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請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75767
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dc.contributor.author李宗翰zh_TW
dc.date.accessioned2021-07-01T08:15:14Z-
dc.date.available2021-07-01T08:15:14Z-
dc.date.issued1990
dc.identifier.citationAdiyodi, R. G. and T. Subramoniam (1983). Arthropoda-Crustacea. In “Reproductive Biology of Invertebrates. Vol. I: Oogenesis, Oviposition, and oosorption.” (K. G. and R. G. Adiyodi, ed.), Chapter 18, pp. 443-495. John Wiley & Sons, New York.
Aiken, D. E. and S. Waddy (1980). The Biology and Management of lobsters. Vol. I., pp. 215. Academic Press, New York.
Anderson, S. L., J. W. Lynn, A. I. Yudin and W. H. Clark, Jr. (1980). Yolk granule heterogeneity and the presence of lipoprotein in the ridgeback prawn, Sicyonia ingentis. Am. Zool., 20: 839.
Andrieux, N., P. Porcheron, J. Berreur-Bonnenfant and F. Dray (1976). Determination du taux d’ecdysone au cours du cycle d’intermue chez le crabe Carcinus maenas. Comparaison entre individus sains et parasites par Sacculina carcini. C. R. Acad. Sci. Paris, Ser. D, 283: 1429-1432.
Ang, K. J., S. H. Cheah and K. A. Raffiq Ahmad (1990). Some aspects of the morphology and histology of the ovary of the Malaysian freshwater giant prawn, Macrobrachium rosenbergii (De Man). In “Proceedings of the Second Asian Fisheries Forum, Tokyo, Japan, 17-22, April, 1989” (R. Hirano and I. Hanyu, eds.). The Asian Fisheries Society, Manila.
Arcier, J.-M. and M. Brehelin (1982). Etude histologique et ultrastructurale du tissu folliculaire au cours des cycles de developpement ovarien chez Palaexnon adspersus (Rathke, 1837). Arch. Biol. (Bruxelles), 93: 79-97.
Badawi, H. K. (1975). On maturation and spawning in some penaeid prawns of the Arabian Gulf. Mar. Biol., 32: 1-6.
Baldaia, L., P. Porcheron, J. Coimbra and P. Cassier (1984). Ecdysteroids in the shrimp Palaemon serratus: relations with molt cycle. Gen. Comp. Endocrinol., 55: 437-443.
Bazin, F. (1976). Mise en evidence des caracteres cytologi- ques des glandes steroidogenes dans les glandes mandibulaires et les glandes Y dy crabe Carcinus maenas (L.) normal et epedoncule. C. R. Acad. Sci. Paris, Ser. D, 282: 739-741.
Beams, H. W. and R. G. Kessel (1963). Electron microscope studies on developing crayfish oocytes with specia reference to the origin of yolk. J. Cell Biol., 18: 621-649.
Bell, T. A. and D. V. Lightner (1988). Female Reproductive System. In “A Handbook of Normal Penaeid Shrimp Histology”, pp. 34-41. The World Aquaculture Society, Louisiana.
Burns, B. G., G. B. Sangalang, H. C. Freeman and M. McMenemy (1984). Isolation and identificaion of testosterone from the serum and testes of American lobster (Homarus americanus). Gen. Comp. Endocninol., 54: 429-432.
Brennan, M. D., A. J. Weiner, T. J. Goralski and A. P. Mahowald (1982). The follicle cells are a major site of vitellogenin synthesis in Drosophila melanoqaster. Develop. Biol., 89: 225-236.
Byard, E. H. and R. R. Shivers (1975). The mandibular organ of the lobster, Homarus americanus. Cell Tissue Res.,
162: 13-22.
Chang, E. S. (1984). Ecdysteroids in crustacea: role in production, molting and larval development. In “Advances in Invertebrate Reproduction 3”, (W. Engels et al. eds.), pp. 223-230. Elsevier Science Publishers B. V., Amsterdam.
Charniaux-Cotton, H. and G. Payen (1988). Crustacean Reproduction. In “Endocrinology of Selected Invertebrate types.” (H. Laufer and R. G. H. Downer, ed.), Chapter 3, pp. 279-303. Alan R. Liss, Inc., New York.
