請用此 Handle URI 來引用此文件:
http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75821完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.author | 張錦宜 | zh_TW |
| dc.date.accessioned | 2021-07-01T08:15:39Z | - |
| dc.date.available | 2021-07-01T08:15:39Z | - |
| dc.date.issued | 1991 | |
| dc.identifier.citation | 1. Allen, D.A., Austin, B. and Colwell, R.R.(1983). Numerical taxonomy of bacterial isolates associated with a freshwater fishery. J. Gen. Microbiol. 129, 2043-2062. 2. Amirante, G.A.,(1986).Cellular immune responses in crustaceans. In Hemocytic and Humoral Immunity in Arthropods. Edited by A.P. Gupta, pp.61-76. New York: John Wiley & Sons. 3. Austin, B., Garges, S., Conrad, B., Harding, E. E., Colwell, R. H. and Simidu, U.(1979).Comparative study of the aerobic heterotrophic bacterial flora of Chesapeake Bay and Tokyo Bay. Appl. Environ. Microbiol. 37,704-714. 4. Austin, B.(1982).Taxonomy of bacteria isolated from a coastal marine fish-rearing unit. J. Appl. Bacteriol. 53,253-268. 5. Baumann, L., Baumann, P., Mandel, M. and Allen, R.D. (1972). Taxonomy of aerobic.marine eubacteria.J.Bacteriol.110,402-429. 6. Baumann, P., Gauthier, M.J. and Baumann, L.(1985).Genus Alteromonas Baumann, Baumann, Mandel and Allen 1972,418. In Bergey’s Manual of Systematic Bacteriology Vol.1, Edited by N.R. Krieg and J. G. Holt, pp.343-352.Baltiiore: Williams & Wilkins. 7. Baumann, P. and Schubert, R.H.W.(1985).FAMILY II.VIBRIONACEAE VERON 1965,5245. In Bergey’s Manual of Systematic Bacteriology Vol.1, Edited by N.R. Krieg and J. G.Holt, pp.516-550.Baltimore: Williams & Wilkins. 8. Bianchi, M.A.G. and Bianchi, A.J.M. (1982). Statistical sampling of bacterial strains and its use in bacterial diversity measurement. Microb. Ecol. 8, 61-69. 9. Bolinches, J., Lemos, M.L. and Barja J.L. (1988).Population dynamics of heterotrophic bacterial communities associated with Fucus vesiculosus and Ulva rigida in an estuary. Microb. Ecol. 15, 345-357. 10. Bolter, H.(1977).Classifying of bacterial strains by using determination schemes. In Microbial Ecology of a Brackish Water Environment. Edited by G. Rheinheimer, pp.167-170 New York: Springer-Verlag Berlin Heidelberg. 11. Bovre, K. (1985).Genus II. Moraxella Lwoff 1939,173. emend. Henriksen and Bovre l968,391. In Bergey’s Manual of Sys-tematic Bacteriology Vol.1, Edited by N.R. Krieg and J.G. Bolt, pp.296-303.Baltimore: Williams & Wilkins. 12. Bratbak, G. & Dundas, I.(1984).Bacterial dry matter content and biomass estimations. Appl. Environ. Microbiol. 48, 755-757. 13. Bratbak, G.(1985).Bacterial biovolume and biomass estimations. Appl. Environ. Microbiol. 49, 1488-1493. 14. Brock, T.D. and Clyne, J.(1984).Significance of algal excretory products for growth of epilimnetic bacteria. Appl. Environ. Microbiol.47, 731-734. 15. Buck, J.D.(1974).Effects of medium composition on the recovery of bacteria from sea water. J. exp. mar. Biol. Ecol 15, 25-34. 16. Cahill, M.M.(1990).Bacterial flora of fishes: A review. Microb. Ecol. 19, 21-41. 17. Casida, L.E.(1965).Abundant microorganism in soil. Appl. Microbiol. 13,327-334. 