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Diversity Arrays Technology (DArT) Marker Platforms for Diversity Analysis and Linkage Mapping in a Complex Crop, the Octoploid Cultivated Strawberry (Fragaria × ananassa)

机译:用于复杂作物(八倍体栽培草莓)(Fragaria×ananassa)的多样性分析和连锁作图的多样性阵列技术(DArT)标记平台

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摘要

Cultivated strawberry (Fragaria × ananassa) is a genetically complex allo-octoploid crop with 28 pairs of chromosomes (2n = 8x = 56) for which a genome sequence is not yet available. The diploid Fragaria vesca is considered the donor species of one of the octoploid sub-genomes and its available genome sequence can be used as a reference for genomic studies. A wide number of strawberry cultivars are stored in ex situ germplasm collections world-wide but a number of previous studies have addressed the genetic diversity present within a limited number of these collections. Here, we report the development and application of two platforms based on the implementation of Diversity Array Technology (DArT) markers for high-throughput genotyping in strawberry. The first DArT microarray was used to evaluate the genetic diversity of 62 strawberry cultivars that represent a wide range of variation based on phenotype, geographical and temporal origin and pedigrees. A total of 603 DArT markers were used to evaluate the diversity and structure of the population and their cluster analyses revealed that these markers were highly efficient in classifying the accessions in groups based on historical, geographical and pedigree-based cues. The second DArTseq platform took benefit of the complexity reduction method optimized for strawberry and the development of next generation sequencing technologies. The strawberry DArTseq was used to generate a total of 9,386 SNP markers in the previously developed ‘232’ × ‘1392’ mapping population, of which, 4,242 high quality markers were further selected to saturate this map after several filtering steps. The high-throughput platforms here developed for genotyping strawberry will facilitate genome-wide characterizations of large accessions sets and complement other available options.
机译:栽培草莓(Fragaria×ananassa)是一种遗传复杂的异源八倍体作物,具有28对染色体(2n = 8x = 56),尚无法获得其基因组序列。二倍体草莓属被认为是八倍体亚基因组之一的供体,其可用的基因组序列可作为基因组研究的参考。世界各地的异地种质资源库中都有大量的草莓栽培品种,但是许多先前的研究已经解决了其中有限数量的遗传多样性。在这里,我们报告基于草莓高通量基因分型的多样性阵列技术(DArT)标记的实现的两个平台的开发和应用。第一个DArT芯片用于评估62个草莓品种的遗传多样性,这些品种代表着基于表型,地理和时间起源以及谱系的广泛变异。总共使用了603个DArT标记来评估种群的多样性和结构,它们的聚类分析表明,这些标记在基于历史,地理和谱系线索的群体分类中非常有效。第二个DArTseq平台利用了针对草莓优化的降低复杂性的方法以及下一代测序技术的发展。草莓DArTseq用于在先前开发的“ 232”ד 1392”作图群体中生成总共9,386个SNP标记,其中,经过数个过滤步骤后,进一步选择了4,242个高质量标记使该图饱和。这里开发的用于草莓基因分型的高通量平台将有助于大型登录集的全基因组表征,并补充其他可用选项。

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