請用此 Handle URI 來引用此文件:
http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/34483完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 王金和(Ching-Ho Wang) | |
| dc.contributor.author | Jenn-Haur Chiou | en |
| dc.contributor.author | 邱振豪 | zh_TW |
| dc.date.accessioned | 2021-06-13T06:10:55Z | - |
| dc.date.available | 2008-04-20 | |
| dc.date.copyright | 2006-04-20 | |
| dc.date.issued | 2006 | |
| dc.date.submitted | 2006-03-31 | |
| dc.identifier.citation | 第六章、參考文獻
李高明,王祖強。 小鴨傳染性漿膜炎的流行病學調查。中國獸醫科技 22: 17-18, 1992 李雁鈴。台灣地區Riemerella anatipestifer質體核酸序列分析與抗藥基因檢測應用。碩士論文,國立中興大學獸醫學研究所,台中,台灣。2004 洪伯懿。Riemerella anatipestifer 之生物學特性。碩士論文,國立台灣大學獸醫學研究所,台北,台灣。1996 洪信雄,黃旭田,陳文烈,李明廉,莊啟增。屏東縣水禽傳染性漿膜炎之流行病學調查。台灣省政府農林廳。台灣省 81 年度家禽流行病學研討會專輯 31-33, 1992 洪信雄,黃旭田,陳文烈,莊啟增,呂榮修,曾俊憲。水禽傳染性漿膜炎菌苗之研製及田間應用。首屆海峽兩岸禽病防治研討會論文專輯。162-166, 1995 張照夫。Pasteurella anatipestifer 對鴨之感染機序及其藥物感受性。台灣省畜牧獸醫學會會報 43: 40-46, 1984 莊惟超。台南縣家畜疾病防治所病例報告。台灣省各縣市家畜疾病檢驗技術研討會專輯。1988 黃培峻。Riemerella anatipestifer菌苗之研製。碩士論文,國立中興大學獸醫學研究所,台中,台灣。2004 黃旭田,徐華山,莊啟增,蔡睦宗,陳文烈,洪信雄,張榮儒。屏東縣水禽傳染性漿膜炎之調查研究-關於病原分離、肉眼及組織病理學變化、血清凝集抗體分析調查。台灣省畜牧獸醫學會會報 57: 63-70, 1991 黃國安。鴨疫黎氏桿菌(Riemerella anatipestifer)毒力相關蛋白基因vap D1之次單 位疫苗及DNA疫苗建構及對鴨隻免疫保護效果。碩士論文,國立台大學獸醫學研究所,台北,台灣。2002 翁淑娟。Riemerella anatipestifer pCFC2質體之基因分析及毒力相關蛋白之研究。碩士論文,國立台灣大學獸醫學研究所,台北,台灣。1998 廖彥華。Riemerella anatipestifer外膜蛋白基因之選殖,表現與其重組蛋白鴨隻之免疫試驗。碩士論文,國立台大學獸醫學研究所,台北,台灣。2001 蔡貴雄。雲林縣水禽傳染性漿膜炎發生疫情報告。台灣省政府農林廳。台灣省 81 年度家禽流行病學研討會專輯 21-25, 1992 劉育宗。鴨Riemerella anatipestifer感染症之究:保菌及排菌研究、聚合酶連鎖反應診斷技術之建立及外膜蛋白A基因序列分析。碩士論文,國立台灣大學獸醫學研究所,台北,台灣。2002 Abu Kwaik Y, Pederson LL. The use of differential display-PCR to isolate and characterize a Legionella pneumophila locus induced during the intracellular infection of macrophages. Molecular Microbiology 21: 543-556, 1996 Akopyants NS, Fradkov A, Diatchenko L, Hill JE, Siebert PD, Lukyanov SA, Sverdlov ED, Berg DE. PCR-based subtractive hybridization and differences in gene content among strains of Helicobacter pylori. Proc Natl Acad Sci U S A 95: 13108-13113, 1998 Andreason J R, Sandhu T. Pasteurella anatipestifer-like bacteria associated with respiratory disease in pigeons. Avian Diseases 37: 908-911, 1993 Asplin F D. A septicemic disease of ducklings. Veterinary Research 67: 854-858, 1955 Astorga R J, Cubero M J, Leon L, Maldonado A, Arenas A, Tarradas M C, Perea A. Serological survey of infections in water fowl in the Guadalquivir marshes (Spain). Avian Diseases 38: 371-375, 1994 Baba T, Odagiri Y, Morimoto T, Yamamoto S. An out break of Moraxella (Pasteurella) anatipestifer infection in duckings in Japan. Japan Journal of Veterinary Science 49: 939-941, 1987 Bangun A, Johnson J L, Tripathy D N. Taxonomy of Pasteurella anatipestifer.1. DNA base composition and DNA-DNA hybridization analysis. Avian Diseases 31: 43-45, 1987 Bangun A, Tripathy D N, Hanson L E. Studies of Pasteurella anatipestifer: an approach to its classification. Avian Diseases 25: 326-337, 1981 Bangun A, Tripathy DN. Taxonomy of Pasteurella anatipestifer. 2. cellular fatty-acid profile by gas chromatography. Avian Diseases 31: 46-51, 1987 Bisgaard M. Antigenic studies on Pasteurella anatipestifer, species incertae sedis, using slide and tube agglutination. Avian Pathology 11: 341-350, 1982 Breed R S, Lessel E F Jr, Clise E H. Genus I. Pasteurella Trevisan, 1887. In: Breed R S, Murray E G D, Smith N R (eds). Bergey′s Manual of Determinative Bacteriology, 7 th ed.. Williams and Wilkins, Baltimore, M D. 395-402, 1957 Brogden KA, Rhoades KR, Rimler RB. Serologic type and physiologic characteristics of 46 avian Pasteurella anatipestifer cultures. Avian Diseases 26: 891-896, 1982 Brown NF, Lew AE, Beacham IR. Identification of new transposable genetic elements in