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Identification of Pyrus Single Nucleotide Polymorphisms (SNPs) and Evaluation for Genetic Mapping in European Pear and Interspecific Pyrus Hybrids

机译:梨属单核苷酸多态性(SNPs)的鉴定和欧洲梨和种间梨属杂种的遗传作图评价

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摘要

We have used new generation sequencing (NGS) technologies to identify single nucleotide polymorphism (SNP) markers from three European pear (Pyrus communis L.) cultivars and subsequently developed a subset of 1096 pear SNPs into high throughput markers by combining them with the set of 7692 apple SNPs on the IRSC apple Infinium® II 8K array. We then evaluated this apple and pear Infinium® II 9K SNP array for large-scale genotyping in pear across several species, using both pear and apple SNPs. The segregating populations employed for array validation included a segregating population of European pear (‘Old Home’בLouise Bon Jersey’) and four interspecific breeding families derived from Asian (P. pyrifolia Nakai and P. bretschneideri Rehd.) and European pear pedigrees. In total, we mapped 857 polymorphic pear markers to construct the first SNP-based genetic maps for pear, comprising 78% of the total pear SNPs included in the array. In addition, 1031 SNP markers derived from apple (13% of the total apple SNPs included in the array) were polymorphic and were mapped in one or more of the pear populations. These results are the first to demonstrate SNP transferability across the genera Malus and Pyrus. Our construction of high density SNP-based and gene-based genetic maps in pear represents an important step towards the identification of chromosomal regions associated with a range of horticultural characters, such as pest and disease resistance, orchard yield and fruit quality.
机译:我们已经使用新一代测序(NGS)技术从三个欧洲梨(Pyrus communis L.)品种中鉴定出单核苷酸多态性(SNP)标记,随后将它们与10个梨的SNP组合,将1096个梨SNP的一个子集开发为高通量标记。 IRSC苹果Infinium®II 8K阵列上有7692个苹果SNP。然后,我们使用梨和苹果SNP对苹果和梨的Infinium®II 9K SNP阵列进行了多种梨的大规模基因分型评估。用于阵列验证的隔离种群包括欧洲梨的隔离种群(“ Old Home”ד Louise Bon Jersey”)和源自亚洲的四个种间育种家族(P. pyrifolia Nakai和P. bretschneideri Rehd。)和欧洲梨谱系。 。我们总共绘制了857个多态性梨标记,以构建梨的第一个基于SNP的遗传图谱,占阵列中包含的梨SNP总数的78%。此外,来自苹果的1031个SNP标记(占阵列中苹果SNP总数的13%)具有多态性,并定位在一个或多个梨种群中。这些结果是第一个证明在苹果属和梨属之间SNP转移能力的研究。我们在梨中构建基于SNP的高密度遗传图谱和基于基因的遗传图谱,是朝着鉴定与一系列园艺特性(如害虫和疾病抗性,果园产量和果实品质)相关的染色体区域迈出的重要一步。

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