三倍体萍乡肉红鲫的精子入卵及胚胎发育观察
OBSERVATION ON SPERM PENETRATION AND EMBRYONIC DEVELOPMENT OF TRIPLOID PINGXIANG RED-TRANSPARENT CRUCIAN CARP
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摘要: 用扫描(SEM)和透射电子显微镜(TEM)观察了天然三倍体萍乡肉红鲫成熟卵子卵壳、受精孔、精子进入区以 及卵子质膜表面的细微结构,观察了两种不同交配组合:(A组)萍乡肉红鲫(♀)×萍乡肉红鲫(♂)与(B组)萍乡肉 红鲫♀×兴国红鲤♂的受精早期精子入卵的时序,卵子质膜表面和卵子皮层的变化。结果表明,两种不同交配组 合的精子入卵时序、皮层颗粒释放和卵子表面的变化基本类似。同时观察了这两种不同组合的胚胎发育时序,水 温在16℃以上才能正常发育,最适发育水温为20-25℃。结果表明,两种不同组合在出膜时间和胚胎发育的总积 温方面存在差异,水温对胚胎发育的影响很大。Abstract: Pingxiang red-transparent crucian carp is a red and transparent mutant discovered from natural rivers in Pingxiang of Jiangxi Province, and has been identified to be triploid by DNA content measurement and chromosome analysis. In this study, the fine structures of chorion, micropyle, sperm entry site and plasma surface of its eggs were observed by SEM and TEM. In the meantime,the time sequence of sperm penetration,changes of the egg surface,cortical reaction,and formation and confusion of female pronucleus and male proucleus were also observed on two different mating groups.Group A is Pingxiang red-transparnt crucian carp(♀) × Pingxiang red-transparnt crucian carp(♂) ,and group B is Pingxiang red-transparnt crucian carp(♀)× Xingguo red comm.on carp(♂) .Similar processes on sperm penetration,egg surface change and cortical reaction were observed between the two different mating groups. The process of embryonic development was observed in the two different groups. Embryos can develop normally only above 16℃,and the optimal temperature for the embryonic development ranges from 20℃ to 25℃ . The data indicate that some differences exist in fertilization rate,hatching time,hatching rate and accumulate-temperature between the two different groups,and the water temperature is a main influence factor on the embryonic development.
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[1] Braining T. Britz R. Egg surface stricture of clingfish species, using scanning electron microscopy. Journal of Fish Biology.2000,56:1129-1137
[1] 系统的数学模型.应用科学学报,1999.17(1):83-91]
[2] Iwamatau T.Onitake K. Yoshimoto Y, et al.Time sequence of early events in fertilization in the medeka egg. Development Growth and Differcntiation.1991,33:479-490
[3] Riczo E, Sato Y. Barreto B P. Adheeiveneas and surface patterns of eggs in neotropical freshwater teleosts. Journal of Fish Biology, 2002, 61:615-632
[4] Lirdsart O. Kudo S. Surface ultrastrvcture of paddlefish eggs before and after fertilization. Journal of Fish Biology.1997,51:573-582
[5] Zhao Z S,Cao G Q, Huang F, et al. Fertililstion Cytology of Carassius auratus Pengzenensis. Jownal of Shanghai Fisheries University, 1999,8(1):25-30[赵振山、高贵琴、黄峰.彭译.鲫的受精细胞学.上海水产大学学报,1999,80(1):25-30]
[6] Hong Y J. Hu C Y, Zhang Z P. Muscle nourishment content analysis on Pirsgsiang red silver crucian carp(Carassius auratus sp.).Water Consenxincy.2001.5:27-29[洪一江、胡成饪、张忠萍.萍乡肉红鲫肌肉营养成分分析.水利渔业.2001.5:27-29]
[7] Hong Y J. Yu Z J.Zhou L, et al.A population of red-transparent, triploid Carassius auratus.Journal of Fish Biology.2005(in press)
[8] Ding J.Shan S X.Ge W.et al. Study on the mode of primary control in the egg of gynogenetic crucien carp for inhibiting the development of two types of sperm nuclei.Science in China(Series B).1992.35(7): 802-810[丁军、单仕新、葛伟.等.银鲫卵对两类梢核发育的初级控制作用模式的研究.中国科学B辑.1992.35(7):802-810]
[9] Wu K M.Song H C,Shen Q Z The Mathematical model of sperm guidance system of micropyle of the teleost. Journal of Applied Sciences.1999,17(1);83-91[昊坤明、宋慧春、沈其璋.真骨鱼类受精孔精子引导
[10] Wu K M.Sang H C.Shen Q Z.Dynamic mechanism of the sperms entering into the teleost eggs. J.Applied Sciences.1998,13(1):l04-110[昊坤明、宋葱春.真骨鱼受精孔奇异结构的数学建模.生物数学学报.1998.13(1):104-110]
[11] Yang S T. Gui J F. Comparative analysis on the protein composition of egg chorin between gynogenetic silver crvcian carp and gonochoristic color crucian carp and the changes during fertilization. Hereditaa.2002.22(4):221-224[杨书婷、桂建芳,雌核发育银鲫与两性生殖彩鲫卵壳蛋白组分的比较分析及其受梢前后的变化.遗传,2000.22(4):221-224]
[12] Brununet A R. Dumont J N. Initial stages of sperm penetration into the egg of Fundulus heteroclitus. Journal of Experimental Zoology.1979,210:417-434
[13] Kudo S. Sperm penetration and the formation of a fertilisation cone in the common carp egg. Development Groruth and Differentiation.1980.22:403-414
[14] Iwarttatsu T.Ohte T. Scanning electron microscopic observations on sperm penetration in teleoetean fish. Journal of Experimental ZoologY,1981.218:261-277
[15] Kudo S. Ultrastructure of a sperm entry site beneath th。micropylar canal in fish eggs. Zoological Magazine.19826.91:213-220
[16] KudoS,Sato A.Fertilization cone of carp eggs as revealed by scanning electron microscopy. Development Grourth and Differentiation,1985.27:121一128
[17] Hart N H. Fertilization in teleost fishes: Mechanisms of sperm-egg interactione. Int. Rev. Cyt. 1990.121:1-66
[18] Kobayeshi W, Yamamoto T S. Fine structure of micropylar apparatus of the chum salmon egg, with a discussion of the mechanism for blocking polyspermy. Journal of Experimental Zoology.1981,217:265-275
[19] Ohta T&Iwamatsu T. Electron microscopic observations on sperm entry into eggs of the rose bitterling, Rhodeus ocellatut.Journal of Experimental Zoology.1983,227,109-119
[20] Dong C H.Yang S T,Yang Z A.Zhang L,Gui J F. A C-type lectin associated and trenslocated with cortical granules during oocyte maturetion and egg fertilization in fish[J].Developmental Biology.2004.265(2):341-354
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