請用此 Handle URI 來引用此文件:
http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/76247
完整後設資料紀錄
DC 欄位 | 值 | 語言 |
---|---|---|
dc.contributor.author | 張家維 | zh_TW |
dc.date.accessioned | 2021-07-01T08:19:30Z | - |
dc.date.available | 2021-07-01T08:19:30Z | - |
dc.date.issued | 1996 | |
dc.identifier.citation | 周宏農,1991。麻痺性貝毒中毒事件。疫訊2, 4-7。 雷淑芬,1990。彰化蚵寮沿岸產巨牡蠣(Crassostrea gigas)之食性與成長。國立臺灣大學漁業科學研究所,碩士論文。 蘇惠美,1989。台灣株塔瑪藻的生物特性。國立臺灣大學海洋研究所,博士論文。 蘇惠美、周宏農,1993。有害微細藻類與貝毒檢驗法。農委會漁業特刊第四十三號。 蘇惠美,1995。養殖水產品品質衛生監視及改善(執行小題-彰化雲林嘉義台南屏東貝類養殖區毒藻監測),八十一至八十四年度綜合報告。 蕭斯欣,1991。台灣株塔瑪藻(Alexandrium tamarense)麻痺性毒之分離及其與環境因數間之關係。國立臺灣大學海洋研究所,碩士論文。 Anderson, D. M. 1989. Toxic algal blooms and red tides: a global perspective. In: Red Tides Biology, Environmental Science, and Toxicology. (Okaichi, T., Anderson, D. M. and Nemoto, T. eds.), Elsevier, New York, pp.11-l6. Arakawa, O., Nishio, S., Noguchi, T., Shida, Y. and Onoue, Y. 1995. A new saxitoxin analogue from a xanthid crad Atergatis floridus. Toxicon 33: 1577-1584. Association of Official Agricultural Chemists (A.O.A.C.). 1984. Official methods of analysis, 13th ed. Washington, D.C. Baden, D. G. 1983. Marine food-borne dinoflagellate toxins. International Review of Cytology 82: 99-149. Bates, H. A. and Rapoport, H. 1975. A chemical assay for saxitoxin, the paralytic shellfish poison. J. Agric. Food Chem. 23: 237-239. Blogoslawski, W. J. 1988. Ozone depuration of bivalves containing PSP: Pitfalls and possibilities. Journal of Shellfish Research 7: 702-705. Bordner, J., Thiessen, W. B., Bates, H. A. and Rapoport, H. 1975. The structure of a crystalline derivative of saxitoxin. The structure of saxitoxin. J. Amer. Chem. Soc. 97: 6008-6012. Boyer, G. L., Schantz, E. J. and Schnoes, H. K. 1978. Characterization of 11-hydroxysaxitoxin sulphate, a major toxin in scallops exposed to blooms of the poisonous dinoflagellate Gonyaulax tamarensis. J. C. S. Chem. Comm. 889-890. Buckley, L. J., Ikawa, M. and Sasner, J. J. 1976. Isolation of gonyaulax tamarensis toxins from soft shell clams (Mya arenaria) and a thin-layer chromatographic-fluorometric method for their detection. J. Agric. Food Chem. 24 107-111. Carlson, R. E., Lever, M. L., Lee, B. W. and Guire, P. E. 1984. Development of immunoassays for paralytic shellfish poisoning. A radioimmunoassay for saxitoxin. In: Seafood Toxins (Ragelis, E. P. ed.) American chemical society, Washington, D.C. pp. 181-192. Chang, C. C. and Hong, S. J. 1986. Pharmacological identification of saxitoxin-like toxins in the cultured purple clam, Hiatula diphos. Toxicon 24:861-864. Chebib, H. A., Cembella, A. D. and Anderson, P. 1993. Differential paralytic shellfish toxin accumulation and detoxification kinetics in transplanted populations of Mytilus edulis exposed to natual blooms of Alexandrium excavatum. In: Toxic Phytoplankton in the Sea. (Theodore, J.S. and Shimizu, Y. eds.), Elsevier, New York, pp.: 383-388. Chou, H. N. and Su, H. M. 1989. Allelochemicals