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請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75226
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dc.contributor.authorHui-Chen Hsuen
dc.contributor.author許惠貞zh_TW
dc.date.accessioned2021-07-01T08:12:17Z-
dc.date.available2021-07-01T08:12:17Z-
dc.date.issued2001
dc.identifier.citation王克行。1995。再析蝦病的病因,流行和預防。飼料工業16:17-20。
邱雅琳。1997。台灣養殖及野生蟹類感染白點症病毒之研究:感染率及組織感染狀況之分析。國立臺灣大學動學研究所碩士論文。
鄭錦德。1994。草蝦白點病。台南市水產動物疾病防疫報導。
Bell TA, Lightner DV (1984) IHHN virus: Infectivity and pathogenicity studies in Penaeus stylirostris and Penaeus vannamei. Aquculture 38:185-194
Bomami TA, Bruce LD, Poulos BT, Mari J, Lightner DV (1995) Partial characterization and cloning of the genome of PvSNPV (=BP-type virus) pathogenic for Penaeus vannamei. Dis. Aquat. Org. 23:59-66
Bell TA, Lightner DV (1987) IHHN disease of Penaeus stylirostris: effects of shrimp size on disease expression. J. Fish Diseases 10: 165-170
Bonami JR, Hasson KW, Mari J, Trumper B, Lightner DV (1997) Taura syndrome of marine penaeid shrimp: characterization of the viral agent. J. Gen. Virol. 78:313-319
Booryaratpalin S, Supamattaya K, Kasornchandra J, Direkbusaracom S, Aekpanithanpong U, Chantanachooklin C (1993) Non-occluded baculo-like virus, the causative agent of Yellow Head Disease in the black tiger shrimp (Penaeus monodon). Fish Pathol. 28:103-109
Brock JA, Gose R, Lightner DV, Hasson KW (1995) An overview on Taura syndrome, an important disease of farmed Penaeus vannamei. In Browdy CL and Hopkins JS (eds) Swimming Through Troubled Water. Proceeding of the Special Session on Shrimp Farming, Aquaculture '95. World Aquaculture Society, Baton Rouge, Louisiana. pp85-94
Brock JA, Nakagawa LK, Hayashi T, Teruya S, Campen H van (1986) Hepatopancretic rickettsial infection of the penaeid shrimp, Penaeus marginatus Randall from Hawaii. J. Fish Disease 9:73-77
Browdy CL, Holloway JD, Jr. King CO, Stokes AD, Hopkins JS, Sandifer PA (1993) IHHN virus and intensive culture of Penaeus vannamei: effects of stocking density and water exchange tares. J. Crust. Biol. 13:87-94
Cai S, Huang J, Wang C, Song X, Sun X, Yu J, Zhang Y, Yang C (1995) Epidemiological studies on the explosive epidemic disease of prawn in 1993-1994. J. Fish China 19:112-117
Chang PS, Lo CF, Wang YC, Kou GH (1996) Identification of white spot syndrome associated baculovirus (WSBV) target organs in shrimp, Penaeus monodon by in situ hybridization. Dis. Aquat. Org. 27:131-139
Chang YS, Peng SE, Wang HC, Hsu HC, Ho CH, Wang CH, Wang SY, Lo CF, Kou GH (2001) Sequencing and ARFLP analysis of ribonucleotide reductase large subunit gene of the white spot syndrome virus found in Blue Crab Callinectes sapidus collected from American coastal waters. Marine Biotechnology (in press)
Chantanachookin C, Booryaratpalin S, Kasornchandra J, Direkbusaracom S, Ekpanithanpong U, Supamattaya K, Flegel TW (1993) History and ultrastructure reveal a new granulosis-like virus in Penaeus monodon affected by yellow head disease. Dis. Aquat. Org. 17:145-157
Chen SN, Chang PS, Kou GH (1989) Observation on pathogenicity and epizootiology of Penaeus monodon baculovirus in cultured shrimp in Taiwan. Fish Pathol. 24:189-195
Chou HY, Huang CY, Wang CH, Chiang HC, Lo CF (1995) Pathogenicity of a baculovirus infection causing white spot syndrome in cultured penaeid shrimp in Taiwan. Dis. Aquat. Org. 23:165-173
Couch JA (1974) Free and occluded virus similar to Baculovirus in hepatopancreas of pink shrimp. Nature 247:229-231
Cowley JA, Dimmock CM, Spann KM, Walker PJ (2000) Gill-associated virus of Penaeus monodon prawns: an invertebrate virus with ORF1a and ORF1b genes related to arteri- and coronaviruses. J. Gen. Virol. 81:1473-1484
Fegan DF (1998) The status of shrimp disease in the APEC region. The 9th APEC FWG Meeting Aquculture Forum. Taipei, Taiwan