18. Clarholw, M. (1984).Heterotrophic, free-living protozoa: neglected microorganisms with an important task in re gulating bacterial populations. In Current Perspectives in Microbial Ecology,pp.321-326.Edited by M.J. Klug & C. A. Reddy, Washington, D.C.: American Society for Microbiology. 19. Collins, C.M. and Lyne, P.H.(1984).Cultural methods. In Microbiological Methods 5th edn, pp.89-96. Singapore Butterworths. 20. Desmonts, C., Munet, J., Colwell, R.R. and Cormier, M. (1990). Fluorescent-antibody method useful for detecting viable but nonculturable Salmonella spp. in chlorinated waste-water. Appl. Environ. Microbiol. 56, 1448-1452. 21. Feltham, R.K.A., Power, A.K., Pell, P.A. and Sneath, P.H.A. (1978) A simple method for storage of bacteria at-76°C. J. Appl. Bacterial. 44, 313-316. 22. Fry, J.C. and Zia, T.(1982).A method for estimating viability of aquatic bacteria by slide culture. J. Appl. Bacterial.53, 189-198. 23. Fry, J.C. and Zia, T.(1982).Viability of heterotrophic bacteria in freshwater. T. Gen. Microbial. 128,284 1-2850. 24. Gehlen, M., Trampisch, H.J. and Dott, W. (1985).Physiological characterization of heterotrophic bacterial communities from selected aquatic environments. Microb. Ecol. 11, 205-219. 25. Greenberg, A.E., trussell, R.R. and Clesceri, L.S. (1985). Nitrogen (Ammonia).In Standard Method for the Examination of Water and Wastewater 6th edn, pp.374-390. Washington D.C.: American Public Health Association. 26. Greenberg, A.E., Trussell, R.R. and Clesceri, L.S. (1985). Sulfide. In Standard Method for the Examination of Water and Wastewater 6th edn, pp.470-478.Washington D.C.: American Public Health Association. 27. Greenberg, A.E., trussell, R.R. and Clesceri, L.S. (1985). Oxygen Demand (Chemical).In Standard Method for the Examination of Water and Wastewater 6th edn, pp.470-478. Washington D.C.: American Public Health Association. 28. Hauxhurst, J.D., Krichevsky, M.I. and Atlas, R.M. (l980).Numerical taxonomy of bacteria from the Gulf of Alaska. J. Gen. Microb. 120, 131-148. 29. Heinsz, L.J:, Harrison, M.A. and Leiting, V.A. (1988).Microflora of Brown Shrimp (Penaeus aztecus) from Georgia coastal waters. Food Microbial. 5,141-145. 30. Hidaka, T. and Shimazu, S.(1984).Seasonal changes in the generic composition of heterotrophic bacteria in seawater of Kagoshima Bay. Mem. Fac. Fish., Kagoshima Univ.33,97-105. 31. Hirsch, P. and Rohkohl, E.R.(1988).Some special problems in the determination of viable counts of groundwater microorganisms. Microb. Ecol. 16, 99-113. 32. Hobbie, J.E., Daley, R.J. and Jasper, S.(1977).Use of nucleopore filters for counting bacteria by fluorescence microscopy. Appl. Environ. Microbiol. 33,1225-1228. 33. Holmes, B., Owen, R.J. and McMeekin, T.A.(1985).Genus Flayobacterium Hammer and Huntoon 1923,97 In Bergey’s Manual of Systematic Bacteriology Vol.1, Edited by N.R. Krieg an J.G. Holt, pp.353-36l.Baltiore:Willias and Wilkins. 34. Horie, S., Saheki, K., Kozuma., T., Nara, M. and Sekine, Y.(1954). Distribution of Vibrio parahaemolyticus in plankton and fish in the open sea.B1l.Japan.Soc.Scj.pjsh.30,785-791 35. Horsley, R.W.(1973).The bacterial flora of the Atlantic Salmon (Salmo salar L.) in relation to its environment. Appl. Bacteriol. 