Clark, Jr., W. H., J. H. Lynn, A. I. Yudin and H. O. Persyn (1980). Morphology of the cortical reaction in the eggs of Penaeus aztecus. Biol. Bull., 158(2): 175-186.
Clark, Jr., W. H., A. I. Yudin, F. J. Griffin and K. Shigekawa (1984). The control of gamete activation and fertilization in the marine Penaeidae, Sicyonia ingentis. In “Advances in invertebrate reproduction 3 (W. Engels et al. ed.)”, Elsevier Science Publishers B.V., Amsterdam. pp. 459.
Colidge, B. J. and R. M. Howard (1979). Animal Histology Procedures. NIH publication NO. 80-275., pp. 39-42.
Couch, E. F., N. Hagino and J. W. Lee (1987). Changes in estradiol and progesterone immunoreactivity in tissues of the lobster, Homarus americanus, with developing and immature ovaries. Comp. Biochem. Physiol., 87A: 765-770.
Cummings, W. C. (1961). Maturation and spawning of the pink shrimp, Penaeus duorarum Burkenroad. Trans. Am. Fish. Soc., 90: 452-468.
Duronslet, M. J., A. I. Yudin, R. S. Wheeler and W. H. Clark, Jr. (1975). Light and fine structural studies of natural and artificially induced egg growth of Penaeid Shrimp. Proc. World Maricul. Soc., 6: 105-122.
Engelinann, F. (1983). Vitellogenesis controlled by juvenile hormone. In “Endocrinology of Insects, Vol. 1”, (R.G.H. Downer and H. Laufer, eds.), pp. 259-270. Alan R. Liss Inc., New York.
Fauvel, C. (1983). L’ovaire de Macrobrachium rosenbergii (De Man) (Crustace Decapode) au moment de la ponte. Description de l’ovulation. C. R. Acad. Sci. Paris, Ser. III., 296: 1053-1058.
Forster, C. R. (1951). The biology of the common prawn, Leander serratus Pennant. J. Mar. Biol. Ass. U.K., 30:333-360.
George, S. and H. W. Khoo (1989). Effects of estrogens and progestogens on vitellogenin levels in the haemolymph of the shrimp, Macrobrachium lanchesteri. In “Fifth International Congress of Invertebrate Reproduction Abstracts. July 23-28, 1989, Nagoya, Japan”. p. 57.
Gilgan, M. W. and D. R. Idler (1967). The conversion of androstenedione to testosterone by some lobster (Homarus americanus Milne Edwards) tissues. Gen. Comp. Endocrinol., 9: 319-324.
Goudeau, M. and F. Lachaise (1980). ‘Endogenous yolk’ as the precursor of a possible fertilization envelope in a crab (Carcinus maenas). Tissue Cell, 12: 503-512.
Guraya, S. S. (1979). Recent advances in the morphology, cytochemistry, and function of Balbiani’s vitelline body in animal oocytes. Int. Rev. Cytol., 59: 249-321.
Guraya, S. S. (1986). The Cell and Molecular Biology of Fish Oogenesis. Monographs in Development Biology, Vol. 18. p. 52. Karger. Basel, New York.
Hinsch, G. W. and M. V. Cone (1969). Ultrastructural observations of vitellogenesis in the spider crab, Libinia emarginata L.. J. Cell Biol., 40: 336-342.
Hinsch, G. W. (1970). Possible role of intranuclear membranes in nuclear-cytoplasrnic exchange in spider crab oocytes. J. Cell Biol., 47: 531-535.
Hinsch, G. W. (1972). Follicle cells in the ovary of the spider crab. J. Cell Biol., 55: 115a.
Hudinaga, M. (1942). Reproduction, development and rearing of Penaeus japonicus Bate. Jap. J. Zool., 10: 305-393.
Jayalakshmi, K., R. Sarojini and S. Sambasivarao (1986). Ovarian histology in relation to vitellogenesis in the freshwater prawn, Macrobrachium lamerrii. J. Reprod. Biol. Comp. Endocrinol., 6: 33-40.