Feigenbaum DL (1975) Parasites of the commercial shrimp Penaeus vannamei Boone and Penaeus brasiliensis Latreille. Bulletin Marine Science 25: 491-514
Flaherty M, Karnjanakesorn C (1995) Marine shrimp aquaculture and natural resource degradation in Thailand. Environmental Management 19(1): 27-37
Flegel TW (1996) A turning point for sustainable aquaculture: the white spot virus crisis in Asian shrimp culture. Aquaculture Asia 1: 29-34
Flegel TW, Alday-Sanz V (1998) The crisis in Asian shrimp aquaculture: current status and future needs. J. Appl. Ivhthyol. 14: 269-273
Flegel TW (1997) Special topic review: Major viral diseases of the black tiger prawn (Penaeus monodon) in Thailand. World J. Microbiology and Biotechnology 13, 433-442
Flegel TW, Sriurairtana S, Wongteerasupaya C, Boonsaeng V, Panyim S, Withyachumnarnkul B (1995) Progress in characterization and control of yellow-head virus of Penaeus monodon. In Browdy CL and Hopkins JS eds. Swimming Through Troubled Water, Proceedings of the Specical Session on Shrimp Farming, Aquaculture '95. World Aquaculture Society, Baton Rouge, Louisiana. pp76-83
Frelier PF, Sis RF, Bell TA, Lewis DH (1992) Microscopic and ultrastructural studies of necrotizing hepatopancreatitis in Texas cultured shrimp (Penaeus vannamei). Veter. Pathol. 29:269-277
Fulks W and Main KL (1992) Disease of Cultured Penaeid Shrimp in Asia and the United States. Publ. by. The Oceanic Institute, Markapuu Point, Honolulu, HI.
Garza JR, Hasson KW, Poulos BT, Redman RM, White BL, Lightner DV (1997) Demonstration of infectious Taura Syndrome virus in the feces of seagulls collected during an epizootic in Texas. J. Aquat. Anim. Health 156-159
Hasson KW, Lightner DV, Mari J, Bonami JR, Poulos BT, Mohney LL, Redman RM, Brock JA (1999) The geographic distribution of Taura Syndrome Virus (TSV) in the Americas: determination by histopathology and in situ hybridization using TSV-specific cDNA probes. Aquaculture 171:13-26
Hasson KW, Lightner DV, Paulos BT, Redman RM, White BL. Brock JA, Benami JR (1995) Taura syndrome in Penaeus vannamei: Demonstration of a viral etiology. Dis. Aquat. Org. 23:115-126
Hsu HC, Lo CF, Liu KF, Su MS, Kou CF (1999) Studies on effective PCR screening strategies for white spot syndrome virus (WSSV) detection in Penaeus monodon brooders. Dis. Aquat. Org. 39:13-19
Huang J, Song XL, Yu J, Yang CH (1995) Baculoviral hypodermal and hematopoietic necrosis - study on the pathogen and pathology of the shrimp explosive epidemic disease of shrimp. Marine Fisheries Research 16:1-10
Inouye K, Miwa S, Oseko N, Nakano H, Kimura T (1994) Mass mortalities of cultured kuruma shrimp, Penaeus japonicus, in Japan in 1993: Electron microscopic evidence of the causative virus. Fish Pathol. 29:149-158 (in Japanese)
Inouye K, Yamano K, Ikeda N, Kimura T, Nakano H, Momoyama K, Kobayashi J, Miyajima S (1996) The penaeid rod-shape DNA virus (PRDV), which causes penaeid acute viremia (PAV). Fish Pathol. 31:93-98
Jimenez R (1992) Sindrome de Taura (Resumen). Aquacultura Ecuador 1:1-16
Kalagayan G, Godin D, Kanna R, Hagino G, Sweeney J, Brock J (1991) IHHN virus as an etiological factor in runt-deformity syndrome of juvenile Penaeus vannamei cultured in Hawaii. J. World Aquacult. Soc. 22:235-243
Kautsky N, Ronnback P, Tededgren M, Troell M (2000) Ecosystem perspectives on management of disease in shrimp pond farming. Aquaculture 191: 145-161
Kou GH, Peng SE, Chiu YL, Lo CF (1998) Tissue distribution of white spot syndrome virus (WSSV) in shrimp and crabs. In Flegel TW (ed) Advances in shrimp biotechnology. National Center for Genetic Engineering and Biotechnology, Bangkok. pp267-271
LeBlanc BD, Overstreet RM (1990) Prevalence of baculovirus penaei in experimentally infected white shrimp Penaeus vannamei relative to age. Aquaculture 87: 237-242.