36, 77-386 36. H htanen, C.N., Naghski, J. and Dellamonica, E.S. (1972).Micro fermentation series for identification of single colonies of Enterobacteriaceae. Appl. Microbiol. 24,618-627. 37. Hruq, A., Small, E.B., West, P.A Huq,. M I., Rahman, R. and Colwell, R.R.(1983).Ecological relationships between Vibrio cholerse and planktonic crustacean copepods. Appl. Environ. Microbial.45, 275-283. 38. Jayne-Wil1ias, D.J.(1975) Miniaturized methods for the characterization of bacterial isolates. J. Appl. Bacterial.38, 305-309. 39. Jeffrey, W.H. and Paul, J.H.(l988).Underestimation of DNA synthesis by [2H] thymidine incorporation marine bacteria. Appl. Environ. Microbiol. 54,3165-3168. 40. Jutta, K.B., Anders, E.M. and Nehrkorn, A.(1988).Microbial communities in the saturated groundwater environment II: Diversity of bacterial communities in a pleistocene sand aquifer and their In.. Vitro activities. Microb. Ecol. 16, 31-48. 41. Juni, E.(l985).Genus III. Acinetobacter Brisou and Prevot 1954, 727. In Bergey’s Manual of Systematic Bacteriology Vol.1, Edited by N.R. Krieg and J.G. Holt, pp.303-307.Baltimore: Williams and Wilkins. 42. Kaneko, T. and Colwell, R.R.(1975).Adsorption of Vibrio para-haemolyticus onto chitin and copepods. Appl. IMicrobiol. 29, 269-24. 43. Kaneko, T., Krichevsky, M.I. and Atlas, R.M.(l979).Numerical taxonomy o bacteria from the Beaufort Sea.. J. Gen. Microbiol. 110,111-125. 44. Kersters, K. and Ley, J.D.(l985).Genus Alcaligenes.Castellani and Chalmers 1919,936. In Bergey’s Manual &f Systematic Bacteriology Vol.1, Edited by N.R. Krieg and J.G. Holt, pp. 36l-373.Baltinlore: Villiams and Wilkins. 45. Kogure, K. and Koike, I.(1987).Particle counter determination of bacterial biomass in seawater. Appl. Environ. Microbiol, 53,274-277. 46. Kogure, K., Simidu, U. and Taga, N.(1979).A tentative direct microscopic method for counting living marine bacteria. Can.J.Microbiol.25, 415-420. 47. Lee, J.S. and Pfeifer, D.K. (1977).Microbiological characteristics of pacific shrimp (Pandalus. jordani).Appl. Environ. Microbiol. 33,853-859. 48. Lightner, D.V.(1988a).Vibrio disease. In Disease Diagnosis and Control in North American Marine Aquaculture. 2nd edn, Edited by C.J. Sindermann and D.V. Lightner, pp.42-47. New york: Elsevier. 49. Lightner, D.V.(1988b).Bacterial shell (brown spot) disease In Disease Diagnosis and Control in North American Marine Aquaculture.2nd edn, Edited by C.J. Sindermann and D.V. Lightner,pp.48-51.New york: Elsevier. 50. MacFaddin, J.F. (1980).Biochemical Tests for Identification of Medical Bacteria 2nd edn, Baltimore: Williams and Wilkins. 51. Maeda, M. and Taga, N.(1979).Chromogenic assay method of li-popolysaccharide(LPS) for evaluating bacterial standing crop in seawater. J. Appl. Bacteriol. 47,175-182. 52. Messer, J.W., Peeler, J.T. and Gilchrist, J.E.(l984).Aerobic plate count. In Bacteriological Analytical Manual 6th edn, Division of Microbiology Center for Food Safety and Applied Nutrition. F.D.A. 53. Morii, H. and Kasama, K.(1989).Bacterial flora in the digestive tracts of mudskipper fishes Boleophthalmus pectinirostris and Periophthalmus cantonensis. Nippon Suisan Gakkaishi 55,733-741. 54. Muroga, K., Higashi, M. and Keitoku, H.