1 万世平, 王建, 葛菲菲, 等. 副猪嗜血杆菌毒力因子的研究进展[J]. 畜牧与兽医,2010,42(10):101~104. 2 王敏. 流感嗜血杆菌毒力因子的致病作用[J]. 微生物与感染,2007,2(4):243~246. 3 韦昭玉, 朱必凤, 杨旭夫, 等. 副猪嗜血杆菌的分子生物学研究进展[J]. 韶关学院学报,2009,30(6):74~79. 4 冯小明, 储岳峰, 贺英, 等. 副猪嗜血杆菌毒力因子研究进展[J]. 生物技术通报,2010(12):46~49. 5 薛晓晶, 徐福州, 史爱华, 等. 副猪嗜血杆菌aroA基因鉴定及遗传进化分析[J]. 微生物学报,2008,48(8):1100~1103. 6 Assavacheep P, Assavacheep A, Turni C. Detection of a putative hemolysin operon, hhdBA, of Haemophilus parasuis from pigs with Glasser disease[J]. J Vet Diagn Invest, 2012,24(2):339~343. 7 Biberstein E L, White D C. A proposal for the establishment of two new Haemophilus species[J]. J Med Microbiol, 1969,2(1):75~78. 8 Bigas A, Garrido M A, Badiola I, et al. Non-viability of Haemophilus parasuis fur-defective mutants[J]. Vet Microbiol, 2006,118(1~2):107~116. 9 Bouchet B, Vanier G, Jacques M, et al. Studies on the interactions of Haemophilus parasuis with porcine epithelial tracheal cells: Limited role of LOS in apoptosis and pro-inflammatory cytokine release[J]. Microb Pathog,2009,46(2):108~113. 10 Bouchet B, Vanier G, Jacques M, et al. Interactions of Haemophilus parasuis and its LOS with porcine brain microvascular endothelial cells[J]. Vet Res,2008,39(5):42. 11 Castilla K S, De Gobbi D D, Moreno L Z, et al. Characterization of Haemophilus parasuis isolated from Brazilian swine through serotyping, AFLP and PFGE[J]. Res Vet Sci,2012,92(3):366~371. 12 Charland N, D’Silva C G, Dumont R A, et al. Contact-dependent acquisition of transferrin-bound iron by two strains of Haemophilus parasuis[J]. Can J Microbiol,1995,41(1):70~74. 13 Chen L, Wu D, Cai X, et al. Electrotransformation of Haemophilus parasuis with in vitro modified DNA based on a novel shuttle vector[J]. Vet Microbiol,2012,155(2~4):310~316. 14 Del Rio M L, Gutierrez-Martin C B, Rodriguez-Barbosa J I, et al. Identification and characterization of the TonB region and its role in transferrin-mediated iron acquisition in Haemophilus parasuis[J]. FEMS Immunol Med Microbiol, 2005,45(1):75~86. 15 Dijkman R, Wellenberg G J, Van Der Heijden H M, et al. Analyses of dutch Haemophilus parasuis isolates by serotyping, genotyping by ERIC-PCR and Hsp60 sequences and the presence of the virulence associated trimeric autotransporters marker[J]. Res Vet Sci,2012,93(2):589~595. 16 Fu S, Yuan F, Zhang M, et al. Cloning, expression and characterization of a cell wall surface protein, 6-phosphogluconate dehydrogenase, of Haemophilus parasuis[J]. Res Vet Sci,2012,93(1):57~62. 17 Guo L L, Zhang J M, Xu C G, et al. Detection and characterization of β-lactam resistance in Haemophilus parasuis strains from pigs in south China[J]. Agricultural Sciences in China, 2012,11(1):116~121. 18 Hong M, Ahn J, Yoo S, et al. Identification of novel immunogenic proteins in pathogenic Haemophilus parasuis based on genome sequence analysis[J]. Vet Microbiol, 2011,148(1):89~92. 19 Jablonski A, Zebek S, Kolacz R, et al. Usefulness of PCR-RFLP and ERIC-PCR techniques for epidemiological study of Haemophilus parasuis infections in pigs[J]. Pol J Vet Sci, 2011,14(1):111~116. 20 Li J X, Jiang P, Wang Y, et al. Genotyping of Haemophilus parasuis from diseased pigs in China and prevalence of two coexisting virus pathogens[J]. Prev Vet Med, 2009,91(2~4):274~279. 21 Lichtensteiger C A, Vimr E R. Purification and renaturation of membrane neuraminidase from Haemophilus parasuis[J]. Vet Microbiol, 2003,93(1):79~87. 22 Lin B, Xu Z, Yue M, et al. Genomic characterization of Haemophilus parasuis SH0165, a highly virulent strain of serovar 5 prevalent in China[J]. PLoS One, 2011,6(5):e19631. 23 Luppi A, Bonilauri P, Dottori M, et al. Haemophilus parasuis serovars isolated from pathological samples in northern Italy[J]. Transbound Emerg Dis,2012. 