in marine ecosystems. In: Phytochemical Ecology: Allelochemicals, Mycotoxins and Insect Pheromones and Allomones. (Chou, C. H. and Waller G. R. eds.) Institute of botany, Academia sinica, Taipei, pp.:119-128. Desbiens, M. and Cembella, A. D. 1993. Minization of PSP toxin accumulation in cultured blue mussels (Mytilus edulis) by vertical displacement in the water column. In: Toxic Phytoplankton in the Sea. (Theodore, J.S. and Shimizu, Y. eds.), Elsevier, New York, pp.: 395-399. Evans, M. H. 1972. Tetrodoxin, saxitoxin and related substances: their applications in neurobiology. Int. Rev. Neurobiol. 15: 83-166. Fraga, S. and Sanchez, F. J. 1985. Toxic and potentially toxic dinoflagellates in Galician Rias (NW Spain). In: Toxic Dinoflagellates.(Anerson, D.M., White, A. W. and Baden, D. G. eds.), Elsevier, New York. pp.:51-54. Gainey, L. F. JR. and Shumway, S. E. 1988. A compendium of the responses of bivalve molluscs to toxic dinoflagellates. Journal of Shellfish Research 7: 623-628. Genenah, A. A. and Shimizu, Y. 1981. Specific toxicity of paralytic shellfish poisons. J. Agric. Food Chem. 29: 1289-1291. Hall, S., Reichardt, P. B. and Neve, R. A. 1980. Toxins extracted from an alaskan isolate of Gonyaulax sp. Biochem. Biophy. Res. Comm. 97: 649-653. Hall, S., Darling, S. D., Boyer, G. L., Reichardt, P. B. and Liu, H.-W. 1984. Dinoflagellate neurotoxins related to saxitoxin: Structures of toxins C3 and C4, and confirmation of the structure of neosaxitoxin. Tetrahedron Letters 25: 3537-3538. Hall, S., Strichartz, G., Moczydlowski, E., Ravindran, A. and Reichardt, P. B. 1990. The Saxitoxins. In: Marine Toxins (Hall, S., and Strichartz, G., eds.), Amercian Chemical Society, Wahsington, D.C. pp.: 29-65. Hallegraeff, G. M., Steffensen, D. A. and Wetherbee, R. 1988. Three estuarine Australian dinoflagellates that can produce paralytic shellfish toxins. J. Plank. Res. 10: 533-541. Hansen, P. J., Cembella, A. D. and Moestrup, O. 1992. The marine dinoflagellate Alexandrium ostenfeldii: paralytic shellfish toxin concentration, composition, and toxicity to a tintid ciliate. J. Phycol. 28 597-603. Harada, T., Oshima, Y. and Yasumoto, T. 1982. Structure of two paralytic shellfish toxins, gonyautoxins 5 and 6, isolated from a tropical dinoflagellate, Pyrodinium bahamense var. compressa. Agric. Biol. Chem. 46: 1861-1864. Harada, T., Oshima, Y. and Yasumoto, T. 1983. Natural occourence of decarbamoylsaxitoxin in tropical dinoflagellate and bivalves. Agric. Biol. Chem. 47: 191-193. Harada, T., Oshima, Y., Kamiya, H. and Yasumoto, T. 1982. Confirmation of paralytic shellfish toxins in the dinoflagellate Pyrodinium bahamense var. compressa and bivalves in Palau. Bull. Jpn. Soc. Sci. Fish. 48: 821-825. Hsu, C. P., Marchand. A., Shimizu, Y. and Sims, G. G. 1979. Paralytic shellfish toxins in the sea scallop, Placopecten magellanicus, in the bay of fundy. J. Fish Res. Board Canada. 