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Molecular fingerprinting and relative relationship of apricot cultivars in China by simple sequence repeat (SSR) markers

机译:利用简单重复序列(SSR)标记对中国杏品种进行分子指纹图谱分析和亲缘关系

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In order to construct DNA fingerprint of apricot in China, the simple sequence repeats (SSR) analysis of 130 majority cultivars were performed. 104 alleles from 10 SSR loci were combined, which became the identification key of apricot cultivars. DNA fingerprint of these varieties had been primarily established. The identifying efficiency was also investigated using SSR data from three pair primers. The results demonstrate that 124 cultivars could be distinguished. There was a high efficiency in the identification of apricot germplasms using SSR markers and some cultivars with closely relationship (the similarity coefficient higher than 0.525) also could be separated from each other. These results can be expected to distinguish among all other apricot cultivars, and represent a practical system for apricot cultivar identification at any development stage, which would provide evidences for protection of breeder’s intellectual rights. In addition, cluster phylogenetic analysis was conducted based on all the SSR data. The ‘Jingjia No.1’ and its male parent ‘Shanhuangxing’ had been clustered within one group; ‘Longwangmao’ and ‘Yiwofeng’ which was called ‘small Longwangmao’ were clustered into the same group. This result further suggests that it was reliable to study the genetic relationship among these apricot cultivars using SSR markers with these primers.
机译:为了构建中国杏的DNA指纹图谱,对130个主要品种进行了简单重复序列(SSR)分析。从10个SSR基因座中筛选出104个等位基因,成为了杏品种的鉴定关键。这些品种的DNA指纹图谱已初步建立。还使用来自三对引物的SSR数据研究了鉴定效率。结果表明,可以区分124个品种。利用SSR标记鉴定杏种质的效率很高,并且可以将某些亲缘关系密切的品种(相似系数高于0.525)彼此分离。可以预期这些结果可以区分所有其他杏子品种,并且代表了在任何发育阶段鉴定杏子品种的实用系统,这将为保护育种者的知识产权提供证据。此外,基于所有SSR数据进行了聚类系统发育分析。 “京嘉第一”和其父级“山皇姓”已经聚在一起。 “龙王毛”和“一窝峰”被称为“小龙王毛”,被归为同一组。该结果进一步表明,使用带有这些引物的SSR标记研究这些杏品种之间的遗传关系是可靠的。

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