Burkholderia pseudomallei using subtractive hybridisation. FEMS Microbiology Letters 183: 73-79, 2000 Bruner DW, Angstrom CI. Price JI. Pasteurella anatipestifer infection in pheasants-a case report. Cornell Veterinary 60: 491-494, 1970 Bruner DW, Fabricant J. A strain of Moraxella anatipestifer (Pfeifferella anatipestifer) isolated from ducks. Cornell Veterinary 44: 461-464, 1954 Centurion-Lara A, Castro C, Barrett L, Cameron C, Mostowfi M, Van Voorhis WC, Lukehart SA. Treponema pallidum major sheath protein homologue Tpr K is a target of opsonic antibody and the protective immune response. Journal of Experimental Medicine 189: 647-656, 1999 Cerdeno-Tarraga AM, Patrick S, Crossman LC, Blakely G, Abratt V, Lennard N, Poxton I, Duerden B, Harris B, Quail MA, Barron A, Clark L, Corton C, Doggett J, Holden MT, Larke N, Line A, Lord A, Norbertczak H, Ormond D, Price C, Rabbinowitsch E, Woodward J, Barrell B, Parkhill J. Extensive DNA inversions in the B. fragilis genome control variable gene expression. Science 307: 1463-5, 2005 Chang CF, Hung PE, Chang YF. Molecular characterization of a plasmid from Riemerella anatipestifer. Avian Pathology 27: : 339-345, 1998 Chang CF, Lin WH, Yeh TM, Chiang TS, Chang YF. Antimicrobial susceptibility of Riemerella anatipestifer isolated from ducks and the efficacy of ceftiofur treatment. Journal of Veterinary Diagnotic Investigation 15: 26-29, 2003 Charles SD, Nagaraja KV, Halvorson DA, Rao A. A retrospective analysis on the epizootiological aspects of outbreaks of Pasteurella anatipestifer infection in turkey in Minnesota. Poutry Science 70: 1704-1708, 1991 Chiang SL, Mekalanos JJ, Holden DW. In vivo genetic analysis of bacterial virulence. Annual Review of Microbiology 53: 129-154, 1999 Chiang SL, Rubin EJ. Construction of a mariner-based transposon for epitope-tagging and genomic targeting. Gene 296: 179-185, 2002 Clayton RA, Sutton G, Hinkle PS, Jr, Bult C, Fields C. Intraspecific variation in small subunit rRNA sequences may not adequately represent prokaryotic taxa. Internationl Journal of Systematic Bacteriology 45: 595-599, 1995 Crasta KC, Chua KL. Identification and characterization of CAMP cohemolysin as a potential virulence factor of Riemerella anatipestifer. Journal of Bacteriology 184: 1932-1939, 2002 Creelan JL, Bjourson AJ, Meehan BM, McCullough SJ. Characterisation of strain-specific sequences from an abortifacient strain of ovine Chlamydia psittaci using subtraction hybridisation. FEMS Microbiology Letters 171: 17-25, 1999 Dasgupta N, Kapur V, Singh KK, Das TK, Sachdeva S, Jyothisri K, Tyagi JS. Characterization of a two-component system, devR-devS, of Mycobacterium tuberculosis. Tubercle and Lung Disease 80: 141-159, 2000 Diatchenko L, Lau YF, Campbell AP, Chenchik A, Moqadam F, Huang B, Lukyanov S, Lukyanov K, Gurskaya N, Sverdlov ED, Siebert PD. Suppression subtractive hybridization: a method for generating differentially regulated or tissue-specific cDNA probes and libraries. Proc Natl Acad Sci U S A 93: 6025-6030, 1996 Dougherty E, Saunders LZ, Parsons EH. The pathology of infectious serositis of ducks. American Journal of Patholology 31: 475-487, 1955 Eleazer TH, Blalock HG, Harrell JS, Derieux WH. Pasteurella anatipestifer as a cause of mortality in semi-wild pen-raised mallard ducks in South Carolina. Avian Diseases 17: 855-857, 1973 Falkow S. Molecular Koch's postulates applied to microbial pathogenicity. Review of Infection Disease 10 Suppl 2: S274-276, 1988 Frey J. Construction of a broad host range shuttle vector for gene cloning and expression in Actinobacillus pleuropneumoniae and other Pasteurellaceae. Reserch in Microbiology 143: 263-269, 1993 Frommer A, Bock R, Inbar