36: 32-36. Hwang, D. F., Tsai, Y. H., Cheng, C. A. and Jeng, S. S. 1992. Comparison of paralytic toxins in aquaculture of purple clam in Taiwan. Toxicon 30: 669-672. Hwang, D. F., Noguchi, T., Nagashima, Y., Liao, I. C. and Hashimoto, K. 1987. Occurrence of paralytic shellfish poison in the purple clam Soletellina diphos (bivalve). Nippon Suisan Gakkaishi 53: 623-626. Janiszewski, J. and Boyer, G. L. 1993. The electrochemical oxidation of saxitoxin and derivatives: Its application to the HPLC analysis of PSP toxins. In: Toxic Phytoplankton in the Sea. (Theodore, J.S. and Shimizu, Y. eds.), Elsevier, New York, pp.: 889-894. Keller, M.D. and Guillard, R. R. L. 1985. Factors significant to marine dinoflagellate culture. In: _Toxic Dinoflagellates (Anderson, D. M., White, A. W. and Baden, D. G., eds), Elsevier, New York. pp.: 113-116. Kodama, M., Ogata, T., Fukuyo, Y., Ishimaru, T., Wisessang, S., Saitanu, K., Panichyakarn, V. and Piyakarnchana, T. 1988. Frotogonyaulax cohoticula, a toxic dinoflagellate found in the gulf of Thailand. Toxicon 26: 707-712. Kobayashi, M. and Shimizu, Y. 1981. Gonyautoxin VIII, A cryptic precursor of paralytic shellfish poisons. Chem. Comm.440: 827-828. Kogure, K., Tamplin, M. K., Simidu, U. and Colwell, R. R. 1988. A tissue culture assay for tetrodotoxin, saxitoxin and related toxins. Toxicon 26: 191-197. Lawrence, J. F. and Wong, B. 1995. Evaluation of a postcolumn electrochemical reactor for oxidation of paralytic shellfish poison toxins. Journal of A.O.A.C. International Vol. 78: 698-704. Llewellyn, L.E. and Endean, R. 1989. Toxicity and paralytic shellfish toxin profiles of the xanthid crabs, Lophozozymus pictor and Zosimus aeneus, collected from some Australian coral reefs. Toxicon 27:596-600. Louzao, M.C., Alfonso, A., Botana, A. M., Goenaga, X., Cabado, A. G., Vieytes, M. R. and Botana, L. M. 1994a. Effect of lyophilization on the stability of gonyautoxins obtained from contaminated mussels. Toxicon 32:807-817. Louzao, M.C., Alfonso, A., Cabado, A. G., Botana, A. M., Goenaga, X., Vieytes, M. R. and Botana, L. M. 1994b. Study of the stability of gonyautoxins in acidic solution. Fresenius J. Anal. Chem. 349: 465-468. Maderwald, N. D. 1985. Effect of water temperature on the loss of paralytic shellfish poison from the butter clam, Saxidomus giganteus. In: Toxic Dinoflagellate (Anderson, D. M., White, A. W. and baden, D. G-. eds.). Elsevier Science, New York, pp.:823-847. Maruyama, J., Noguchi, T., Matsunaga, S. and Hashimoto, K. 1984. Fast atom bombardment- and secondary ion-mass spectrometry of paralytic shellfish poisons and tetrodotoxin. Agric. Biol. Chem. 48:2783-2788. Mebs, D. and Hucho, F. 1990. Toxin acting on ion channels and synapses. In: Handbook of Toxinology. (Shier, W.T. and Mebs, D. eds). Marcel Dekker, New York and Basel, pp.:493-600. Meyer, V. R. 1993. Size-exclusion chromatography: In: Practical High-Performance Liquid Chromatography. John Wiley & Sons Inc., New