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Genome-wide single nucleotide polymorphism and Insertion-Deletion discovery through next-generation sequencing of reduced representation libraries in common bean

机译:全基因组范围内的单核苷酸多态性和通过下一代测序减少普通豆中的代表性表达库而发现的插入-缺失

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Single nucleotide polymorphisms (SNPs) and insertions-deletions (InDels) are valuable molecular markers for genomics and genetics studies and molecular breeding. The advent of next-generation sequencing techniques has enabled researchers to approach high-throughput and cost-effective SNP and InDel discovery on a genomic scale. In this report, 36 common bean genotypes grown in Canada were used to construct reduced representation libraries for next-generation sequencing. Using 76 million sequence reads generated by the Illumina HiSeq 2000 Sequencing System, we identified a total of 43,698 putative SNPs and 1,267 putative InDels. Of the SNPs, 43,504 were bi-allelic and 194 were tri-allelic, and the InDels comprised 574 insertions and 693 deletions. The putative bi-allelic SNPs were distributed across all 11 chromosomes with the highest number of SNPs observed in chromosome 2 (4,788), and the lowest in chromosome 10 (2,941). With the aid of the recent release of the first chromosome-scale version of Phaseolus vulgaris, 24,907 bi-allelic SNPs, 79 tri-allelic SNPs, 315 insertions, and 377 deletions were located in 8,758, 77, 273, and 364 genes, respectively. Among these 24,907 bi-allelic SNPs, 7,168 nonsynonymous bi-allelic SNPs were identified within 36 common bean genotypes that were located in 4,303 genes. A total of 113 putative SNPs were randomly chosen for validation using high-resolution melt analysis. Of the 113 candidate SNPs, 105 (92.9 %) contained the predicted SNPs.
机译:单核苷酸多态性(SNP)和插入缺失(InDels)是用于基因组学和遗传学研究以及分子育种的有价值的分子标记。下一代测序技术的出现使研究人员能够在基因组规模上进行高通量且具有成本效益的SNP和InDel发现。在本报告中,加拿大生长的36种常见豆基因型被用于构建简化的代表性文库,用于下一代测序。使用Illumina HiSeq 2000测序系统产生的7600万个序列读数,我们鉴定出总共43698个推定的SNP和1267个推定的InDel。在SNP中,有43,504个是双等位基因,而194个是三等位基因,而InDels包含574个插入和693个缺失。假定的双等位基因SNP分布在所有11条染色体上,其中在2号染色体上观察到的SNP数量最高(4,788),而在10号染色体上观察到的SNP数量最低(2,941)。借助于最近发布的菜豆的第一个染色体规模的版本,分别在8,758、77、273和364个基因中定位了24,907个双等位基因SNP,79个三等位基因SNP,315个插入和377个缺失。 。在这24,907个双等位基因SNP中,在4,303个基因的36种常见豆基因型中鉴定出7,168个非同义双等位基因SNP。使用高分辨率熔体分析随机选择总共113个推定的SNP进行验证。在113个候选SNP中,有105个(92.9%)包含预测的SNP。

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