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Molecular identification and genetic analysis of cherry cultivars using capillary electrophoresis with fluorescence-labeled SSR markers

机译:带有荧光标记SSR标记的毛细管电泳对樱桃品种的分子鉴定和遗传分析

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摘要

Molecular identification and genetic analysis of cherry are necessary for solving the problem of synonyms and homonyms that occur in cherry production. In this study, capillary electrophoresis with fluorescent-labeled simple sequence repeat (SSR) primers was used to identify 63 cherry cultivars (varieties and rootstocks) planted in Shaanxi province, China. A total of 146 alleles were amplified by 10 SSR primer pairs, ranging from 10 to 20 per locus (mean: 14); among the SSR primer pairs, genotype number ranged from 12 to 26 (mean: 18). The mean values of gene diversity, heterozygosity, and polymorphism information content were 0.7549 (range 0.4011–0.8782), 0.5952 (range 0.3810–0.9683), and 0.7355 (range 0.3937–0.8697), respectively. An unweighted pair-group method with arithmetic average cluster analysis was used to separate the cherry cultivars. A model-based structure analysis separated the cultivars into three populations, which was consistent with the results of a phylogenic and principal component analysis. Based on Bayes’ rule, the cultivars were further subdivided into seven populations. Some of the 63 cherry cultivars that are often confused in production were distinguished, and DNA fingerprinting of cherry cultivars was established. This research will significantly assist in the identification of cherry cultivars at the molecular level.Electronic supplementary materialThe online version of this article (10.1007/s13205-017-1036-7) contains supplementary material, which is available to authorized users.
机译:樱桃的分子鉴定和遗传分析对于解决樱桃生产中出现的同义词和同名异物的问题是必不可少的。在这项研究中,使用荧光标记的简单序列重复(SSR)引物进行的毛细管电泳鉴定了在中国陕西省种植的63个樱桃品种(品种和砧木)。通过10对SSR引物对,总共扩增了146个等位基因,每个位点的扩增范围为10至20(平均值:14);在SSR引物对中,基因型数为12至26(平均:18)。基因多样性,杂合性和多态性信息含量的平均值分别为0.7549(范围0.4011-0.8782),0.5952(范围0.3810-0.9683)和0.7355(范围0.3937-0.8697)。采用算术平均聚类分析的非加权成对分组法来分离樱桃品种。基于模型的结构分析将品种分为三个种群,这与系统发育和主成分分析的结果一致。根据贝叶斯定律,将品种进一步细分为七个种群。区分了在生产中经常混淆的63个樱桃品种中的一些,并建立了樱桃品种的DNA指纹图谱。该研究将在分子水平上显着帮助鉴定樱桃品种。电子补充材料本文的在线版本(10.1007 / s13205-017-1036-7)包含补充材料,可供授权用户使用。

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