York, pp.:197-207. Nagashima, Y., Maruyama, J., Noguchi, T. and Hashimoto, K., 1987. Analysis of paralytic shellfish poison and tetrodotxin by ion pairing high performance liquid chromatography. Nippon Suisan Gakkashi 53:819-823. Noguchi, T., Ueda, Y., Hashimoto, K. and Seto, H. 1981. Isolation and characterization of gonyautoxin-1 from the toxic digestive gland of scallop patinopecten yessoensis. Bull. Jpn. Soc. Sci. Fish. 47: 1227-1231. Oshima, Y. 1 995a. Postcolumn derivatization liquid chromatographic method for paralytic shellfish toxins. Journal of A.O.A.C. International Vol. 78. 528-532. Oshima, Y. 1995b. Chemical and enzymatic transformation of paralytic shellfish toxins in marine organisms. In: Harmful Marine Algal Blooms (Lassus, P., Arzul, G., Erard-le denn, E., Gentien, P. and Marcaillou-le baut eds). Lavoisier, Paris, pp. 475-480. Oshima, Y., Buckley, L. J., Alam, M. and Shimizu, Y. 1977. Heterogeneity of paralytic shellfish poisons. Three new toxins from cultured gonyaulax tamarensis cells, Mya arenaria and Saxidomus giganteus. Comp. Biochem. Physiol. 57:31-34. Oshima, Y., Fallon, W. E., Shimizu, Y., Noguchi, T. and Hashimoto, Y. 1976. Toxins of the gonyaulax sp. and infested bivalves in Owase bay. Bull. Jpn. Soc. Sci. Fish. 42: 851-856. Parris, N. A. 1984. Basic prinples and terminology. In: Instrumental Liquid Chromatography. Elsevier, New York, pp.:7-21. Ravn, H., Anthoni, U., Christophersen, C., Nielsen, P. H. and Oshima, Y. 1995. Standardized extraction method for paralytic shellfish toxins in phytoplankton. Journal of Applied Phycology 7: 589-594. Robineau, B., Gagne, J. A., Fortier, L. and Cembella, A. D. 1991. Potential impact of toxic dinlflagellate (Alexandrium excavatum) bloom on survival of fish and crustacean larvae. Mar. Biol. 108:293-301. Schantz, E. J., Mcfarren, E. F., Schafer, M. L. and Lewis, K. H. 1958. Purified shellfish poison for bioassay standardization. Journal of the A. O.A. C. 41:160-168. Schantz, E.J., Ghazarossian, V.E., Schnoes, H. K., Strong, F. M., Springer, J. P., Pezzanite, J. O. and Clardy, J. 1975. The structure of saxitoxin. J. Amer. Chem. Soc. 97: 1238-1239. Schantz, B. J., Mold, J. D., Stanger, D. W., Shavel, J., Riel, F. J., Bowdew, J. P., Lynch, J.M., Wyler, R. S., Riegel, B. R. and Sommer, H. 1957. Paralytic shellfish poison. VI. A procedure of the isolation and purification of the poison from toxic clams and mussel tissues. J. Amer. Chem. Soc. 79: 5230-5238. Schantz, E. J., Mold, J. D., Howard., W. L., Bowden, J. P., Stanger, D. W., Lynch, J. M., Wintersteiner, O. P., Dutcher, J. D., Walters, D. R. and Riegel, B. 1961. Some chemical and physical properties of purified clams and mussel poisons. Can. J. Chem. 39: 2117-2123 Shimizu, Y. 1984. Paralytic shellfish poisons. In: Progress in the Chemistry of Organic Natural Products. (Herz, W., Grisebach, H. and Kirby, G.W. eds.), Springer-verlag/Wien, New York, pp: 235-264. Shimizu, Y. 1987. Dinoflagellate