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Identifying the genetic diversity genetic structure and a core collection of Ziziphus jujuba Mill. var. jujuba accessions using microsatellite markers

机译:确定枣树的遗传多样性遗传结构和核心收藏。变种使用微卫星标记的枣

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摘要

Ziziphus is a genus of spiny shrubs and small trees in the Rhamnaceae family. This group has a controversial taxonomy, with more than 200 species described, including Chinese jujube (Ziziphus jujuba Mill. var. jujuba) and Indian jujube (Z. mauritiana), as well as several other important cultivated fruit crops. Using 24 SSR markers distributed across the Chinese jujube genome, 962 jujube accessions from the two largest germplasm repositories were genotyped with the aim of analyzing the genetic diversity and structure and constructing a core collection that retain high genetic diversity. A molecular profile comparison revealed 622 unique genotypes, among which 123 genotypes were genetically identical to at least one other accessions. STRUCTURE analysis and multivariate analyses (Cluster and PCoA) roughly divided the accessions into three major groups, with some admixture among groups. A simulated annealing algorithm and a heuristic algorithm were chosen to construct the core collection. A final core of 150 accessions was selected, comprising 15.6% of the analyzed accessions and retaining more than 99.5% of the total alleles detected. We found no significant differences in allele frequency distributions or in genetic diversity parameters between the chosen core accessions and the 622 genetically unique accessions. This work contributes to the understanding of Chinese jujube diversification and the protection of important germplasm resources.
机译:Ziziphus是鼠李科的多叶灌木和小树的属。该组的分类法引起争议,描述了200多个物种,其中包括中国枣(Ziziphus jujuba Mill。var。jujuba)和印度枣(Z. mauritiana),以及其他几种重要的栽培水果作物。利用分布在中国枣基因组中的24个SSR标记,对来自两个最大种质资源库的962个枣种进行了基因分型,目的是分析遗传多样性和结构,并构建一个保留高遗传多样性的核心收藏。分子图谱比较显示了622个独特的基因型,其中123个基因型在遗传上与至少一个其他种质相同。结构分析和多元分析(Cluster和PCoA)将种质大致分为三个主要组,各组之间有一些混合。选择了模拟退火算法和启发式算法来构建核心集合。选择了150个种质的最终核心,占所分析种质的15.6%,并保留了所检测总等位基因的99.5%以上。我们发现所选核心种质与622个遗传独特种质之间的等位基因频率分布或遗传多样性参数无显着差异。这项工作有助于了解大枣的多样性,并保护重要的种质资源。

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