24 Mao X, Dirienzo J M. Functional studies of the recombinant subunits of a cytolethal distending holotoxin[J]. Cell Microbiol, 2002,4(4):245~255. 25 Martinez S, Frandoloso R, Rodriguez-Ferri E F, et al. Characterization of a recombinant transferrin-binding protein A (TbpA) fragment from Haemophilus parasuis serovar 5[J]. FEMS Microbiol Lett, 2010,307(2):142~150. 26 Mcvicker J K, Tabatabai L B. Isolation and characterization of the P5 adhesin protein of Haemophilus parasuis serotype 5[J]. Prep Biochem Biotechnol,2006,36(4):363~374. 27 Mullins M A, Register K B, Bayles D O, et al. Characterization and comparative analysis of the genes encoding Haemophilus parasuis outer membrane proteins P2 and P5[J]. J Bacteriol,2009,191(19):5988~6002. 28 Olvera A, Pina S, Macedo N, et al. Identification of potentially virulent strains of Haemophilus parasuis using a multiplex PCR for virulence-associated autotransporters (vtaA)[J]. Vet J, 2012,191(2):213~218. 29 Olvera A, Pina S, Perez-Simo M, et al. Virulence-associated trimeric autotransporters of Haemophilus parasuis are antigenic proteins expressed in vivo[J]. Vet Res,2010,41(3):26. 30 Pina S, Olvera A, Barcelo A, et al. Trimeric autotransporters of Haemophilus parasuis: Generation of an extensive passenger domain repertoire specific for pathogenic strains[J]. J Bacteriol,2009,191(2):576~587. 31 Sack M, Baltes N. Identification of novel potential virulence-associated factors in Haemophilus parasuis[J]. Vet Microbiol, 2009,136(3~4):382~386. 32 Sirakova T, Kolattukudy P E, Murwin D, et al. Role of fimbriae expressed by nontypeable Haemophilus influenzae in pathogenesis of and protection against otitis media and relatedness of the fimbrin subunit to outer membrane protein A[J]. Infect Immun,1994,62(5):2002~2020. 33 Smith S G, Mahon V, Lambert M A, et al. A molecular Swiss army knife: OmpA structure, function and expression[J]. FEMS Microbiol Lett,2007,273(1):1~11. 34 Wang Y, Liu C, Fang Y, et al. Transcription analysis on response of porcine alveolar macrophages to Haemophilus parasuis[J]. BMC Genomics, 2012,13(1):68~81. 35 Yu J, Wu J, Zhang Y, et al. Concurrent highly pathogenic porcine reproductive and respiratory syndrome virus infection accelerates Haemophilus parasuis infection in conventional pigs[J]. Vet Microbiol,2012,158(3~4):316~321. 36 Zhang B, Feng S, Xu C, et al. Serum resistance in Haemophilus parasuis SC096 strain requires outer membrane protein P2 expression[J]. FEMS Microbiol Lett, 2012a,326(2):109~115. 37 Zhang B, He Y, Xu C, et al. Cytolethal distending toxin (CDT) of the Haemophilus parasuis SC096 strain contributes to serum resistance and adherence to and invasion of PK15 and PUVEC cells[J]. Vet Microbiol, 2011a,157(1~2):237~242. 38 Zhang B, Tang C, Yang F L, et al. Molecular cloning, sequencing and expression of the outer membrane protein A gene from Haemophilus parasuis[J]. Vet Microbiol, 2009,136(3~4):408~410. 39 Zhang B, Xu C, Liao M. Outer membrane protein P2 of the Haemophilus parasuis SC096 strain contributes to adherence to porcine alveolar macrophages cells[J]. Vet Microbiol, 2012b,158(1~2):226~227. 40 Zhang B, Xu C, Zhou S, et al. Comparative proteomic analysis of a Haemophilus parasuis SC096 mutant deficient in the outer membrane protein P5[J]. Microb Pathog, 2012c,52(2):117~124. 41 Zhang J, Xu C, Guo L, et al. A rapid pulsed-field gel electrophoresis method of genotyping Haemophilus parasuis isolates[J]. Lett Appl Microbiol,2011b,52(6):589~595. 42 Zhou M, Guo Y, Zhao J, et al. Identification and characterization of novel immunogenic outer membrane proteins of Haemophilus parasuis serovar 5[J]. Vaccine, 2009,27(38):5271~5277. |