toxins. In: The Biology of Dinoflagellates. (Taylor, F.J.R. ed.), Blackwell Scientific, London, pp.:282-315. Shimizu, Y. and Ragelis, E. 1979. Alternatives to the mouse assay. In Toxic dinoflagellate blooms. (Taylor, D. L. and Seliger, H. H. eds.) Elsevier, North-Holland, New York, pp.:453-455 Shimizu, Y. and Yoshioka, M. 1981. Transformation of paralytic shellfish toxins as demonstrated in Scallop homogenates. Science 212: 547-549. Shimizu, Y., Hsu, C. P. and Genenah, A. 1981. Structure of saxitoxin in solution and stereochemistry of dihydrosaxitoxin. J. Amer. Chem. Soc. 103:605-609. Shimizu, Y., Alam, M., Oshima, Y. and Fallon, W. E. 1975. Presence of four toxins in red tide infested clams and cultured Gonyau lax tamarensis cells. Biochem. Biophys. Res. Comm. 66: 731-737. Shimizu, Y., Hsu, C. P., Fallon, W. E., Oshima, Y., Miura, I. and Nakanishi, K. 1978. Structure of neosaxitoxin. J. Amer. Chem. Soc. 100: 6791-6793. Shumway, S. E. 1990. A review of the effects of algal blooms on shellfish and aquaculture. Journal of World Aquaculture 21:65-104. Shumway, S. E. 1995. Phycotoxin-related shellfish poisoning bivalve mollusc are not the only vectors. Review In Fisheries Science 3:1-31. Shumway, S. E. and Cucci, T. L. 1987. The effects of the toxic dinoflagellate Protogonyaulax tamarensis on the feeding and behaviour of bivalve molluscs. Aquatic Toxicology 10: 9-27. Shumway, S. E., Sally, S. C. and Hurst, J. W. 1988. Paralytic shellfish poisoning in Maine: Monitoring a monster. Journal of Shellfish Research 7:643-652. Shumway, S. E., Cucci, T. L., Gainey, L. and Yentsch, C. M. 1985. Preliminary study of the behavioral and physiological effects of Gonyaulax tamarensis on bivalve molluscs. In: Toxic Dinoflagellate (Anderson, D. M., White, A. W. and baden, D. G. eds.). Elsevier Science, New York. pp.: 389-394. Small, H. 1990. Ion exchange in ion chromatography. In: Ion Chromatography (Small, H. ed.). Plenun Press, New York, pp.:57-89. Steidinger, K. A. 1983. Are-evaluation of toxic dinoflagellate biology and ecology. Progr. Phycol. Res. 2: 147-188. Su, M. M., Liao, I. C. and Chiang, Y. M. 1989. A toxic dinoflagellate first recorded in Taiwan. In: Red tides: Biology, Environmental Science, and Toxicology. (Okaichi, T., Anderson, D. M. and Nemoto, T. eds.) Elsevier, New York, Amsterdam, London, pp.: 85-88. Sullivan, J. J. and Iwaoka, W. T. 1983. High pressure liquid chromatographic determination of toxins associated with paralytic shellfish poisoning. J. Assoc. Off. Anal. Chem. 66:297-303. Sullivan, J. J., Iwaoka, W. T. and Liston, J. 1983. Enzymatic transformation of PSP toxins in the littleneck clam (Protothaca staminea). Biochem. Biophys. Res. Comm. 114: 465-472. Sullivan, J. J., Wekell, M. M. and Kentala L. L. 1985. Application of HPLC for the determination of PSP toxins in shellfish. J. Food Sci. 50: 26-29. White, A. W. 1981. Sensitivity of marine fishes to toxins form the red-tide dinoflagellate