LeMoullac G, Soyez C, Saulnier D, Ansquer D, Avarre JC, Levy P (1998) Effect of hypoxic stress on the immune response and the resistance to vibriosis of the shrimp Penaeus stylirostris. Fish and Shellfish Immunology 8:621-629
Liao IC (1989) Penaeus monodon culture in Taiwan: through two decades of growth. Int. J. Aquat. Fiah Technol. 1:16-24
Liao IC, Su MS, Chang CF (1992) Disease of Penaeus monodon in Taiwan: a review from 1977 to 1991. In Fulks W, Main KL (eds) Disease of cultured penaeid shrimp in Asia and the United States. Honolulu, Hawaii: Oceanic Institute. pp113-137
Lightner DV (1993) Disease of Cultured Penaeid Shrimp. In: McVey JP (eds.), CRC Handbook of Mariculture (2nd edn). World Aquaculture Society, Baton Rouge, LA, USA
Lightner DV (1999) The penaeid shrimp viruses TSV, IHHNV, WSSV, and YHV: Current status in the Americas, available diagnostic methods, and management strategies. J. Applied Aquaculture. 9(2): 27-52
Lightner DV (ed) (1996) A handbook of pathology and diagnostic procedures for diseases of penaeid shrimp. World Aquaculture Soc, Baton Rouge, LA, Section 3.
Lightner DV, Hasson KW, Redman RM, White BL (1998) Experimental infection of Western Hemisphere penaeid shrimp (Crustacea: Decapoda) with Asian isloates of white spot and yellow head syndrome virus. J. Aquatic Animal Health 10:271-281
Lightner DV, Hedrick RP, Fryer JL, Chen SN, Liao IC, Kou GH (1987) A survey of cultured penaeid shrimp in Taiwan for viral and other diseases. Fish Pathol. 22:127-140
Lightner DV, Redman RM (1998) Strategies for the control of viral diseases of shrimp in the Americas. Fish Pathol. 33:165-180
Lightner DV, Redman RM, Bell TA, Brock JA (1983) Detection of IHHN virus in Penaeus stylirostris and P. vannamei imported into Hawaii. J. World Mraiculture Society 14:212-225
Lightner DV, Redman RM, Hasson KW, Pantoja CR (1995) Taura syndrome in Penaeus vannamei (Crustacea: Decapoda): gross sign, histopathology and ultrastructure. Dis. Aquat. Org. 21:53-59
Lightner DV, Redman RM, Poulos BT, Nunan LM, Mari JL, Hasson KW (1997) Risk of spread of penaeid shrimp viruses in the Americas by the international movement of live shrimp for aquaculture and frozen shrimp for commodity markets. Rev. Sci. Techn. Off. Int. Epizooties 16:146-160
Lightner DV, Redman RM (1998) Shrimp disease and current diagnostic methods. Aquaculture 164: 201-220
Lin CK (1989) Prawn culture in Taiwan, What went wrong World Aquaculture 20:19-20
Lo CF, Chang YS, Cheng CT, Kou GH. (1998) Monitoring cultured shrimp for white spot syndrome virus (WSSV) infection in growout ponds. In Flegel TW (ed) Advances in shrimp biotechnology. National Center for Genetic Engineering and Biotechnology, Bangkok. pp281-286
Lo CF, Ho CH, Chen CH, Liu KF, Chiu YL, Yeh PY, Peng SE, Hsu HC, Liu HC, Chang CF, Su MS, Wang CH, Kou GH (1997) Detection and tissue tropism of white spot syndrome baculovirus (WSBV) in captured brooders of Penaeus monodon with a special emphasis on reproductive organs. Dis. Aquat. Org. 30: 53-72
Lo CF, Ho CH, Peng SE, Chen CH, Hsu HC, Chiu YL, Chang CF, Liu KF, Su MS, Wang CH, Kou GH (1996 b) White spot syndrome baculovirus (WSBV) detected in cultured and captured shrimp, crabs and other arthropods. Dis. Aquat. Org. 27: 215-225