Jeng, S. S., W. C.-M. Wan and C. F. Chang (1978). Existence of an estrogen-like compound in the ovary of the shrimp Parapenaeus fissurus. Gen. Comp. Endocrinol., 36:211-214.
Johnson, P. T. (1980). The Reproductive System. In “Histology of the Blue Crab: Callinectes sapidus--a Model for the decapoda.” Chapter 15, pp. 327-367. Praeger Publishers, New York.
Kagawa, H., K. Takano and Y. Nagahama (1981). Correlation of plasma estradiol-l7p and progesterone levels with ultra- structure and histochemistry of ovarian follicles in the white-spotted char, Salvelinus leucomaenis. Cell Tissue Res., 218: 315-329.
Kanazawa, A. and S. I. Teshima (1971). In vivo conversion of cholesterol to steroid hormones in the spiny lobster, Panulirus japonica. Bull. Jap. Soc. Sci. Fish., 37: 891-898.
Kelemec, J. A. and I. R. Smith (1980). Induced ovarian development and spawning of Penaeus plebejus in a recirculating laboratory tank after unilateral eyestalk enucleation. Aquaculture, 21: 55-62.
Kessel, R. G. & H. W. Beams (1968). Intranucleolar membranes and nuclear-cytoplasmic exchange in young crayfish oocytes. J. Cell Bid., 39: 735-740.
King, J. E. (1948). A study of the reproductive organs of the common marine shrimp, Penaeus setiferus (Linnaeus). Biol. Bull., 94: 244-262.
Kleinholz, L. H. (1985). Biochemistry of Crustacean Hor- Inones. In “The Biology of Crustacea. Vol. 9” (D. E. Bliss and L. H. Mantel eds.), pp. 499. Academic Press, London.
Komm, B. S. and G. W. Hinsch (1985). Oogenesis in the terrestrial hermit crab Coenobita clypeatus (Decapoda, Anomura). I. Previtellogenic oocytes. J. Morphol., 183:
219-224.
Komm, B. S. and G. W. Hinsch (1987). Oogenesis in the terrestrial hermit crab Coenobita clypeatus (Decapoda, Anomura). II. Vitellogenesis. J. Morphol., 192: 296-277.
Lachaise, F., M. Goudeau, C. Hertu, C. Kappler and J. A. Hoffmann (1981). Ecdysteroids and ovarian development in the shore crab, Carcinus maenas. Hoppe-Seyler’s Z. Physiol. Chem., 362: 521-529.
Le Roux, A. (1968). Description d’organes mandibulaires
nouveaux chez les Crustaces Decapodes. C. R. Acad. Sci. Paris, Ser. D, 266: 1414-1417. Le Roux, A. (1983). Reactions de l’organe mandibulaire a l’ablation des pedoncules oculaires chez les larves et les juveniles de Palemonetes varians (Leach). C. R. Acad. Sci. Paris, Ser. III, 269: 697-700.
Liao, I. C. (1988). Feasibility study for alternative culture species in Taiwan-Penaeus penicillatus. J. World Aquacult., 19: 227-236.
Lisk, R. D. (1961). Estradiol-17p in the eggs of the American lobster, Homarus americanus. Can. J. Biochem. Physiol., 39: 659-663.
Meusy, J.-J., H. Juriera, P. Cledon and M. Martin (1983). La vitellogeriine chez un crustace decapode natantia, Palaemon serratus Pennant. Mise en evidence, comparison imrnunologique avec les vitelliries, site de synthese et role des pedoncules oculaires. Reprod. Nutr. develop., 23: 625-640.
Meusy, J. -J. and G. G. Payen (1988). Female reproduction in Malacostracan Crustacea. Zool. Sci., 5: 217-265.
Motoh, H. (1981). Studies on the fisheries biology of the giant tiger prawn, Penaeus monodon, in the Philippines. Tech. Rep. No. 7, SEAFDEC Aquaculture Dept., pp. 9.
Nagabhushanam, R., G. K. Kulkarni and P. K. Joshi (1983). Effect of some vertebrate steroid hormones on the ovarian maturation and spawning in Indian Penaeid prawns. The Marathwada Univ. J. of Sci., XXII: 89-98.
