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邹桂伟, 潘光碧, 汪登强, 邓怀, 罗相忠. 人工雌核发育鲢的遗传多样性及异源遗传物质整入的RAPD分析[J]. 水生生物学报, 2004, 28(2): 180-185.
引用本文: 邹桂伟, 潘光碧, 汪登强, 邓怀, 罗相忠. 人工雌核发育鲢的遗传多样性及异源遗传物质整入的RAPD分析[J]. 水生生物学报, 2004, 28(2): 180-185.
ZOU Gui-Wei, PAN Guang-Bi, WANG Deng-Qiang, Deng Huai, LUO Xiang-Zhong. GENETIC DIVERSITY OF ARTIFICIAL GYNOGENETIC SILVER CARP AND RAPD ANALYSIS OF INCORPORATION OF HETEROLOGOUS GENETIC MATERIALS IN GYNOGENETIC PROGENY[J]. ACTA HYDROBIOLOGICA SINICA, 2004, 28(2): 180-185.
Citation: ZOU Gui-Wei, PAN Guang-Bi, WANG Deng-Qiang, Deng Huai, LUO Xiang-Zhong. GENETIC DIVERSITY OF ARTIFICIAL GYNOGENETIC SILVER CARP AND RAPD ANALYSIS OF INCORPORATION OF HETEROLOGOUS GENETIC MATERIALS IN GYNOGENETIC PROGENY[J]. ACTA HYDROBIOLOGICA SINICA, 2004, 28(2): 180-185.

人工雌核发育鲢的遗传多样性及异源遗传物质整入的RAPD分析

GENETIC DIVERSITY OF ARTIFICIAL GYNOGENETIC SILVER CARP AND RAPD ANALYSIS OF INCORPORATION OF HETEROLOGOUS GENETIC MATERIALS IN GYNOGENETIC PROGENY

  • 摘要: 运用RAPD技术对连续二代人工雌核发育鲢的遗传多样性及异源遗传物质的整入进行了分析,结果表明:一代雌核发育鲢,个体间遗传相似度为0.945-0.995,多样性指数为0.175;二代雌核发育鲢,个体间遗传相似度为0.915-1.00,平均为0.9852,多样性指数为0.02.研究揭示经过连续二代人工雌核发育后,其遗传多样性明显减少,种质进一步纯化.通过对雌核发育鲢二代、亲本鲢和雄鲤的RAPD扩增比较,发现雌核发育鲢含有少数与父本相同的特异DNA扩增带,而亲本鲢没有,在基因水平上表明雌核发育鲢整入了雄鲤的遗传物质.

     

    Abstract: Silver carp(Hypophthalmichthys molitrix)is one of the most important fresh water farmed fish in China. The seedings of silver carp for aquaculture have come from the Yangtze River because germplasm resources of silver carp is superior to those from other rivers. But advanced biological characteristics for aquaculture germplasm of silver carp was obviously decreased during past years after multigenerations artificial propagation. Their growth became slowly and ability of antidisease reduced. Therefore,it is necessary to breed new strain or variety of silver carp by selecting breeding. Artificially induced fish gynogenesis is one of major manners of selecting breeding. In the present study,gynogenesis of one individual of silver carp from the Yangtze River was induced by heterologous sperms in 1987. We had gained artificial gynogenetic silver carp of two continued generations for ten years. Genetic diversities were analyzed in artificial gynogenetic silver carp in continued two generations,and incorporation of heterologous genetic materials in gynogenetic progenies was studied by RAPD. The results showed that genetic similarity of individuals was 0.945-0.995 among 18 individuals of gynogenetic F 1 progenies by 23 different primers,the average was 0.972. The average of proportion of polymorphic loci was 13.68%in gynogenetic F1 progenies. Index of genetic diversity in gynogenetic F1 progenies was 0.175. There were no significant difference in genetic diversity between common artificial propagated silver carp and gynogenetic F1 progeny. Genetic similarity of individuals was 0.961-1.00 among 15 individuals of gynogenetic F2 progenies by 15 different primers,the average was 0.9852. The average of proportion of polymorphic loci was 9.74%among them. Index of genetic diversity in gynogenetic F2 progeny was only 0.062. According to the genetic similarity and distance,15 individuals of gynogenetic F2 progeny were approximately divided into two strains. The genetic similarity was 1.00 among strain,the genetic similarity was 0.9773 between two strains. The experiment showed that genetic diversity of gynogenetic F2 progeny was significantly decreased after two continued generation gynogenesis. Individuals from gynogenetic F2 progeny of silver carp,common silver carp in the Yangtze River and male common carp(Cyprinus carpio L. )were analyzed using RAPD by 44 different primers. The results indicated that clear RAPD bands were all produced among 42 primers except 2 primers. There were a few alike RAPD special bands that were detected in gynogenetic silver carp and male common carp among 10 primers,but not detected in common silver carp of the Yangtze River. In addition,there were exclusive RAPD bands in gynogenetic silver carp among the other 12 primers. Therefore,it was obvious that heterlogous genetic material had been entered gynogenetic silver carp.

     

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