(1987).The isolation of intestinal microflora of farmed red seabream (Pagrus major)and black seabream (Acanthopagrus sch1eeli) at larval and juvenile stages. Aquaculture 65, 79-88. 55. Olsen, R.A. and Bakken, L.R.(1987).Viability of soil bacteria optimization of plate-counting technique and comparison between total counts and plate counts within different size groups. Microb. Ecol. 13, 59-74. 56. Palleroni, N.J. (1985).Genus I. Pseudomonas Migula 1894,237 (Nom. cons. Opin. 5, Jud. Comm. 1952, 237.) in Bergey’s Manual of Systematic Bacteriology Vol.1,Edited by N.R. Krieg and J.G.. Holt, pp.l41-199.Baltimore: Williams and Wilkins. 57. Porter, K.G. and Feig, Y.S.(1980).The use of DAPI for identifying and counting aquatic microflora. Limnol. Oceanogr. 25,943-948. 58. Riquelme, C.E., Fukanii, K. and Ishida, Y.(1989).Growth response of bacteria to extracellular products of bloom algae. Nippon Suisan Gakkaishi. 55,349-355. 59. Simidu, U., Ashino, K. and Kaneko, E.(1971).Bacterial flora of phyto- and zoo-plankton in the inshore water of Japan. Can. J. Microbiol. 17, 1157-1160. 60. Sneath, P.H.A. and Sokal, R.R.(1973).The aims and principles of numerical taxonomy. In Numerical Taxonomy The Principles and Practice of Numerical Classification, pp.1-15. San Francisco: W.H. Freeman and Company. 61. Sneath, P.H.A. and Sokal, R.R.(1973).Optimality criteria and the comparison of classifications. In Numerical Taxonomy The Principles and Practice of Numerical Classification pp.275-290. San Francisco: W.H. Freeman and Company. 62. Snell, J.J.S.(1985).Genus IV. Kingella Henriksen and Bovre 1976,449. In Bergey’s Manual of Systematic Bacteriology Vol.1, Edited by N.R. Krieg and J.G.. Holt, pp.307-310.Baltimore: Williams and Wilkins. 63. Sochard, M.R., Wilson, D.F., Austin, B. and Colwell, R.R. (1979). Bacteria associated with the surface and gut of marine copepods. Appl. Environ. Microbial. 37,750-759. 64. Stanier, R.Y., Ingraham, J.L., Wheelis, 11.L. and Painter, P.R. (1987).Effect of the environment on microbial growth. In The Microbial World 5th edn., pp.196-212. Taipei: The National Book Company. 65. Sugita, H., Arai, H., Okada, S., Nagaya, M. and Deguchi, Y. (1989) Changes of the bacterial composition of goldfish culture water during the decomposition of food pellets. Nippon Suisan Gakkaishi. 55, 661-668. 66. Takahashi, Y., Shimoyama, Y. and Momoyama, K. (1985). Patbogeni-city and characteristics of Vibrio sp. isolated from cultured Kuruma prawn (Penaeus japonicus Bate).Bull. Japan. Soc. Sci. Fish., 51,721-730. 67. Tanasomwang, V. and Muroga, K.(1989).Intestinal microflora of rockfish Sebastes schlegeli, tiger puffer Takifugu rubripe and red grouper Epinephelus akaara at their larval and juvenile stages. Nippon Suisan Gakkaishi 55,1371-1377. 68. Vanderzant, C., Nickelson, R. and Judkins, P.W. (1971). Microbial flora of pond-reared Brown Shrimp (Penaeus aztecus). Applied Microbiology 21, 916-921. 69. Vedros, N.A.(1985).Genus I. Neisseria Treisan 1885,105. In Bergey’s Manual of Systematic Bacteriology Vol.1, Edited by N.R. Krieg and J.G. Holt, pp.290-296.Baltiniore: Williams and Wilkins. 70. Veldkamp, H., Gemerden, H.V., Harder, W. and Laanbroek, H.J. (l984).Competition among bacteria: an overview. In Current Perspectives in Microbial Ecology, pp. 279-290.Edited by M.J. Klug and C.A. Reddy, Washington, D.C.: American Society for Microbiology. 