Rosa rugosa in China based on molecular marker data was probed and the optimum core germplasm was established. Studies were in'/> Core-Germplasm Construction of Rosa rugosa Collections by CDDP Molecular Markers
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Core-Germplasm Construction of Rosa rugosa Collections by CDDP Molecular Markers

机译:CDDP分子标记构建皱纹蔷薇集的核心种质

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A method for constructing core-germplasm of style="white-space:nowrap;">Rosa rugosa in China based on molecular marker data was probed and the optimum core germplasm was established. Studies were initiated to analyze the genetic diversity of 120 rugged roses from 6 different Chinese source populations based on CDDP marker, and a preliminary construction of the core collection was established using stepwise UPGMA clustering sampling method. The 26 core collection resources of style="white-space:nowrap;">R. rugosa collections in China have 20% germplasm samples of initial collection, the retention ratio of polymorphic loci, effective number of alleles (Ne), Nei’s genetic diversity (H) and Shannon information index (I) were respectively 97.52%, 104.16%, 108.38% and 106.18%. The results of t-test showed that no significant difference was found in genetic diversity indexes between the core collection and the original collection. These results also demonstrated that the core collection could stand for original collection excellently. The results show that CDDP molecular technology can be successfully applied to the construction of core germplasm resources of rugged roses.
机译:探索了基于分子标记数据的中国 style =“ white-space:nowrap;”> Rosa rugosa 的核心种质构建方法,并建立了最佳核心种质。基于CDDP标记,开始了研究以分析来自6个不同来源的中国种群的120株玫瑰的遗传多样性,并使用逐步UPGMA聚类抽样方法建立了核心种质的初步构建。 style =“ white-space:nowrap;”> R的26种核心集合资源。中国的皱rug种质资源初步收集的种质样本为20%,多态性基因座的保留率,等位基因的有效数(Ne),Nei的遗传多样性(H)和Shannon信息指数(I)为分别为97.52%,104.16%,108.38%和106.18%。 t检验的结果表明,核心种质和原始种质之间的遗传多样性指数没有显着差异。这些结果还表明,核心系列可以很好地代表原始系列。结果表明,CDDP分子技术可以成功地应用于崎玫瑰核心种质资源的建设。

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