Lo CF, Hsu HC, Tsai MF, Ho CH, Peng SE, Kou GH, Lightner DV (1999) Specific genomic DNA fragment analysis of different geographical clinical samples of shrimp white spot syndrome virus. Dis. Aquat. Org. 35:175-185
Lo CF, Leu JH, Ho CH, Chen CH, Peng SE, Chen YT, Chou CM, Yeh PY, Huang CJ, Chou HY, Wang CH, Kou GH (1996 a) Detection of baculovirus associated with white spot syndrome (WSBV) in penaeid shrimps using polymerase chain reaction. Dis. Aquat. Org. 25: 133-141
Lu Y, Tapay LM, Loh PC, Brock JA (1995) Infection of the yellow head baculo-like virus in two species of penaeid shrimp, P. stylirostris and P. vannamei. J. Fish Disease 17:649-656
Mari J, Bonami JR, Lightner DV (1998) Taura syndrome of marine penaeid shrimp: cloning of viral genome fragments and development of specific gene probes. Dis. Aquat. Org. 33:11-17
McMichael AJ, Bolin B, Costanza R, Daily GC, Folke C, Lindahl-Kiessling K, Lindgren E, Niklasson B (1999) Globalization and the sustainability of human health. Bioscience 49(3): 205-210
Momoyama K, Hiraoka M, Nakano H, Koube H, Inouye K, Oseka N (1994) Mass mortalities of cultured kuruma shrimp, Penaeus japonicus, in Japan in 1993: Histopathological study. Fish Pathol. 29:141-148 (in Japanese)
Momoyama K, Hiraoka M, Venegas CA (1999) Pathogenicity of penaeid rod-shapd DNA virus (PRDV) to juveniles of six crustacean species. Fish Pathol. 34:183-188
Moore DW and Brand CW (1993) The culture of marine shrimp on controlled environment superintensive systems. In: McVey JP (eds.), CRC Handbook of Mariculture (2nd edn). World Aquaculture Society, Baton Rouge, LA, USA
Morse SS (1993) Examining the origins of emerging virus. In: Morse SS (ed), Emerging Virus. pp.10-28. Oxford University Press, New York, NY, USA
Murphy FA, Fauquet CM, Bishop DHL, Ghabrial SA, Jarvis AW, Martelli GP, Summers MD (1995) Classification and nomenclature of viruses. Arch Virol, suppl. 10: 1-586
Nakano H, Koube H, Umezaea S, Momoyama K, Hiraoka M, Inouye K, Oseko N (1994) Mass mortalities of cultured kuruma shrimp, Penaeus japonicus, in Japan in 1993: epizootiological survey and infection trials. Fish Pathol. 29:135-139 (in Japanese)
Nunan LM, Poulos BT, Lightner DV (1998) The detection of white spot syndrome virus (WSSV) and yellow head virus (YHV) in imported commodity shrimp. Aquaculture 160:19-30
Overstreet RM, Lightner DV, Hasson KW, McIlwain S, Lotz JM (1997) Susceptibility to Taura syndrome virus of some penaeid shrimp species native to the Gulf of Mexico and the southeastern United States. J. Invertebr. Pathol. 69:165-176
Perkins FO, Cheng TC (eds.) (1990) Pathology in Marine Science. Academic Press, San Diego, CA, USA, pXVII
Primavera JH (1993) A critical review of shrimp pond farming in the Philippines. Reviews in Fisheries Science 1:151-201
Primavera JH (1997) Socieconomic impacts of shrimp culture. Aquaculture Research 28:815-827
Richman LK, Montali RJ, Nichols DK, Lightner DV (1997) A newly recognized fatal baculovirus infection in freshwater crayfish. Proc. Am. Assoc. Zoo Veter.