71. Watson, S.W., Novitsky, T.J., Quinby, H.L. and Valois, F.W. (1977).Determination of bacterial number and biomass in the marine environment.Appl.Environ.Microbiol.33, 940-946. 72. West, P.A. and Colwell, R.R.(1984).Identification and classification of Vibrionaceae-an overview. In Vibrios in the Environment. Edited by R.R.Colwell, pp.285-363. New York John Wiley and Sons. 73. Wimpenny, J.W.T., Coombs. J.P. and Lovitt, R.W. (1984). Growth and interactions of microorganisms in spatially heterogeneous ecosystems. In Current Perspectives in Microbial Ecology, pp. 291-299.Edited by M.J. Klug and C.A. Reddy, Washington, D.C.: American Society for Microbiology. 74. Wright, R.T. and Coffin, R.B. (l984).Measuring microzooplank-ton grazing on planktonic marine bacteria by its impact on bacterial production. Microb. Ecol. 10,137-149. 75. Yasuda, K. and Kitao, T. (l980).Bacterial flora in the digestive tract of prawns, Penaeus. japonicus Bate. Aquaculture 19,229-234. 76. Yoshimizu, M., Kimura, T. and Sakai, M. (1980). Microflora of the embryo and the fry of Salmonids. Bull. Japan. Soc. Sci. Fish 46,967-975. 77. Yumoto, I., Yamaguchi, K., Yamada, K., Ezura, Y. and Kimura, T. (1989). Relationship between bacterial flora and occurrence of the Alteromonas sp., the causative agent of red-spots on the culture bed of Makonbu Laminaria japonica in the coastal area of Funka Bay. Nippon Suisan Gakkaishi 55, 1907-1914. 78.王文亮,(1985).台灣東北部海域人工浮魚礁海洋好氣性異營細菌數值分類研究.國立海洋大學水產食品科學研究所.碩士論文. 79.魚病防治專案小組,(1988).本省草蝦大量死亡原因及因應對策.中國水產 429,10-17. 80.陳秀男.(1990).從技術上探討臺灣草蝦養殖產業之重建.漁友月刊 13,21-24. 81.黃文瑛,葉寶蓮.(1989).屏東地區鰻池放射菌與草蝦池細菌相之研究.養殖環境及魚類異味改善研討會論文集(II), pp.143-159. 82.黃世鈴.(1989).養殖草蝦細菌感染疾病之研究.國立臺灣大學漁業科學研究所.碩士論文. 83.趙維良,宋宏紅,丁仁傑,於飛鵬.(1989).蝦及鰻魚養殖池中細菌相之研究.養殖環境及魚類異味改善研討會論文集(II), pp.199-220。 84.鄭文騰.(1989).台灣養殖蝦類病原細菌Vibrio damsela之分離與鑑定.國立臺灣大學漁業科學研究所.碩士論文. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75821 | - |
| dc.description.abstract | 1990年3月至7月間,由放養蝦苗至成蝦收成的完整蝦期,以每兩星期的間隔,於宜蘭縣五結鄉的兩個草蝦池及一個大正蝦池,採集池水及蝦肝胰臟做細菌相的分析。旨在以數值分類的方波描述蝦池環境(半淡鹹水)及蝦肝胰臟內細菌的組成及變動情形,以建立上述環境中細菌相的基本資料 以Marine Agar 2216 (Difco)及TCBS (Difco)為培養基,在九次採樣中從池水中分離出473株菌株,從蝦體(腸道或肝胰臟)分離出211株菌株,共計683株,於實驗中死亡12株。測定剩餘671株細菌與45株參考菌株之79項形質,然後進行聚類分析(clustering analysis),將相關係數Sj定為75%以上,可將此671株菌中之495株分成71個共表型族群(phenon),佔全部分離菌株的74%。這些菌株分別屬於Genera Vibrio, Aeromonas, Pseudomonas, Photobacterium, Alteromonas, Acinetobacter, Alcalixenes, Moraxella, Flavobacterium, Neisseria, Kingella。其餘176株分離菌,包括Vibrio, Pseudomonas Moraxella, Flayobacterium, Alteromonas, Alcaligenes, Aermonas, Neisseria, Acinetobater, kingella, Gram variable rods, Gram positive rods, Gram positive rods及Enterobacteriaceae,則無法聚類在共表型族群中。 本文將分離的細菌分為代謝活潑菌(metabolic-active bacteria)與代謝不活潑菌(metabolic-inactive bacteria),兩者在人為培養的環境下,生理生化形質有很大的差異,後者在23°C培養時7天始能見到菌落形成;且在自然環境中,代謝不活潑菌常為池水中的優勢菌群,卻不存在於蝦肝胰臟中。 比較養蝦池水及蝦肝胰臟內的細菌相,結果顯示兩者中細菌的組成不同,細菌數量的變動亦無顯著的相關性。草蝦與大正蝦肝胰臟中的細菌組成,則無顯著差異。 | zh_TW |