A, Zemer S. Muscovy ducks as a source of Pasteurella anatipestifer infection in turkey flocks. Avian Pathology 19: 161-163, 1990 Gasson MJ and Fitzgerald GF. Gene transfer systems and transposition. In “Genetics and biotechnology of lactic acid bacteria”(Gasson MJ and de Vos WM, Eds), Blackie, Glasgow. pp1-51, 1994 Glunder G, Hinz KH. Isolation of Moraxella anatipestifer from embryonated goose eggs. Avian Pathology 18: 351-355, 1989 Graham R, Brandly CA, Dunlap GL. Studies on duck septicemia. Cornell Veterinary 28: 1-8, 1938 Grimes TM, Rosenfield LE. Pasteurella anatipestifer infection duck in Australia. Australian Veterinary Journal 48: 367-368, 1972 Harel J, Martinez G, Nassar A, Dezfulian H, Labrie SJ, Brousseau R, Moineau S, Gottschalk M. Identification of an inducible bacteriophage in a virulent strain of Streptococcus suis serotype 2. Infection and Immunity 71: 6104-6108, 2003 Harry EG, Deb JR. Laboratory and field trials on a formalin inactivated vaccine for the control of Pasteurella anatipestifer septicemia in ducks. Reserch in Veterinary Science 27: 329-333, 1979 Harry EG. Pasteurella (Pfeifferella) anatipestifer serotypes isolated from cases of anatipestifer septicemia in ducks. Veterinary Reserch 84: 673, 1969 Hatfield RM, Morris BA, Henry RR. Development of an enzyme-linked immunsorbent assay for the detection of humoral antibody to Pasteurella anatipestifer. Avian Pathology 16: 123-140, 1987 Hatfield RM, Morris BA. Influence of the route of infection of Pasteurella anatipestifer on the clinical and immune responses of white pekin ducks. Reserch in Veterinary Science 44: 208-214, 1988 Heithoff DM, Conner CP, Mahan MJ. Dissecting the biology of a pathogen during infection. Trends in Microbiology 5: 509-513, 1997 Helfer DH, Helmboldt CF. Pasteurella anatipestifer infection in turkeys. Avian Diseases 21: 712-715, 1977 Hendrickson JM, Hilbert KF. A new and serious septicemia disease of young ducks with a description of the new causative organism, Pfeifferella anatipestifer. Cornell Veterinary 22: 239-252, 1932 Henricksen SD. Moraxella: classification and taxonomy. Journal of Genernal Microbiology 6: 318-328, 1952 Hensel M, Shea JE, Gleeson C, Jones MD, Dalton E, Holden DW. Simultaneous identification of bacterial virulence genes by negative selection. Science 269: 400-403, 1995 Hermans PW, Soolingen DV, Dale JW, Schuitema ARJ, Mcadam RA, Catty D and Embden JDAV. Insertion element IS982 from Mycobacterium tuberculosis: a useful tool for diagnosis and epidemiology of tuberculosis. Journal of Clinical Microbiology 28: 2051-2058, 1990 Huang B, Subramaniam S, Chua KL, Kwang J, Loh H, Frey J, Tan HM. Molecular fingerprinting of Riemerella anatipestifer by repetitive sequence PCR. Veterinary Microbiology 67: 213-219, 1999 Huang B, Subramaniam S. Vaccination of ducks with recombinant outer membrane protein (OmpA) and a 41 kDa partial protein (P45N') of Riemerella anatipestifer. Veterinary Microbiology 84: 219-230, 2002 Jackson CAW. Suspected Pasteurella anatipestifer infection in ducklings in New South Wales. Australian Veterinary Journal 48: 479, 1972 Janke B, Dobrindt U, Hacker J, Blum-Oehler G. A subtractive hybridisation analysis of genomic differences between the uropathogenic E. coli strain 536 and the E. coli K-12 strain MG1655. FEMS Microbiology Letters 199: 61-66, 2001 Jortner BS, Porro R, Leibovitz L. Central-nervous-system lesion of spontaneous Pasteurella anatipestifer infection in ducklings. Avian Diseases 13 : 27-35, 1969 Karstad L, Lusis P, Long JR. Pasteurella anatipestifer as a cause of mortality in captive wild waterfowl. Journal of Wildlife Disease 6: 408-413, 1970 Kuwahara T, Yamashita A, Hirakawa H, Nakayama H, Toh