Rosenberry B (1989) World Shrimp Farming 1989. Aquaculture Digest, San Diego, CA
Rosenberry B (1996) World Shrimp Farming. Shrimp News Internaltional, San Diego, CA
Rosenberry B (1997) World Shrimp Farming. Shrimp News Internaltional, San Diego, CA
Sahul Hameed AS, Xavier Charles M, Anilkumar M (2000) Tolerence of Macrobrachium rosenbergi to white spot syndrome virus. Aquaculture 183:207-213
Schnurrenberger PR, Sharman RS, Wise GH (1987) Attacking animal diseases: concepts and strategies for controland eradication. Iowa State University, Ames, USA, pp200
Spann KM, Cowely JA, Walker PJ, Lester RJG (1997) Gill-asscoiated virus (GAV), a yellow-head-like virus from Penaeus monodon cultured in Australia. Dis. Aquat. Org. 31:169-179
Spann KM, Vickers JE, Lester RJG (1995) Lymphoid organ virus of Penaeus monodon from Australia. Dis. Aquat. Org. 23:127-134
Takahashi Y, Itami T, Kondom M, Maeda M, Fujii R, Tomonaga S, Supamattaya K, Boonyaratpalin S (1994) Electron microscopic evidence of bacilliform virus infection in Kuruma shrimp (Penaeus japonicus). Fish Pathol. 29:121-125
Tapay LM, Lu Y, Gose RB, Nadala ECB, Jr, Brock JA, Loh PC (1997) Infection of white-spot baculovirus-like (WSBV) in two species of penaeid shrimp Penaeus stylirostris (Stimpson) and P. vannamei (Boone). In Flegel TW and MacRae IH (eds.) Diseases in Asian Aquaculture III. Fish Health Section, Asian Fisheries Society, Manila, Philipines pp297-303
Tsai MF, Kou GH, Liu HC, Liu KF, Chang CF, Peng SE, Hsu HC, Wang CH, Lo CF (1999) Long-term presence of white spot syndrome virus (WSSV) in a cultured shrimp population without disease outbreak. Dis Aquat Org 38:107-114
Tsai MF, Lo CF, van Hulten MCW, Tzeng HF, Chou CM, Huang CJ, Wang CH, Vlak JM, Kou GH (2000 a) Transcriptional analysis of the ribonucleotide reductase genes of shrimp white spot syndrome virus. Virology 277: 92-99
Tsai MF, Yu HT, Tzeng HF, Leu JH, Chou CM, Huang CJ, Wang CH, Lin JY, Kou GH, Lo CF (2000 b) Identification and characterization of a shrimp whit spot syndrome virus (WSSV) gene that encodes a novel chimeric polypeptide of cellular-type thymidine kinase and thymidylate kinase. Virology 277: 100-110
Tu C, Huang HT, Chuang SH, Hsu JP, Kuo ST, Li NJ, Hsu TL, Li MC, Lin SY (1999) Taura syndrome in Pacific white shrimp Penaeus vannamei cultured in Taiwan. Dis. Aquat. Org. 38:159-161
United States Department of Commerce (1997) US Imports of Fishery Products Results. http://remora.asp.nmfs.gov//FTPUBLIC/owa/mrfss.FT_IMPORTS.RESULTS
van Hulten MCW, Westenberg M, Goodall SD, Vlak JM (2000) Identification of two major virion protein genes of white spot syndrome virus of shrimp. Virology 266:227-236
Venegas CA, Nonaka L, Mushiake K, Shimizu K, Nishizawa T, Muroga K (1999) Pathologenicity of penaeid rod-shape DNA virus (PRDV) to kuruma prawn in different developmental stages. Fish Pathol. 34: 19-23