Nagahama, Y., W. C. Clarke and W. S. Hoar (1978). Ultra- structure of putative steroid-producing cells in the gonads of coho (Oncorhynchus kisutch) and pink salmon (Oncorhynchus gorbuscha). Can. J. Zool., 56: 2508-2519.
Nakagawa, H., A. Salam and S. Kasahara (1982). Female-specific lipoprotein level in haemolymph during egg formation in freshwater shrimp. Bull. Jap. Soc. Sci. Fish., 48: 1073-1080.
Nayyar, R. P. (1964). The yolk nucleus of fish oocytes. J1 microsc. Sci., 105: 351-358.
O’Donovan, P., M. Abraham and D. Cohen (1984). The ovarian cycle during the intermoult in ovigerous Macrobrachium rosenbergii. Aquaculture, 36: 347-358.
Okumura, T., K. Nakamura and K. Aida (1989). Hemolymph ecdysteroid levels during the molt cycle in the kuruma prawn, Penaeus japonicus. Bull. Jap. Soc. Sci. Fish.:2091-2098.
Ollevier, F., D. De Clerck, H. Diederik and A. De Loof (1986). Identification of nonecdysteroid steroids in hemolymph of both male and female Astacus leptodactylus (Crustacea) by gas chromatography-Mass Spectrometry. Gen. Comp. Endocrinol., 61: 214-228.
Otsu, T. (1960). Precocious development of the ovaries in the crab, Potamon dehaani, following implantation of the thoracic ganglion. Annot. Zool. Japon., 33: 90-96.
Papathanassiou, E. and P. E. King (1984). Ultrastructural studies on gametogenesis of the prawn Palaemon serratus (Pennant) I. Oogenesis. Acta Zool. (Stockh.), 65: 17-31.
Pilli, M. C. and W. H. Clark, Jr. (1988). Hatching envelope formation in shrimp (Sicyonia ingentis) ova: origin and sequential exocytosis of cortical vesicles. Tissue Cell, 20: 941-952.
Primavera, J. H. (1984). A review of maturation and reproduction in closed thelycum penaeids. In “Proceedings of the first international conference on the culture of penaeid prawns/shrimps, Iloilo city, Philippines.” pp.47-64. SEAFDEC.
Quackenbush, L. S. (1989). Vitellogenesis in the shrimp, Penaeus vannamei: In vitro studies of the isolated hepatopancreas and ovary. Comp. Biochem. Physiol., 94B:
253-261.
Raikhel, A. S. (1984). The accumulative pathway of vitellogenin in the mosquito oocyte: a high-resolution immuno- and cytochemical study. J. Ultrastruct. Res., 87: 285-302.
Rankin, S. M., J. Y., Bradfield and L. Keeley (1989). Ovarian protein synthesis in the south American white shrimp, Penaeus vannamei, during the reproductive cycle. Invert. Reprod. Develop., 15: 27-33.
Sandor, T. (1980). Steroids in invertebrates. In “Advances in Invertebrate Reproduction”, (W. R. Clark, Jr. and T.S. Adams, eds.), pp. 81-96. Elsevier North Holland, Inc., Amsterdam.
Sarojini, R., K. Jayalakshmi and S. Sambashivarao (1986). Effect of external steroids on ovarian development in freshwater prawn, Macrobrachium lamerrii. J. Adv. Zool., 7(1): 50-53.
Sarojini, R., S. Sambasivarao, K. Jayalakshmi and R. Nagabhushanam (1987). Histology of the ovary, oocyte differentiation and vitellogenesis in the marine shrimp Metapenaeus affinis. Nat. Symp. Phy. Crust., 1987, 56-61.
Schade, M. L. and R. R. Shivers (1980). Structural modulation of the surface and cytoplasm of oocyte during vitellogenesis in the lobster, Homarus americanus. An electron microscope-protein tracer study. J. Morphol., 163: 13-26.
Spurr, A. R. (1969). A low-viscosity epoxy resin embedding medium for electron microscopy. J. Ultrastruct. Tech., 26: 31-43.