Gonyaulax excavata and implications for fish kills. Mar. Biol. 65:255-260. White, A. W., Nassif, J., Shumway, S. E. and Whittaker, D. K. 1993 a. Recent occurrence of paralytic shellfish toxins in offshore shellfish in the northeastern united states. In: Toxic Phytoplankton in the Sea. (Theodore, J.S. and Shimizu, Y. eds.), Elsevier, New York, pp.: 435-440. White, A. W., Shumway, S. E., Nassif, J. and Whittaker, D. K. 1993b. Variation in levels of paralytic shellfish toxins among individual shellfish. In: Toxic Phytoplankton in the Sea. (Theodore, J.S. and Shimizu, Y. eds.), Elsevier, New York, pp.: 441-446. Wichmann, C. F., Niemczura, W. P. and Schnoes, H. K. 1981. Structures of two novel toxins from Protogonyaulax. J. Amer. Chem. Soc. 103: 6977-6978. Wichmann, C. F., Boyer, G. L., Divan, C. L., Schantz, E. J. and Schnoes, H. K. 1981. Neurotoxins of Gonyaulax excavata and bay of fundy scallops. Tetrahedron Letters 22:1941-1944. Widdows, J., Moore, M. N., Lowe, D. M. and Salkeld, P. N. 1979. Some effects of a dinoflagellate bloom (Gyrodinium auereolum) on the mussel, Mytilus edulis. J. Mar. Biol. Assoc. U. K. 59:522-524 Wong, J.L., Qesterlin, R. and Rapoport, H. 1971. The structure of saxitoxin. J. Amer. Chem. Soc. 93: 7344-7345. Wong, J. L., Brown, M. S., Matsumoto, K., Oesterlin, R. and Rapoport, H. 1971. Degradation of saxitoxin to a pyrimido [2,1-b] purine. J. Amer. Chem. Soc. 93: 4633-4634. Yentsch, C. M. 1984. Paralytic shellfish poisoning: An emerging perspective. In: Seafood Toxins (Ragelis, E. P. ed.). American chemical society, Washington, pp.: 9-24. | |
dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/76247 | - |
dc.description.abstract | 本研究為首次自台灣株微小亞歷山大藻(Alexandrium minutum Halim)中純化出二種麻痺性貝毒成份。這兩種毒素是取自單一藻株經大量培養之後的水溶性萃取物,先後經二種不同製備層析方法獲得。樣品先經膠濾層析分離後,毒性分液再經離子交換層析,分別以0-0.025N、0.027-0.03N兩種醋酸梯度沖提可得較佳的分離效果。兩毒素經核磁共振氫譜分析進一步肯定為Gonyautoxin-1、Gonyautoxin-4。藻萃取物中尚有其他已被証明但尚未分離之微量毒性成份Gonyautoxin-3、Gonyautoxin-2。測試毒素穩定性的實驗中,觀察到純質Gonyautoxin-1、Gonyautoxin-4在溶於pH=3.3醋酸溶液、溫度-20℃之下,十二天內樣品有逐漸喪失之趨勢。純毒溶液處淤pH值稍高、溫度提升狀態或經冷凍乾燥處理會促進此二種毒素的分解或相互轉換。另一部份的實驗則藉由經年例行性的抽樣分析,檢測出臺灣西南沿海養殖貝類有含麻痺性貝毒現象。受檢測的三種貝類,文蛤、牡蠣以及西施貝,唯有西施貝被檢測出含毒。毒貝幾乎完全來自於屏東地區。高效逆相層析分析的結果顯示,毒貝與該水域微小亞歷山大藻的毒性成份相同,皆為Gonyautoxin-1、Gonyautoxin-2、Gonyautoxin-3,Gonyautoxin-4。有毒西施貝含毒量曾六次超過美日兩國訂定的食用安全標準,足以妨害消費者健康。 | zh_TW |
dc.description.abstract | This is the first research ever attempting to isolate two components of paralytic shellfish toxins from Alexandrium minutum Halim in Taiwan. The two toxins were obtained by means of two different yet successive preparative chromatography on the water soluble extract that taken from a mass culture of Alexandrium minutum Halim AM-1. The sample was first seperated by a gel filtration chromatography, then the toxin fraction obtained was then puried by an ion exchange chromatography. A better ion exchange seperation was achieved by a linear gradient elution with 0-0.025N acetic acid and a subsequent 0.027-0.03N acetic