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Comparison of genetic diversity structure analyses of SSR molecular marker data within apple (Malus × domestica) genetic resources

机译:苹果(Malus×domestica)遗传资源内SSR分子标记数据的遗传多样性结构比较

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The aim of this study was to compare traditional hierarchical clustering techniques and principal coordinate analysis (PCoA) with the model-based Bayesian cluster analyses in relation to subpopulation differentiation based on breeding history and geographical origin of apple (Malus × domestica Borkh.) cultivars and landraces. We presented the use of a set of 10 microsatellite (SSR) loci for genetic diversity structure analyses of 273 apple accessions from national genetic resources. These SSR loci yielded a total of 113 polymorphic SSR alleles, with 5-18 alleles per locus. SSR molecular data were successfully used in binary and allelic input format for all genetic diversity analyses, but allelic molecular data did not reveal reliable results with the NTSYS-pc and BAPS softwares. A traditional cluster analysis still provided an easy and effective way for determining genetic diversity structure in the apple germplasm collection. A model-based Bayesian analysis also provided the clustering results in accordance to traditional cluster analysis, but the analyses were distorted by the presence of a dominant group of apple genetic resources owing to the narrow origin of the apple genome. PCoA confirmed that there were no noticeable differences in genetic diversity structure of apple genetic resources during the breeding history. The results of our analyses are useful in the context of enhancing apple collection management, sampling of core collections, and mproving breeding processes.
机译:这项研究的目的是比较传统的层次聚类技术和主坐标分析(PCoA)与基于模型的贝叶斯聚类分析,这些模型基于苹果(Malus×domestica Borkh。)地方品种。我们介绍了使用一组10个微卫星(SSR)基因座对来自国家遗传资源的273个苹果品种进行遗传多样性结构分析。这些SSR基因座产生总共113个多态性SSR等位基因,每个基因座有5-18个等位基因。 SSR分子数据已成功以二进制和等位基因输入格式用于所有遗传多样性分析,但等位基因分子数据未显示NTSYS-pc和BAPS软件的可靠结果。传统的聚类分析仍为确定苹果种质资源中的遗传多样性结构提供了一种简便有效的方法。基于模型的贝叶斯分析也提供了与传统聚类分析一致的聚类结果,但是由于苹果基因组起源狭窄,存在大量优势苹果遗传资源而使分析失真。 PCoA确认,在育种历史上,苹果遗传资源的遗传多样性结构没有明显差异。我们的分析结果可用于增强苹果馆藏管理,核心馆藏采样以及改善育种过程。

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