Wamg CH, Yang HN, Tang CY, Lu CH, Kou GH, Lo CF (2000) Ultrastructure of white spot syndrome virus development in primary lymphoid organ cell culture. Dis. Aquat. Org. 41:91-104
Wang CH, Lo CF, Leu JH, Chou CM, Yeh PY, Chou HY, Tung MC, Chang CF, Su MS, Kou GH (1995) Purification and genomic analysis of baculovirus associated with white spot syndrome (WSBV) of Penaeus monodon. Dis. Aquat. Org. 23:239-242
Wang Q, White BL, Redman RM, Lightner DV (1999) Per os challenge of Litopenaeus vannamei postlarvae and Farfantepenaeus duorarum juveniles with six geographic isolates of white spot syndrome virus. Aquaculture 170:179-194
Wongteerasupaya C, Vickers JE, Sriurairatana S, Nash GL, Akarajamorn A, Boonsaeng V, Panyim S, Tassanakajon A, Withyachumnarnkul B, Flegel TW (1995) A non-occluded, systemic baculovirus that occurs in cells of ectodermal and mesodermal origin and causes high mortality in the black tiger prawn Penaeus monodon. Dis. Aquat. Org. 21:69-77
Wood JM, Webster RG, Kawaoka Y, Bean WJ, Nettles VF (1986) A lethal outbreak of H5N2 influenza in poultry in the USA: Virus characterization and host range. In: McFerran JB, McNulty MS (eds.) Acute Virus Infections of Poultry. Martinus Nijhoff, Dordrecht, pp.1-22
Yang F, Wang W, Chen RZ, Xu X (1997) A simple and efficient method for purification of prawn baculovirus DNA. J. Virol. Methods 67:1-4
Yu CI, Song YL (2000) Outbreaks of Taura syndrome in Pacific white shrimp Penaeus vannamei cultured in Taiwan. Fish Pathol. 35(1):21-24
Bell TA, Lightner DV (1987) IHHN disease of Penaeus stylirostris: effects of shrimp size on disease expression. J. Fish. Dis. 10:165-170
Blundon JA (1989) Effects of temperature and thermal history on neuromuscular properties of two crustacean species. J. Comp. Physiol. B 158: 689-696
Chen LC (1990) Culture of Penaeid shrimps. In Aquaculture in Taiwan. Chen LC, ed. Alden Press, Oxford, UK, pp. 150-200
Chen LL, Lo CF, Chiu YL, Chang CF, Kou GH (2000) Natural and experimental infection of white spot syndrome virus (WSSV) in benthic larvae of mud crab Scylla serrata. Dis. Aquat. Org. 40:157-161
Chien YH (1992) Water quality requirements and management for marine shrimp culture. Proceedings of the special session on shrimp farming (ed. By J. Wyban.) pp. 30-41. World Aquaculture Society, Baton Rouge, LA, USA.
Chou HY, Huang CY, Wang CH, Chiang HC, Lo CF (1995) Pathogenicity of a baculovirus infection causing white spot syndrome in cultured penaeid shrimp in Taiwan. Dis. Aquat. Org. 23:165-173
Flaherty M, Karnjanakesorn C (1995) Marine shrimp aquaculture and natural resource degradation in Thailand. Environmental Management 19(1): 27-37
Flegel TW (1997) Special topic review: Major viral diseases of the black tiger prawn (Penaeus monodon) in Thailand. World J. Microbiology and Biotechnology 13, 433-442