H, Okada N, Kuhara S, Hattori M, Hayashi T, Ohnishi Y. Genomic analysis of Bacteroides fragilis reveals extensive DNA inversions regulating cell surface adaptation. Proc Natl Acad Sci U S A 101: 14919-24, 2004 Layton HW, Sandhu TS. Protection of ducklings with a broth-grown Pasteuerlla anatipestifer bacterin. Avian Diseases 28: 718-726, 1984 Lai YC, Yang SL, Peng HL, Chang HY. Identification of genes present specifically in a virulent strain of Klebsiella pneumoniae. Infection and Immunity 68: 7149-7151, 2000 Leavitt S, Ayroud M. Riemerella anatipestifer of domestic ducklings. Canadian Veterinary Journal 38: 113, 1997 Leibovitz L. A survey of the so-called ″anatipestifer syndrome″. Avian Diseases 16: 836-851, 1972 Levine ND. Goose influenza (septicaemia anserum exsudativa). In Biester HE, Schwarte LH (eds.). Disease of Poultry, 5th ed. Iowa State Univ Press, Ames, Iowa, USA 469-471, 1965 Loh H, Teo TP, Tan HC. Serotype of 'Pasteurella' anatipestifer isolate from ducks in Singapore: a proposal of new serotype. Avain Pathology 21: 453-459, 1992 Lorenzo VD, Herrero M, Jakubzik U, Timmis KN. Mini-Tn5 Transposon derivatives for insertion mutagenesis, promoter probing, and chromosomal insertion of cloned DNA in gram-negative eubacteria. Journal of Bacteriology 172: 6568-6572, 1990 Lorenzo VD, Timmis KN. Analysis and construction of stable phenotypes in gram-negative bacteria with Tn5- and Tn10-derived minitransposons. Methods of Enzymology 235: 386-405, 1994 Lucchini S, Thompson A, Hinton JC. Microarrays for microbiologists. Microbiology 147: 1403-1414, 2001 Mahairas GG, Sabo PJ, Hickey MJ, Singh DC, Stover CK. Molecular analysis of genetic differences between Mycobacterium bovis BCG and virulent M. bovis. Journal of Bacteriology 178: 1274-1282, 1996 Mannheim W. Family III. Pasteurellaceae Pohl 1981a 382. In N. R. Krieg and J.G. Holt (eds.). Bergey‘s Manual of Systematic Bacteriology, 9th ed. Williams & Wilkin, Baltimore, MD. 1: 550-557, 1984 May BJ, Zhang Q, Li LL, Paustian ML, Whittam TS, Kapur V. Complete genomic sequence of Pasteurella multocida, Pm70. Proc Natl Acad Sci U S A 98: 3460-5; 2001 McBride MJ, Baker SA. Development of techniques to genetically manipulate members of the genera Cytophaga, Flavobacterium, Flexibacter, and Sporocytophaga. Applied and Environmental Microbiology 62: 3017-3022, 1996a McBride MJ, Kempf MJ. Development of techniques for the genetic manipulation of the gliding bacterium Cytophaga johnsonae. Journal of Bacteriology 178: 583-590, 1996b Mo CL, Burgess EC. Infection of duck plague carriers with Pasteurella multocida and P. anatipestifer. Avian Diseases 31: 197-201, 1987 Munday BL, Corbould A, Heddleaton KL, Harry EG. Isolation of Pasteurella anatipestifer from black swan (Cygnus atratus). Australian Veterinary Journal 40: 322-324, 1970 Nelson KE, Fleischmann RD, DeBoy RT, Paulsen IT, Fouts DE, Eisen JA, Daugherty SC, Dodson RJ, Durkin AS, Gwinn M, Haft DH, Kolonay JF, Nelson WC, Mason T, Tallon L, Gray J, Granger D, Tettelin H, Dong H, Galvin JL, Duncan MJ, Dewhirst FE, Fraser CM. Complete genome sequence of the oral pathogenic Bacterium porphyromonas gingivalis strain W83. Journal of Bacteriology 185: 5591-601, 2003 Pathanasophon P, Sawada T, Tanticharoneyos T. New serotypes of Riemerella anatipestifer isolated from ducks in Thailand. Avian Diseases 24: 195-199, 1995 Pathanasophon P, Tanticharoneyos T, Sawada T. Physiological characteristics, antimicrobial susceptibility and serotypes of Pasteurella anatipestifer isolated from ducks in Thailand. Veterinary Microbiology 39: 179-185, 1994 Payne CJ, Cook ME, Nersessian BN, Kounev ZV. Duckling mortality and vaccine efficacy following challenge with Pasteurella anatipestifer. Poultry Science 71: (suppl. 