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Genetic relationships of 34 grapevine varieties and construction of molecular fingerprints by SSR markers

机译:SSR标记34种葡萄园品种和分子指纹施工的遗传关系

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In order to protect and promote the effective differentiation and rational utilization of grape germplasm resources, 34 grapevine varieties were selected from the National Germplasm Resources, Taigu Grape Nursery in China: 12 wine grapes (Group I), 14 table grapes (Group II) and 12 seedless grapes (Group III), 4 of which were in Group II, too. For the purpose of genetic characterization, 15 pairs of SSR (simple sequence repeat) primers were used. Sixty-six alleles were generated among Group I, including 64 polymorphic bands, with 1–8 alleles per locus. In Group II, a total of 54 alleles, from 1 to 8 (3.6 on average) alleles per locus, were identified. In Group III, 54 alleles with an average of 3.6 alleles per locus were identified and the percentage of polymorphic alleles was 94%. The 34 varieties clustered into two major clades in the dendrogram: V. vinifera with hybrid of V. vinifera and V. labrusca or hybrid of V. amurensisi and V. vinifera were clearly differentiated. After processing and filtering the raw data, we produced the molecular fingerprint code of each variety. These results showed that the SSR markers are useful for discrimination and analysis of genetic diversity of grapevine varieties. The SSR markers could be used to examine and distinguish the genetic resources among closely related varieties. This is also an effective tool for construction of a grapevine molecular fingerprinting system. The obtained data will be useful in grape breeding in the future.
机译:为了保护和促进葡萄种质资源的有效分化和合理利用,34种葡萄种品种选自中国的国家种质资源,Taigu葡萄苗圃:12个葡萄酒葡萄(I群),14枚桌葡萄(二世组)和12种无籽葡萄(III族),其中4组也是II组。出于遗传表征的目的,使用15对SSR(简单序列重复)引物。在第I组中产生六十六个等位基因,其中包括64种多态性带,每个基因座有1-8个等位基因。在II组中,鉴定了总共54个等位基因,每位轨迹的1至8(3.6平均)等位基因。在III组中,鉴定了平均为3.6等位基因的54个等位基因,多态性等位基因百分比为94%。将34个品种聚集在树木图中的两个主要曲线中:V.Vinifera,与V.Vinifera的杂交和V.Amurensisi和V.Vinifera的杂交种和V.Vinifera明确分化。处理和过滤原始数据后,我们生产各种分子指纹码。这些结果表明,SSR标志物可用于识别和分析葡萄品种的遗传多样性。 SSR标记可用于检查和区分密切相关品种的遗传资源。这也是构建葡萄分子指纹系统的有效工具。所获得的数据将在未来的葡萄育种中有用。

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