Hsu HC, Chen LL, Chang CF, Peng SE, Kou GH, Lo CF. Susceptibility of Marsupenaeus japonicus, Penaeus monodon, and P. semisulcatus to white spot syndrome virus (WSSV). Dis. Aquat. Org. (submitted)
Korringa P (1976) Farming Penaeid shrimps in Japan. In Farming marine fishes and shrimps. Korringa P, ed. pp. 91-122. Elsevier Scientific Publishiser, Amsterdam, Netherlands
Kou GH, Peng SE, Chiu YL, Lo CF (1998) Tissue distribution of white spot syndrome virus (WSSV) in shrimp and crabs. In Flegel TW (ed) Advances in shrimp biotechnology. National Center for Genetic Engineering and Biotechnology, Bangkok.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75226-
dc.description.abstract蝦類白點症病毒檢測系統的建立,對於輕微感染及未出現明顯病徵之帶原者均能準確檢測出。於台南地區的田間試驗顯示,在受檢之25個草蝦養殖池中,成功養殖至收成有13池,但在監測過程中僅有2池(11.8%)未曾測得白點症病毒聚合?鏈反應正反應,其餘收成池均曾偵測到輕微的白點症病毒帶原,比較這些養殖池的收成狀況,發現白點症病毒帶原的收成池其收成量變動很大,同時發現一但蝦池中有白點症病毒聚合?鏈反應出現一階正反應檢體,則池蝦於2-3天內即大量死亡,並且若有養殖池發病,則相鄰的養殖池亦容易受到影響。針對放養密度進行分析的結果顯示放養密度大於50 pcs/m2的養殖池,無一池養殖成功,而放養密度介於20-40 pcs/m2的養殖池具有較高的養成機會。此外,蝦苗的品質也深深地影響到收成的結果。因此除了環境因素外,蝦苗帶原情形也是左右養殖成敗之另一重要因素。由實驗室初步調查結果可知目前養殖蝦普遍是白點症病毒帶原蝦,而環境變動所造成的緊迫,又往往促使白點症病毒爆發,因此本論文亦針對溫度變化探討其對白點症病毒帶原蝦體所造成的影響。利用不同稀釋度病毒液浸泡感染的方式,以得到輕微感染白點症病毒之草蝦與斑節蝦,再施以不同溫度的緊迫,發現水溫24℃提高到29℃,蝦體於一天內即迅速死亡;溫度變化由15℃提高至24℃,於72小時內輕微感染草蝦的死亡率達100%,而輕微感染斑節蝦的死亡率僅約40%;而當溫度由15℃提高至29℃時,在輕微感染下草蝦或斑節蝦之死亡率均高達100%,顯示高溫對帶原草蝦的影響比帶原斑節蝦為大。實驗室先前調查發現天然捕獲的草蝦及斑節蝦均有很高比率的蝦白點症病毒帶原,本論文分析比較天然草蝦種蝦產前與產後的帶原情形由約67%提高至80%,因此種蝦生產過程亦是一緊迫因素,會造成蝦體中蝦類白點症病毒的大量複製。持續探討白點症病毒對種蝦產卵的影響,可知產前為嚴重感染的種蝦(即一階聚合?鏈反應為正反應)於捕獲後大部分於1-4天內死亡,僅有20%能成功產卵,但所產的卵均無法成功孵化。輕微感染及無帶原種蝦成功產卵的機率均很高(78%及81%);無帶原之種蝦產後本身及與所產的卵均無蝦白點症病毒正反應出現;而輕微感染種蝦中,則發現產後有47%已成為一階聚合?鏈反應正反應的種蝦,且其受精卵大部分為二階聚合?鏈反應正反應(89%);產後仍為輕微感染種蝦,所產的卵僅31%帶原,顯示帶原情況越輕微的種蝦,其蝦卵的病毒帶原檢出率也越低。本研究結果除可確認產卵之緊迫對蝦體的影響外,並且藉由此研究試圖建立一個種蝦的檢測模式,期望對於優質蝦苗的取得有所助益。zh_TW
dc.description.abstractWhite spot syndrome virus (WSSV) has been detected in cultured and captured shrimps, crabs, pest crabs and other arthopods. In this study, healthy Marsupenaeus japonicus and Penaeus monodon juveniles were immersed in a sub-lethal dose of filtrate prepared from diseased or healthy shrimp. After 10 days, the sub-lethally infected and the healthy control shrimp were both subjected to different temperature conditions. The experimental groups of both shrimp species began to die of high temperature (29℃) treatment, while at low temperatures (15℃) the mortalities were lower. With an initial exposure to low temperatures for 24 h, after which the water temperature was increased to 24 or 29℃, P. monodon mortality reached 90%-100% at either temperature, while at 29℃, M. japonicus mortality reached 100% within a further 48 h, but only reached 40% at 24℃. The moribund experimentally infected shrimp under temperature shifts were all one-step WSSV PCR positive. These results demonstrate that temperature shifts alone can induce an outbreak of WSS disease in populations in which viral infection is only two-step WSSV positive.