Subrahmanyam, S. B. (1965). On the reproductive cycle of Penaeus indicus (M. Edwards). J. Mar. Biol. Assoc. India, 7: 284-290.
Taketomi, Y. and Y. Kawano (1985). Ultrastructure of the mandibular organ of the shrimp, Penaeus japonicus, in untreated and experimentally manipulated individuals. Cell. Biol. Int. Rep., 9: 1069-1074.
Talbot, P. (1981). The ovary of the lobster, Hormarus americanus. I. Architecture of the mature ovary. J. Ultrastruct. Res., 76: 235-248.
Talbot, P. and M. Goudeau (1988). A complex cortical reaction leads to formation of the fertilization envelope in the lobster, Homarus. Gamete Res., 19: 1-18.
Tan-Fermin, J. D. and R. A. Pudadera(1989). Ovarian maturation stages of the wild giant tiger prawn, Penaeus monodon Fabricius. Aquaculture, 77: 229-242.
Tcholakian, R. K. and K. B. Ein-Nes (1971). Steroidogenesis in the blue crab Callinectes sapidus Rathbun. Gen. Comp. Endocrinol., 17: 115-124.
Teshima, S. I. and A. Kanazawa (1971). Bioconversion of progesterone by the ovaries of crab, Portunus trituberculatus. Gen. Comp. Endocrinol., 17: 152-157.
Tom, M., M. Goren and N. Ovadia (1987). Localization of the vitellin and its possible precursors in various organs of Parapenaeus longirostris (Crustacea, Decapoda, Penaeidae). Int. J. Invertebr. Reprod. Dev., 12: 1-12.
Tsukimura, B. and F. I. Kameinoto (1988). Organ culture assay of the effects of putative reproductive hormones on immature Penaeus vannamei ovaries. J. World Aquacult. Soc., 19: 71a.
Tuma, D. J. (1967). A description of the development of primary and secondary sexual characters in the banana prawn, Penaeus inerguiensis de Man (Crustacea: decapoda: Penaeinae). Aust. J. Mar. Freshwat. Res., 18: 73-88.
Van Den Oord, A. (1964). The absence of cholesterol synthesis in the crab, Cancer pagurus L.. Comp. Biochem. Physiol., 13: 461-467.
Varadarajjan, S. and T. Subramoniam (1980). Histochemical investigations on the vitellogenesis of an anomuran crab, Clibanarius clibariarius. Inter. J. Invert. Reprod., 2:47-58.
Vazquez-Boucard, C. G. (1985). Identification preliminaire du tissu adipeux chez le Crustace Decapode Penaeus japonicus Bate, a l’aide d’anticorps antilipovitelline. C. R. Acad. Sc. Paris, t.300, Serie III, n 3: 95-97.
Victor, S. and R. Sarojini (1985). Oocyte differentiation and vitellogenesis in the cardiean prawn Cardina rajadhari (Bouvier). Current Science, 54: 647-649.
Weitzman, M. C. (1966). Oogenesis in the tropical land crab, Gecarcinus lateralis (Freminville). Zeitschrift fur Zellforschung, 75: 109-119.
Yamamoto, K. and H. Onozato (1968). Steroid-producing cells in the ovary of the zebrafish, Brachydanio rerio. Annot. Zool. Jpn., 41: 119-128.
Yano, I. (1985). Induced ovarian maturation and spawning in greasyback shrimp, Metapenaeus ensis, by progesterone. Aquaculture, 47: 223-229.
Yano, I. (1987). Effect of 17a-hydroxy-progesterone on vitellogenesis secretion in kuruma prawn, Penaeus japonicus. Aquaculture, 61: 49-57.
Yano, I. and Y. Chinzei (1987). Ovary is the site of vitellogenin synthesis in kuruma prawn, Penaeus japonicus. Comp. Biochem. Physiol., 86B: 213-218.
Yano, I. (1988). Oocyte development in the kuruma prawn Penaeus japonicus. Mar. Biol., 99: 547-553.
