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Genetic Diversity, Population Structure and Construction of a Core Collection of Apple Cultivars from Italian Germplasm

机译:意大利种质苹果品种的遗传多样性,种群结构和核心品种构建

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摘要

Apple germplasm collections are increasingly appreciated as a repository for the genetic improvement of species, and their evaluation is an essential prerequisite for their utilization in apple breeding. A set of 418 apple genotypes, including 383 accessions from the Italian germplasm and 35 International cultivars as reference, was analyzed using 15 SSRs with the aim of assessing the genetic diversity within this panel of varieties, evaluating relationships among them and determining their genetic structure. Genetic analyses performed by Bayesian model-based clustering revealed a clear differentiation of two major groups (G1 and G2). Local Italian accessions were grouped mainly in G2 while all except one of the reference cultivars were found in G1. Each of these two clusters has been further divided into two subgroups by a nested approach. These results were confirmed by factorial correspondence (FCA) and molecular variance (AMOVA) analyses. A core collection of 55 accessions, representative of the Italian apple germplasm and capable of retaining all the 238 SSR alleles detected on 192 unique genotypes, was established by the M-strategy method. The Italian apple germplasm represents an important source of genetic diversity which can be used, in addition to other characterized European germplasm collections, to optimize the efficiency of genome-wide association studies aimed at identifying the genomic regions controlling major horticultural traits.
机译:苹果种质资源作为物种遗传改良的资料库越来越受到赞赏,对其进行评估是将其用于苹果育种的必要前提。使用15个SSR对一组418种苹果基因型进行了分析,包括来自意大利种质的383个种质和35个国际品种的参考,目的是评估该品种组中的遗传多样性,评估它们之间的关系并确定其遗传结构。通过基于贝叶斯模型的聚类进行的遗传分析揭示了两个主要组(G1和G2)的明显区别。意大利本地种主要集中在G2中,而所有参考品种之一都在G1中发现。这两个群集中的每一个都已通过嵌套方法进一步分为两个子组。这些结果已通过阶乘对应(FCA)和分子变异(AMOVA)分析得到证实。通过M-策略方法建立了55个种质的核心收藏,这些种质代表意大利苹果种质并且能够保留在192种独特基因型上检测到的所有238个SSR等位基因。意大利苹果种质资源是遗传多样性的重要来源,除其他欧洲种质资源外,还可用于优化全基因组关联研究的效率,旨在确定控制主要园艺性状的基因组区域。

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