In order to discover the pattern of growth and survival of WSSV-infected shrimp on typical shrimp farms, as well as the interaction between the cultured shrimp and endemic WSSV carrier, a field survey of WSSV infection in cultured shrimp in 25 ponds in southern Taiwan at two-week intervals was carried out. Out of 25 ponds, 13 were successfully harvested. Only 2 out of 25 ponds were found to be 2-step PCR negative during the growth period. Even though the ponds were harvested in which WSSV-infected poatlarvae during growth period was detected, the survival rate, the yield, and the average body weight were variable. Mass mortality will predictably occur for any pond stocked with WSSV-infected postlarvae. At high density (>50pcs/m2), no ponds were harvest in our survey. Because the host range of WSSV is wide and hard to eliminate completely from the open culture system, it is important to monitor both the post-larve before stocking and larvae carefully during the growth period by WSSV diagnostic PCR. We re-tested stored (frozen) DNA samples in five independent PCR replicates and confirmed that equivocal tests results from a previous study on WSSV in brooders and their offspring arose because amounts of WSSV DNA in the test samples were near the sensitivity limits of the detection method. The prevalence of WSSV among spawners was 67% before spawning and 80% after. This could demonstrate that spawning stress may trigger WSSV replication. Only 60% of brooders spawned successfully, and those heavily infected when captured mostly died within 1 to 4 days, but only 20% managed to spawn. All their egg batch sub-samples were 1-step PCR positive, and many failed to hatch. The spawning rates for lightly infected spawners and negative spawners were high (81 and 78%, respectively). None of the negative spawners became WSSV positive after spawning, and none gave egg samples positive for WSSV. A full 47% of lightly infected brooders became heavily infected after spawning, and almost all egg sample replicates (89%) tested 2-step PCR positive. They remained lightly infected brooders after spawning, and only 31% of their egg sample replicates were 2-step PCR positive. Based on these results, we recommend that to avoid false negatives in WSSV PCR brooder tests, screening tests should be delayed until after spawning. We also recommend, with our PCR detection system, discarding all egg batches from brooders that are 1-step PCR positive after spawning. On the other hand, it may be possible with appropriate monitoring to use eggs from 2-step PCR positive brooders for production of WSSV free or lightly infected PL. This may be used to stock shrimp ponds under low stress rearing conditions.
en
dc.description.provenanceMade available in DSpace on 2021-07-01T08:12:17Z (GMT). No. of bitstreams: 0
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dc.description.tableofcontents中文摘要
英文摘要
緒論………………………………………………………………1
第一章、文獻探討………………………………………………4
第一節、蝦類病毒性疾病之探討………………………………5
第二節、蝦類病毒性疾病之感染特性…………………………9
第三節、養殖環境與蝦類病毒性疾病之相關…………………11
第四節、白點症病毒之生物特性………………………………12
參考文獻…………………………………………………………18
第二章、溫度變化對白點症病毒感染蝦類之影響
第一節、摘要……………………………………………………34
第二節、緒言……………………………………………………36
第三節、材料與方法……………………………………………38
第四節、結果……………………………………………………42
第五節、討論……………………………………………………45
第六節、參考文獻………………………………………………48
第七節、圖表……………………………………………………54
第三章、蝦池養成狀況與白點症病毒帶原情形之監測
第一節、摘要……………………………………………………62
第二節、緒言……………………………………………………63
第三節、材料與方法……………………………………………66
第四節、結果……………………………………………………69
第五節、討論……………………………………………………73
第六節、參考文獻………………………………………………77
第七節、圖表……………………………………………………82
第八節、附錄……………………………………………………92
第四章、種蝦白點症病毒帶原分析及其檢測模式之建立
第一節、摘要……………………………………………………94
第二節、緒言……………………………………………………96
第三節、材料與方法……………………………………………98
第四節、結果……………………………………………………100
第五節、討論……………………………………………………103
第六節、參考文獻………………………………………………105
第七節、圖表……………………………………………………110
已發表之論文著作………………………………………………115
dc.language.isozh-TW
dc.title利用WSSV (White Spot Syndrome Virus) PCR檢測技術探討影響池蝦養成之原因--分析種蝦與子代間帶原相關性zh_TW
dc.titleStudies on the effects of WSSV in the cultured shrimp by PCR - the prevalence between the brooders and their offspringsen
dc.date.schoolyear89-2
dc.description.degree碩士
dc.relation.page116
dc.rights.note未授權
dc.contributor.author-dept生命科學院zh_TW
dc.contributor.author-dept動物學研究所zh_TW
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