1) 99, 1992 Pickrell, JA. Pathologic changes associated with experimental Pasteurella anatipestifer infection in ducklings. Avian Diseases 10: 281-288, 1966 Piechulla K, Pohl S, Mannheim W. Phenotypic and genetic relationships of so-called Moraxella (Pasteurella) anatipestifer to the Flavobacterium/Cytophaga group. Veterinary Microbiology 11: 261-270, 1986 Pierce RL, Vorhies MW. Pasteurella anatipestifer infection in geese. Avian Diseases 17: 868-870, 1973 Plum G, Clark-Curtiss JE. Induction of Mycobacterium avium gene expression following phagocytosis by human macrophages. Infection and Immunity 62: 476-483, 1994 Reckseidler SL, DeShazer D, Sokol PA, Woods DE. Detection of bacterial virulence genes by subtractive hybridization: identification of capsular polysaccharide of Burkholderia pseudomallei as a major virulence determinant. Infection and Immunity 69: 34-44, 2001 Riemer VS. Kurze Mitteilung ueber eine bei Gaensen beobachtete exudative septikeamie und deren Erreger. Zentr, Bakteriol Parasitenk Abt I Orig 37: 641-648, 1904 Romero DA, Klaenhammer TR. Transposable elements in lactococci: A review. Journal of Dairy Science 79: 1-19, 1993 Rosenfield LE. Pasteurella anatipestifer infection in fowls in Austraria. Australian Veterinary Journal 49: 55-56, 1973 Saif YM, Moorhead DP, Dearth RN, Pyle DA. An outbreak of Pasteurella anatipestifer infection in turkey and attempts to reproduce the disease. Journal of American Veterinary Medicine Association 181: 281, 1982 Sandhu TS, Harry EG. Serotypes of Pasteurella anatipestifer isolated from commercial white Pekin ducks in the United States. Avian Diseases 25: 497-502, 1981 Sandhu TS, Layton HW. Laboratory and field trials with formalin-inactivaed Escherichia coli (O78)-Pasteurella anatipestifer bacterin in white Pekin ducks. Avian Diseases 29: 128-135, 1985 Sandhu TS, Leister ML. Serotype of Pasteurella anatipestifer isolate from poultry in different countries. Avian Pathology 20:233-239, 1991 Sandhu TS, Rimler RB. Riemerella anatipestifer infection. Diseases of poultry, 11th ed. In: Calnek BW, Barner HJ , Beard CW, Reid WM, Yoder HW Jr., eds. Iowa State University Press, Ames, Iowa. pp. 676-682, 2003 Sandhu TS. Immunization of white Pekin ducklings against Pasteurella anatipestifer infection. Avian Diseases 23: 662-669, 1979 Sandhu TS. Immunogenicity and safety of a live Pasteurella anatipestifer vaccine in white Pekin ducklings: laboratory and field trials. Avian Pathology 20: 423-432, 1991 Sawada K, Kokeguchi S, Hongyo H, Sawada S, Miyamoto M, Maeda H, Nishimura F, Takashiba S, Murayama Y. Identification by subtractive hybridization of a novel insertion sequence specific for virulent strains of Porphyromonas gingivalis. Infection and Immunity 67: 5621-5625, 1999 Segers P, Mannheim W, Vancanneyt M, Branot K, Hinz KH, Kersters K, Vandamme P. Riemerella anatipestifer gen. nov., comb. nov., the causative agent of septicemia anserum exsudative, and its phylogenetic affiliation with the Flavobacterium-cytophaga rRNA homology group. International Journal of Systematic Bacteriology 43: 768-776, 1993 Smith JE. Genus Pasteurella Trevisan 1987. In Buchanan RE and Gibbon NE (eds.). Bergey′s Manual of Determinative Bacteriology, 8th ed. Williams and Wilkins, Baltimore, MD. 370-373, 1974 Smith JM, Frame DD, Cooper G, Bickford AA, Ghazikhnian YG, Kelly BJ. Pasteurella anatipestifer infection in commercial meat-type turkeys in California. Avian Diseases 31: 913-917, 1987 Smoot LM, Franke DD, McGillivary G, Actis LA. Genomic analysis of the F3031 Brazilian purpuric fever clone of Haemophilus influenzae biogroup aegyptius by PCR-based subtractive