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四种鲍45S rDNA在染色体上的比较定位
引用本文:张健鹏,王铜毅,骆轩,游伟伟,柯才焕,蔡明夷.四种鲍45S rDNA在染色体上的比较定位[J].水产学报,2019,43(12):2459-2467.
作者姓名:张健鹏  王铜毅  骆轩  游伟伟  柯才焕  蔡明夷
作者单位:集美大学水产学院, 农业农村部东海海水健康养殖重点实验室, 福建 厦门 361021,集美大学水产学院, 农业农村部东海海水健康养殖重点实验室, 福建 厦门 361021,厦门大学海洋与地球学院, 福建省海洋生物资源开发利用协同创新中心, 福建 厦门 361102,厦门大学海洋与地球学院, 福建省海洋生物资源开发利用协同创新中心, 福建 厦门 361102,厦门大学海洋与地球学院, 福建省海洋生物资源开发利用协同创新中心, 福建 厦门 361102,集美大学水产学院, 农业农村部东海海水健康养殖重点实验室, 福建 厦门 361021
基金项目:国家自然科学基金(U1605213)
摘    要:为了研究皱纹盘鲍、西氏鲍、绿鲍和杂色鲍等4种鲍的核型特征,实验利用荧光原位杂交(fluorescence in situ hybridization, FISH)技术比较定位了上述4种鲍的45S rDNA位点。皱纹盘鲍中约83%的中期细胞均检出2对45S rDNA位点,分别位于13号和16号染色体的长臂端部。西氏鲍中约75%的中期细胞均检出3对45S rDNA位点,分别位于6号染色体短臂端部、14号和17号染色体长臂端部。绿鲍中约85%的中期细胞均检出3对45S rDNA位点,分别位于4号、6号和8号染色体长臂的端部。杂色鲍中约65%的中期细胞均检出3对45S r DNA,位点,分别位于3号、4号和12号染色体短臂的端部。此外,4种鲍均有少数中期相的45S rDNA位点数高于众数,这提示,除了明确的45S rDNA位点外,4种鲍可能均有若干个不稳定的45S rDNA位点。实验结果丰富了鲍细胞遗传学研究资料,同时为鲍的遗传育种研究提供了基础数据。

关 键 词:  荧光原位杂交  染色体  45S  rDNA
收稿时间:2018/12/20 0:00:00
修稿时间:2019/4/1 0:00:00

Comparative chromosome mapping of 45S rDNA in four species of abalone
ZHANG Jianpeng,WANG Tongyi,LUO Xuan,YOU Weiwei,KE Caihuan and CAI Mingyi.Comparative chromosome mapping of 45S rDNA in four species of abalone[J].Journal of Fisheries of China,2019,43(12):2459-2467.
Authors:ZHANG Jianpeng  WANG Tongyi  LUO Xuan  YOU Weiwei  KE Caihuan and CAI Mingyi
Institution:Key Laboratory of Healthy Mariculture for the East China Sea, Ministry of Agriculture and Rural Affairs, Fisheries College, Jimei University, Xiamen 361021, China,Key Laboratory of Healthy Mariculture for the East China Sea, Ministry of Agriculture and Rural Affairs, Fisheries College, Jimei University, Xiamen 361021, China,Fujian Collaborative Innovation Center for Exploitation and Utilization of Marine Biological Resources, College of Ocean and Earth Sciences, Xiamen University, Xiamen 361102, China,Fujian Collaborative Innovation Center for Exploitation and Utilization of Marine Biological Resources, College of Ocean and Earth Sciences, Xiamen University, Xiamen 361102, China,Fujian Collaborative Innovation Center for Exploitation and Utilization of Marine Biological Resources, College of Ocean and Earth Sciences, Xiamen University, Xiamen 361102, China and Key Laboratory of Healthy Mariculture for the East China Sea, Ministry of Agriculture and Rural Affairs, Fisheries College, Jimei University, Xiamen 361021, China
Abstract:Abalone is not only precious seafood in China, but also important mariculture shellfish. In recent years, the genetic breeding research of abalone has made rapid progress, but the research data of cytogenetic analysis are still lacking. Therefore, this study used the fluorescence in situ hybridization (FISH) to compare the distribution of 45S rDNA clusters in Haliotis discus hannai, H. gigantea, H. fulgens, and H. diversicolor. In H. discus hannai, 83% of the metaphase had 2 pairs of 45S rDNA sites, located at terminal of the long arm ends of chromosomes 13th and 16th, respectively. In H. gigantea, about 75% of the metaphase had 3 pairs of 45S rDNA sites, located at the terminal of the short arm of chromosome 6th, and at the terminal of the long arm of chromosomes 14th and 17th, respectively. In H. fulgens, about 85% of the metaphase cells detected three pairs of 45S rDNA sites, located at the terminal of the long arms of chromosomes 4th, 6th, and 8th. In H. diversicolor, about 65% of the metaphase had 3 pairs of 45S rDNA sites, located at the terminal of the short arms of chromosomes 3th, 4th, and 12th. In addition to the main mode, there were other low-frequency modes in all the 4 species of abalone, suggesting that these abalone may have several unstable 45S rDNA sites besides the unambiguous sites. The number and the location of 45S rDNA loci in abalone showed a high level of intraspecific variation in general. These findings may enrich the cytogenetic research data of abalone and provide basic data for the further studies of genetic breeding in abalone.
Keywords:Haliotis  fluorescence in situ hybridization  chromosome  45S rDNA
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