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作 者:李玲蔚[1] 赵后斌[1] 郑必平[1] 陈驰[1] 牛瑞鹤[1] 谈建中[1]
机构地区:[1]苏州大学建筑与城市环境学院园艺系,江苏苏州215123
出 处:《安徽农业科学》2013年第9期3786-3788,3869,共4页Journal of Anhui Agricultural Sciences
基 金:苏州市农业科技攻关项目(编号SNG0905)
摘 要:[目的]为分析不同种源西红花的遗传多样性和亲缘关系,利用RAPD标记技术对8种西红花基因组DNA的多态性进行分析。[方法]应用22个随机引物对8个西红花品种进行RAPD分析,并根据RAPD的扩增结果,应用NTSYS-pc 2.10e软件进行聚类分析。[结果]从22个随机引物中筛选出18个多态性较高的引物,共扩增出143条DNA条带,其中108条为多态带,占总数的75.5%,平均每个随机引物扩增的DNA带数为7.9条;在遗传相似系数0.62处将8个样品分为2类,一类为药用西红花,另一类为观赏西红花。[结论]RAPD法能有效鉴别药用西红花和观赏西红花,分子聚类结果与地理因素未见确定联系。[ Objective ] To study genetic diversity and relationship in Crocus sat lvus, inter-simple sequence repeat (RAPD) was used to ana- lyze the genomic DNA polymorphism of 8 C. satlvus cultivars. [ Method] The 22 random primers were applied to the RAPD analysis of 8 C. satlvus cuhivars, and according to the RAPD amplification result, the software NTSYS-pc 2.10 e was used in cluster analysis. [ Result] 18 higher polymorphic ones were selected from 22 random primers ; 143 DNA bands were amplified, and 108 of which were polymorphic ( 75.5 % ). The average number of DNA bands amplified from each random primer is 7.9. RAPD analysis showed all samples were classified into 2 groups at 0.62. One is medicinal C. satlvus, and the other is ornamental C. satlvus. [ Conclusion] The method RAPD can effectively identify medicinal and ornamental C. satlvus, and molecular clustering results don't have necessary association with geographic factors.
分 类 号:S188[农业科学—农业基础科学]
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