acid elution on the toxin fraction. Gonyautoxin-1 and Gonyautoxin-4 were thus purified and confirmed by 1H-NMR spectroscopic analysis. There exist two other minor toxins which have been confirmed yet not purified in A. minutum are Gonyautoxin-3 and Gonyautoxin-2. Solution of pure Gonyautoxin1 and Gonyautoxin-4 were found loosing their nature gradually within 12 days even in pH=3.3 acetic acid solution and a temperature below -20℃. Pure form of toxins was also found to degrade or to convert to its epimer in a solution of higher pH or higher temperature. A drying procedure such as lyophilization may cause degradation and interconversion. The second portion of this research is the routine monitoring result of paralytic shellfish toxins in the culturing shellfishes along the south western coast of Taiwan during the year of 1993-1995. Among the three man-raised shellfishes, clam, oyster and purple clam, only purple clam was found to be toxic occasionally. It was also found that almost all the toxic purple clams were from Pintung area. The toxic purple clams were found to contain Gonyautoxin-1, Gonyautoxin-2, Gonyautoxin-3 and Gonyautoxin-4 which were the same composition of toxins found in A. minutum collected in the same area. Sometimes, the toxicity of the purple clam may exceeded the quarantine allowance of U.S. or Japan by the times of six which was thought to cause illness in human. | en |
dc.description.provenance | Made available in DSpace on 2021-07-01T08:19:30Z (GMT). No. of bitstreams: 0 Previous issue date: 1996 | en |
dc.description.tableofcontents | 壹、前言……………………………………………1 貳、材料與方法……………………………………7 A.藥品來源與儀器設備……………………………8 B.藻毒成份之純化與分析…………………………9 一.藻種之來源與培養………………………………9 二.藻細胞數之計算與藻毒之萃取………………10 三.藻毒成份之Bio-gel P2層析分離…………14 四.Bio-Ge1 P2層析後含毒分液之離子交換層析分離………14 五.藻毒成份穩定性實驗…………………………15 六.藻毒成份之核磁共振氫譜分析………………16 C.台灣西南沿海養殖貝類之麻痺性貝毒含毒概況調查………16 一 貝類之種類與按月採樣…………………………16 二 貝類樣品之處理與貝毒之分析………………16 參、結果………………………………………………………18 A.藻毒成份之純化與分析………………………………………18 一 藻毒成份之Bio-Gel P2層析分離…………………………18 二.Bio-gelP2層析後含毒分液之離子交換層析…………19 三.藻毒成份穩定性實驗……………………………21 四.藻毒成份之核磁共振氫譜分析…………………23 B .台灣西南沿海養殖貝類之麻痺性貝毒含毒概況調查…24 肆、討論…………………………………………………26 A .藻毒成份之純化與分析…………………………26 B .台灣西南沿海養殖貝類之麻痺性貝毒含毒概況調查………34 伍、參考文獻………………………………………………39 附圖…………………………………………………………56 附表…………………………………………………………76 | |
dc.language.iso | zh-TW | |
dc.title | 台灣株微小亞歷山大藻( Alexandrium minutum Halim) 毒性成份之純化分析及養殖貝類的麻痺性貝毒調查 | zh_TW |
dc.title | Isolation and characterization of paralytic shellfish toxins from Alexandrium minutum Halim of Taiwan and the routine monitoring of paralytic shellfish toxins in the culturing shellfishes along the southwestern coast of Taiwan. | en |
dc.date.schoolyear | 84-2 | |
dc.description.degree | 碩士 | |
dc.relation.page | 92 | |
dc.rights.note | 未授權 | |
dc.contributor.author-dept | 生命科學院 | zh_TW |
dc.contributor.author-dept | 漁業科學研究所 | zh_TW |
顯示於系所單位: | 漁業科學研究所 |
文件中的檔案:
沒有與此文件相關的檔案。
系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。