hybridization. Infection and Immunity 70: 2694-2699, 2002 Straus D, Ausubel FM. Genomic subtraction for cloning DNA corresponding to deletion mutations. Proc Natl Acad Sci U S A 87: 1889-1893, 1990 Strauss EJ, Falkow S. Microbial pathogenesis: genomics and beyond. Science 276: 707-712, 1997 Subramaniam S, Chua KL, Tan HM, Loh H, Kuhnert P, Frey J. Phylogenetic position of Riemerella anatipestifer based on 16S rRNA gene sequences. International Journal of Systematic Bacteriology 47: 562-565, 1997 Swayne DE, Glisson JR, Jackwood MW, Pearson JE, Reed WM. A laboratory manual for the isolation and identification of avian pathogens. 4th ed. American Association of Avian Pathologists, pp. 17-25, 1998 Tascon RI, Rodriguez-Ferri EF, Gutierrez-Martin CB, Rodriguez-Barbosa I, Berche P, Vazquez-Boland JA. Transposon mutagenesis in Actinobacillus pleuropneumoniae with a Tn10 derivative. Journal of Bacteriology 175: 5717-5722, 1993 Taylor JRE. Studies on infectious serositis of duck in Canada. Proc 27th Ann Meet Northeast Conf Workers in Pullorum Disease Control, 1955 Timms LM, Marshall RN. Laboratory assessment of protection given by experimental Pasteurella anatipestifer vaccine. British Veterinary Journal 145: 483-493, 1989 Tiong SK. Mycoplasmas and acholeplasmas isolated from ducks and their possible association with Pasteurellas. Veterinary Reserch 127: 64-66, 1990 Tsai HJ, Liu YT, Tseng CS, Pan MJ. Genetic variation of the ompA and 16S rRNA genes of Riemerella anatipestifer. Avian Pathology 34: 55-64, 2005 Washburn MP, Yates JR, 3rd. Analysis of the microbial proteome. Current Opinion in Microbiology 3: 292-297, 2000 West SHE, Romero MJM, Regassa LB, Zielinski NA, Welch RA. Construction of Actinobacillus pleuropneumoniae - Escherichia coli shuttle vector: expression of antibiotic-resistance gene. Gene 160: 81-86, 1995 Winstanley C. Spot the difference: applications of subtractive hybridisation to the study of bacterial pathogens. Journal of Medical Microbiology 51: 459-467, 2002 Weng SC, Lin W, Chang YF, Chang FC. Identification of a virulence-associated protein homolog gene and ISRa1 in a plasmid of Riemerella anatipestifer. FEMS Microbiology Letters 179: 11-19, 1999. Wobeser GA, Ward GE. Pasteurella anatipestifer infection in migrating whistling swans. Journal of Wildlife Diseases 10: 466-470, 1974 Xu J, Bjursell MK, Himrod J, Deng S, Carmichael LK, Chiang HC, Hooper LV, Gordon JI. A genomic view of the human-Bacteroides thetaiotaomicron symbiosis. Science 299: 2074-6, 2003 Zehr WJ, Ostendorf J. Pasteurella anatipestifer in turkeys. Avian Diseases 14: 557-560, 1970 | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/34483 | - |
| dc.description.abstract | 中文摘要
鴨疫里莫氏桿菌 (Riemerella anatipestifer, RA) 引起水禽及火雞之多發性漿膜炎,造成嚴重經濟損失。RA共有21種血清型,其中台灣以第2血清型為最主要。不活化菌苗在不同血清型別間無交叉保護,亟需發展活菌疫苗預防本病發生。RA之分子生物基礎研究報告不多,毒力因子尚未完全明瞭。近年有多種細菌曾利用跳躍子 (transposon) 和穿梭載體 (shuttle vector) 進行基因突變且成功選殖具免疫力之突變株。本實驗利用基因相減雜交法分析RA菌株之基因多樣性及利用跳躍子和穿梭載體技術製備RA突變株,以供深入探討RA之致病因子及發展疫苗之用。應用基因相減雜交法區分DNA片段僅存在於台灣第二血清型RA臨床分離株而不存在於RA第二血清型疫苗弱毒株。選殖36個DNA片段,以BLAST 程式分析中,有9個選殖片段與RA質體相關,2個與Bacteroides fragilis 基因相關,1個與Yersinia基因相關,1個與Eubacterium partial 16S rRNA相似,其餘23片段沒有與任何巳知基因相似。蛋白質比對結果,有5個為未知功能的假設性蛋白質 (hypothetical protein),9個選殖片段分別為β-lactamase 負調控蛋白 (negative regulator of β-lactamase)、複製酶(replicase)、尿紫質元脫梭酶 (uroporphyrinogen decarboxylase)、整合酶(integrase)、溶菌酶 (lysozyme)、複製性蛋白 (replication protein)、ATP酶 (ATPase)、成隱性毒素 (addiction module toxin),16個片段則與細菌蛋白相似性低,另外6個無相似性蛋白。實驗結果顯示基因相減雜交法可確認存在於第二血清型RA野外分離株之DNA片段,進而提供RA基因差異研究的開始。在製作 RA 突變株方面,以三類跳躍子 (1) Mini-Tn5 Km2, Mini-Tn5 Cm, pLOF/Km 或 pLOF/Cm 及 (2) pEP4351, R751::Tn4351 (3) pSC189/Km 或pSC189/Cm 進行 RA 之突變,篩選出陽性轉型株以沙忍氏墨點轉漬法確定是否有轉位 (transposition) 發生。另外利用其他菌種之穿梭載體: pCP23, pCP29, pGP704Sac28, pGP704Sac38,做特定基因之置換,進而達到突變作用。在 Mini-Tn5 Km2,Mini-Tn5 Cm, pLOF/Km 或 pLOF/Cm, pSC189/Km 或 pSC189/Cm 等跳躍子皆未篩得突變株,非 RA 來源之穿梭載體亦未發現 RA 突變株。由Proteobacteria 和 CFB group 來源之跳躍子皆無法在 RA 菌體上有功用?推測原因可能為: 1. RA 無法認識跳躍子抗藥基因的起動子。 2. RA 本身之內切限制系統阻斷了外來基因進入。 3. RA 無法複製和保留整個帶有抗藥基因的移動序列。4. 跳躍子之 transposase gene 無法被 RA 的 RNA polymerase 辨認,因而無轉位的動作。 | zh_TW |