Yudin, A. I., R. A. Diener, W. H. Clark,Jr. and E. S. Chang (1980). Mandibular gland of the blue crab, Callinectes sapidus. Biol. Bull., 159: 760-772.
Zandee, D. I. (1962). Lipid metabolism in Astacus astacus L.. Nature, Lond., 195: 814-815.
岡正雄,白旗總一郎(1965).コワライエヒPenaeus orientalis Kishinouyeの研究--II.卵巢卵の的形態的分類と卵巢成熟度について。長崎大學水產學部研究報告,18: 30-40.
岡正雄(1967)コワライエヒPenaeus orientalis Kishinouyeの研究--III.卵巢の構造と排卵機構熟について。長崎大學水產學部研究報告,23:43-55。
廖一久(l973).池中養成紅尾蝦之種蝦速報.農復會漁業叢書 N0. 15. p p. 59-65,
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75767-
dc.description.abstract紅尾蝦(Penaeus penicillatus Alcock)為一種具有養殖潛力的對蝦。為研究其種蝦之生殖生理,首先觀察了卵巢發育成熟的過程,建立生殖生理研究的基礎。其卵巢成熟度可分為四期:(I)未發育期:卵巢透明而細小;(II)發育期:卵巢體積略增,顏色轉白;(III)將成熟期:卵巢體積增大許多,顏色趨黃;(IV)成熟期:卵巢結實,飽滿,呈墨綠色。卵巢內的卵細胞,則依卵徑大小,核仁位置,細胞質染色性質,濾泡細胞位置等條件,分成卵原細胞期(Oogonial stage),染色絲核仁期(Chromatin nucleolar stage),週邊核仁期(Perinucleolar stage),前卵黃期(Pre-yolk stage),卵黃球期(Yolk globular stage),表層胞前期(Ear1y cortical alveolar stage),表層胞後期(Late cortical alveolar stage)。以PAS(Periodic Acid-Schiff's)和SBB(Sudan Black B)染色結果顯示卵黃球的成份是醣脂蛋白(Glyco-1ipo-protein),而表層胞的成份為醣蛋白(Glycoprotein)。電顯觀察發現,脂質粒在前卵黃球期之前就出現在細胞質當中卵黃球則至卵黃球期微絨毛伸向濾泡層時,才開始大量聚積。發育卵細胞質中的粗面內質網(Rough endop1asmic reticulum),會膨大形成Ergastoplasmic vesicles(EV),遍佈於前卵黃期的細胞質中;EV繼續膨大,並於其內部出現羽毛狀物質而成為表層胞(Cortical alveoli)。在發育各階段的卵細胞質中,都可見到高爾基體(Golgi bodies)和粒線體(Mitochondria)。
其次,為瞭解對脊椎動物卵巢發育相當重要的性類固醇,在紅尾蝦卵巢發育時扮演的角色,因此,以放射免疫分析法(Radioimmunoassay; RIA)測定不同成熟度的蝦血淋巴內雌二醇(Estradiol-17β;E2)和17α-單羥基黃體素(17α-hydroxyprogesterone;17α-OHP)的含量。結果,卵巢未發育時,E2含量最高,17α-OHP含量最低;隨著卵巢發育,E2含量逐漸下降,至成熟期最低; 17α-OHP含量則逐漸上升,至將成熟期最高。由上述結果,參照其他文獻,討論了性類固醇在控制十足目甲殼類卵黃形成的內分泌機制中所扮演的角色。
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dc.description.provenanceMade available in DSpace on 2021-07-01T08:15:14Z (GMT). No. of bitstreams: 0
Previous issue date: 1990
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dc.description.tableofcontents摘要
前言…………………………………………………1
材料與方法…………………………………………4
結果 ………………………………………………8
討論 ………………………………………………17
謝辭 ………………………………………………3O
參考文獻(References) ……………………31
圖輿表(Tab1es & Figures)
附錄(Appendixes)
dc.language.isozh-TW
dc.title紅尾蝦(Penaeus penicillatus Alcock)卵巢發育及其過程中,類固醇含量變化之研究zh_TW
dc.date.schoolyear78-2
dc.description.degree碩士
dc.relation.page95
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
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