| dc.description.abstract | 671 strains of aerobic and facultative anaerobic, heterotrophic bacteria were isolated from hepatopancreas of giant tiger prawn (Penaeus ponodon) and fleshy prawn (P. chinensis) and their culture water, in I-Lan district during the period of March to July, 1990. Numerical analysis study of the 671 isolates and 45 reference strains were carried out using 79 morphological, biochemical and physiological characters. At similarity values of 75% or above as defined with Sj (Jaccard) coefficient, 495 strains (i.e. 74% of the total isolates) can be clustered to 71 phena; 13 major and 58 minor phena. These clusterable bacteria were tentatively identified as Vibrio, Aeromonas, Pseudomonas, Photobacterium., Alteromonas, Alcaligenes, Acinetobacter, Moraxella, Neisseria, Flavobacterium, and Kingella. While the other 186 strains were unable to cluster, these bacteria include Vibrio, Pseudomonas, Moraxella, Flavobacterium, Alteromonas, Alcalixenes, Aeromonas, Neisseria, Acinetobacter, Kine1la, Enterobacteriaceae, unidentified Gram positive rods and Gram variable rods. Two kinds of bacteria among the isolates were noticed, based on the metabolic activity and growth rate: the metabolic-active group also is fast grower develop a colony larger than 2 ii in a 72h incubation at 23°C, while the metabolic-inactive group also is slow grower can develop a visible colony only after 7 days incubation. The latter are all exclusively water species and far surpass the former in number, but they never present in the prawn’s hepatopancreas except in one case. No significant correlation between the bacterial number and flora of hepatopancreas of both .P. monodon,. chinensis and their inhabited water. Also, no significant difference between the bacterial number and flora of hepatopancreas of P. monodon and P. chinensis were found. | en |
| dc.description.provenance | Made available in DSpace on 2021-07-01T08:15:39Z (GMT). No. of bitstreams: 0 Previous issue date: 1991 | en |
| dc.description.tableofcontents | 中文摘要-------------------------------------------------Ⅲ 英文摘要-------------------------------------------------Ⅳ 第一章.前言---------------------------------------------1 第二章.材料與方法---------------------------------------4 第一節.採集樣本-----------------------------------------4 第二節.水質測定方法-------------------------------------6 第三節.細菌的分離與保存---------------------------------8 第四節.細菌的分類---------------------------------------13 第三章.結果---------------------------------------------31 第一節.各種培養基的比較---------------------------------31 第二節.各測站的基本水質資料-----------------------------31 第三節.縮形方法的可信度試驗-----------------------------31 第四節.養蝦池水及蝦肝胰臟中細菌相的描述-----------------32 第五節.養蝦池水及蝦肝胰臟中細菌組成的變動---------------44 第六節.池水中細菌相與蝦肝胰臟細菌相的相關性研究---------48 第四章.討論---------------------------------------------52 參考文獻-------------------------------------------------61 圖-------------------------------------------------------74 表-------------------------------------------------------82 | |
| dc.language.iso | zh-TW | |
| dc.title | 草蝦(Penaeus monodon)、大正蝦(Penaeus chinensis)養殖池水及蝦肝胰臟內細菌之數值分類研究 | zh_TW |
| dc.title | Numerical Taxonomy of Bacteria Isolated from Hepatopancreas of Giant Tiger Prawn (Penaeus monodon),Fleshy Prawn (P.chinensis)and Their Culture Water | en |
| dc.date.schoolyear | 79-2 | |
| dc.description.degree | 碩士 | |
| dc.relation.page | 115 | |
| 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。
