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Genetic analysis of a major international collection of cultivated apple varieties reveals previously unknown historic heteroploid and inbred relationships

机译:对主要国际栽培苹果品种的遗传分析揭示了以前未知的历史异倍体和近交关系

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摘要

Domesticated apple (Malus x domestica Borkh.) is a major global crop and the genetic diversity held within the pool of cultivated varieties is important for the development of future cultivars. The aim of this study was to investigate the diversity held within the domesticated form, through the analysis of a major international germplasm collection of cultivated varieties, the UK National Fruit Collection, consisting of over 2,000 selections of named cultivars and seedling varieties. We utilised Diversity Array Technology (DArT) markers to assess the genetic diversity within the collection. Clustering attempts, using the software STRUCTURE revealed that the accessions formed a complex and historically admixed group for which clear clustering was challenging. Comparison of accessions using the Jaccard similarity coefficient allowed us to identify clonal and duplicate material as well as revealing pairs and groups that appeared more closely related than a standard parent-offspring or full-sibling relations. From further investigation, we were able to propose a number of new pedigrees, which revealed that some historically important cultivars were more closely related than previously documented and that some of them were partially inbred. We were also able to elucidate a number of parent-offspring relationships that had resulted in a number of important polyploid cultivars. This included reuniting polyploid cultivars that in some cases dated as far back as the 18th century, with diploid parents that potentially date back as far as the 13th century.
机译:驯化的苹果(Malus x domestica Borkh。)是一种主要的全球作物,栽培品种库中的遗传多样性对于未来品种的发展非常重要。这项研究的目的是通过分析一个主要的国际栽培品种国际种质资源英国国家水果资源库,以研究驯化形式中的多样性,其中包括2,000多个精选品种和幼苗品种。我们利用多样性阵列技术(DArT)标记来评估馆藏中的遗传多样性。使用STRUCTURE软件进行的聚类尝试表明,这些种质形成了一个复杂的,历史悠久的混合群体,对于这些物种而言,清晰的聚类具有挑战性。使用Jaccard相似系数对种质进行比较,使我们能够鉴定出克隆和重复的材料,并揭示与标准亲子或全兄弟关系更紧密相关的对和组。通过进一步的研究,我们提出了许多新的谱系,这表明一些具有历史意义的品种比以前记载的品种更紧密相关,并且其中一些是部分自交系。我们还能够阐明许多导致许多重要多倍体品种的亲子关系。其中包括在某些情况下可以追溯到18世纪的多倍体变种重新组合,而可能要追溯到13世纪的二倍体亲本。

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