccharide is mediated by cpsK and is required for optimal capsule polymerization and expression[J].Journal of Bacteriology,2005,187(13):4615-4626.
- [38]Hunolstein V.Group B streptococci persist inside macrophages[J].Immunology,1998,93(1):86-95.
- [39]Carlin A F,Chang Y,Areschoug T,et al.Group B Streptococcus suppression of phagocyte functions by protein-mediated engagement of human Siglec-5[J].The Journal of Experimental Medicine,2009,206(8):1691-1699.
- [40]Ring A,Braun J S,Nizet V,et al.Group B streptococcal beta-hemolysin induces nitric oxide production in murine macrophages[J].Journal of Infectious Diseases,2000,182(1):150-157.
- [41]Doran K S,Liu G Y,Nizet V.Group B streptococcal beta-hemolysin/cytolysin activates neutrophil signaling pathways in brain endothelium and contributes to development of meningitis[J].Journal of Clinical Investigation,2003,112(5):736-744.
- [42]Doran K S,Engelson E J,Khosravi A,et al.Blood-brain barrier invasion by group B Streptococcus depends upon proper cell-surface anchoring of lipoteichoic acid[J].Journal of Clinical Investigation,2005,115(9):2499-2507.
- [43]Rajagopal L.Understanding the regulation of Group B Streptococcal virulence factors[J].Future Microbiol,2009,4(2):201-221.
- [44]Lang S,Palmer M.Characterization of Streptococcus agalactiae CAMP factor as a pore-forming toxin[J].Journal of Biological Chemistry,2003,278(40):38167-38173.
- [45]Jürgens D,Sterzik B,Fehrenbach F J.Unspecific binding of group B streptococcal cocytolysin(CAMP factor)to immunoglobulins and its possible role in pathogenicity[J].The Journal of Experimental Medicine,1987,165(3):720-732.
- [46]Hensler M E,Quach D,Hsieh C,et al.CAMP factor is not essential for systemic virulence of Group B Streptococcus[J].Microbial pathogenesis,2008,44(1):84-88.
- [47]Maisey H C,Doran K S,Nizet V.Recent advances in understanding the molecular basis of group B Streptococcus virulence[J].Expert Reviews in Molecular Medicine,2008,10:e27.
- [48]Beckmann C,Waggoner J D,Harris T O,et al.Identification of novel adhesins from group B streptococci by use of phage display reveals that C5αpeptidase mediates fibronectin binding[J].Infection and Immunity,2002,70(6):2869-2876.
- [49]Cheng Q,Stafslien D,Purushothaman S S,et al.The group B streptococcal C5αpeptidase is both a specific protease and an invasin[J].Infection and Immunity,2002,70(5):2408-2413.
- [50]Cumley N J,Smith L M,Anthony M,et al.The CovS/CovR acid response regulator is required for intracellular survival of group B Streptococcus in macrophages[J].Infection and Immunity,2012,80(5):1650-1661.
- [51]Lamy M C,Zouine M,Fert J,et al.CovS/CovR of group B Streptococcus:a two‐component global regulatory system involved in virulence[J].Molecular Microbiology,2004,54(5):1250-1268.
- [52]Lembo A,Gurney M A,Burnside K,et al.Regulation of CovR expression in Group B Streptococcus impacts blood–brain barrier penetration[J].Molecular Microbiology,2010,77(2):431-443.
- [53]Evans J J,Pasnik D J,Brill G C,et al.Un-ionized ammonia exposure in Nile tilapia:toxicity,stress response,and susceptibility to Streptococcus agalactiae[J].North American Journal of Aquaculture,2006,68(1):23-33.
- [54]Bunch E C,Bejerano I.The effect of environmental factors on the susceptibility of hybrid tilapia Oreochromis niloticus×Oreochromis aureus to streptococcosis[J].Israeli Journal of Aquaculture-Bamidgeh,1997,49(2):67-76.
- [55]Chang P H,Plumb J A.Effects of salinity on Streptococcus infection of Nile tilapia,Oreochromis niloticus[J].Journal of Applied Aquaculture,1996,6(1):39-45.