| dc.description.abstract | Abstract
Riemerella anatipestifer infection is an economic important disease in waterfowl and turkey industries. Twenty-one different serovars of R. anatipestifer have been reported and serovar 2 is the major type in Taiwan. PCR-based subtractive hybridization was employed to isolate DNA fragments in a tested R. anatipestifer strain. Serovar 2 of Taiwan local strain presented the specific fragments but was absent in reference avirulent vaccine strain. Thirty six specific DNA fragments in the local wild strain were obtained. The fragments were sequenced and their DNA sequences were analyzed by BLAST program. Among them 9 DNA fragments (genes) related to R. anatipestifer plasmids, 2 DNA fragments related to B. fragilis genes, 1 DNA fragment related to Yersinia, 1 DNA fragment related to eubacterium partial 16S rRNA gene and the other 23 DNA fragment had no DNA sequence homologs in the Genbank. Protein analysis showed that 5 clones had homology to hypothetic proteins, 9 clones were similar to negative regulator of β-lactamase, replicase, uroporphyrinogen decarboxylase, integrase, lysozyme, replication protein, ATPase, and addiction module toxin, respectively and 16 clones had a low similarity to bacterium protein. The other 6 clones encode proteins with unknown function. Subtractive hybridization technique is successfully identifying genes in field isolated R. anatipestifer that are absent in the reference avirulent vaccine strain. These results provide new insights into R. anatipestifer genetic diversity. Attempts to generate mutants by using transposons and shuttle vectors, but failed. The reasons that we are unable to generate mutants in R. anatipestifer with the broad-host-range plasmids and transposons are: (1). the plasmids and transposons were unable to transfer into the R. anatipestifer. (2). the plasmids and transposons might be degraded by R. anatipestifer restriction system. (3). the antibiotic gene from the plasmids or transposons could not express in R. anatipestifer and (4). The promoter of the transposase gene (tnp) could not be recognized by R. anatipestifer’s RNA polymerase and no transposase was expressed. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-13T06:10:55Z (GMT). No. of bitstreams: 1 ntu-95-R92629001-1.pdf: 1973738 bytes, checksum: c3fe18f252fa00b7a65005cefc0ba170 (MD5) Previous issue date: 2006 | en |
| dc.description.tableofcontents | 目錄
目錄-------------------------------------------------------------------------------------------- Ⅰ 圖次-------------------------------------------------------------------------------------------- Ⅳ 表次-------------------------------------------------------------------------------------------- Ⅴ 中文摘要-------------------------------------------------------------------------------------- Ⅵ 英文摘要-------------------------------------------------------------------------------------- Ⅷ 第一章 前言------------------------------------------------------------------------------- 1 第二章 文獻探討------------------------------------------------------------------------- 2 第一節 Riemerella anatipestifer之病原性---------------------------- 2 2.1.1細菌分類沿革--------------------------------------------- 2 2.1.2形態學與生化特性--------------------------------------- 3 2.1.3血清學------------------------------------------------------ 4 第二節 Riemerella anatipestifer感染症------------------------------- 5 2.2.1流行病學--------------------------------------------------- 5 2.2.2臨床症狀和病理變化------------------------------------ 6 2.2.3診斷與治療------------------------------------------------ 7 2.2.4預防與控制------------------------------------------------ 7 2.2.5 RA 毒力因子研究及疫苗開發------------------------ 8 第三節 基因抑制相減雜交法------------------------------------------ 11 2.3.1引言--------------------------------------------------------- 11 2.3.2原理及應用------------------------------------------------ 12 第四節 跳躍子及穿梭載體--------------------------------------------- 17 2.4.1 跳躍子----------------------------------------------------- 17 2.4.2 穿梭載體-------------------------------------------------- 18 第三章 材料與方法---------------------------------------------------------------------- 19 第一節 細菌與載體------------------------------------------------------ 19 3.1.1 R. anatipestifer菌株-------------------------------------- 19 3.1.2選殖用E. coli --------------------------------------------- 20 3.1.3載體--------------------------------------------------------- 21 第二節 質體DNA 之抽取---------------------------------------------- 22 3.2.1小量質體DNA製備------------------------------------- 22 3.2.2小量質體DNA抽取套組 ------------------------------ 22 第三節 基因抑制相減雜交法 ----------------------------------------- 23 3.3.1 R. anatipestifer-------------------------------------------- 23 3.3.2 E.coli ------------------------------------------------------- 24 3.3.3基因體DNA製備---------------------------------------- 24 3.3.4基因抑制相減雜交試驗--------------------------------- 25 3.3.5 菌量 PCR----------------------------------------------- 28 3.3.6 DNA墨點法----------------------------------------------- 28 3.3.7沙忍氏墨點轉漬分析------------------------------------ 29 3.3.8核酸之定量------------------------------------------------ 32 3.3.9 DNA定序及分析----------------------------------------- 32 第四節 轉型作用--------------------------------------------------------- 33 3.4.1氯化鈣法--------------------------------------------------- 33 3.4.2電穿孔轉型法--------------------------------------------- 33 第五節 接合反應--------------------------------------------------------- 34 第四章 結果------------------------------------------------------------------------------- 35 第一節 R. anatipestifer菌株之鑑定----------------------------------- 35 第二節 抑制相減雜交法選殖片段的之確認------------------------ 35 第三節 選殖片段DNA序列分析-------------------------------------- 36 第四節 R. anatipestifer 突變株製備---------------------------------- 37 第五節 沙忍氏墨點轉漬分析跳躍子之插入位--------------------- 37 第五章 討論------------------------------------------------------------------------------- 55 第六章 參考文獻------------------------------------------------------------------------- 59 | |
| dc.language.iso | zh-TW | |
| dc.subject | 鴨疫里莫氏桿菌 | zh_TW |
| dc.subject | 基因體相減雜交 | zh_TW |
| dc.subject | 跳躍子 | zh_TW |
| dc.subject | 穿梭載體 | zh_TW |
| dc.subject | Genome subtractive hybridization | en |
| dc.subject | Riemerella anatipestifer | en |
| dc.subject | Shuttle vector | en |
| dc.subject | Transposon | en |
| dc.title | 鴨疫里莫氏桿菌菌株間之基因差異分析 | zh_TW |
| dc.title | Comparison of gene diversity in Riemerella anatipestifer | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 94-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 張照夫(Chao-Fu Chang),林茂勇(Maw-Yeong Lin) | |
| dc.subject.keyword | 鴨疫里莫氏桿菌,基因體相減雜交,跳躍子,穿梭載體, | zh_TW |
| dc.subject.keyword | Riemerella anatipestifer,Genome subtractive hybridization,Transposon,Shuttle vector, | en |
| dc.relation.page | 67 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2006-04-03 | |
| dc.contributor.author-college | 生物資源暨農學院 | zh_TW |
| dc.contributor.author-dept | 獸醫學研究所 | zh_TW |
| 顯示於系所單位: | 獸醫學系 | |
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