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SNP Assay Development for Linkage Map Construction Anchoring Whole-Genome Sequence and Other Genetic and Genomic Applications in Common Bean

机译:SNP分析开发用于连接图构建锚定全基因组序列以及普通豆类的其他遗传和基因组应用

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摘要

A total of 992,682 single-nucleotide polymorphisms (SNPs) was identified as ideal for Illumina Infinium II BeadChip design after sequencing a diverse set of 17 common bean (Phaseolus vulgaris L) varieties with the aid of next-generation sequencing technology. From these, two BeadChips each with >5000 SNPs were designed. The BARCBean6K_1 BeadChip was selected for the purpose of optimizing polymorphism among market classes and, when possible, SNPs were targeted to sequence scaffolds in the Phaseolus vulgaris 14× genome assembly with sequence lengths >10 kb. The BARCBean6K_2 BeadChip was designed with the objective of anchoring additional scaffolds and to facilitate orientation of large scaffolds. Analysis of 267 F2 plants from a cross of varieties Stampede × Red Hawk with the two BeadChips resulted in linkage maps with a total of 7040 markers including 7015 SNPs. With the linkage map, a total of 432.3 Mb of sequence from 2766 scaffolds was anchored to create the Phaseolus vulgaris v1.0 assembly, which accounted for approximately 89% of the 487 Mb of available sequence scaffolds of the Phaseolus vulgaris v0.9 assembly. A core set of 6000 SNPs (BARCBean6K_3 BeadChip) with high genotyping quality and polymorphism was selected based on the genotyping of 365 dry bean and 134 snap bean accessions with the BARCBean6K_1 and BARCBean6K_2 BeadChips. The BARCBean6K_3 BeadChip is a useful tool for genetics and genomics research and it is widely used by breeders and geneticists in the United States and abroad.
机译:在借助下一代测序技术对一组17种常见豆(菜豆)进行测序后,总共992,682个单核苷酸多态性(SNP)被确定为Illumina Infinium II BeadChip设计的理想选择。由此,设计了两个BeadChips,每个都具有> 5000个SNP。选择BARCBean6K_1 BeadChip的目的是优化市场类别之间的多态性,并且在可能的情况下,将SNP定位于菜豆14x基因组装配中的序列支架,其序列长度> 10 kb。 BARCBean6K_2 BeadChip的设计目标是锚定其他支架并促进大型支架的定向。用两个BeadChips对来自Stampede×Red Hawk品种的267种F2植物进行了分析,得出了具有7040个标记(包括7015个SNP)的连锁图。通过链接图,锚定了来自2766个支架的总共432.3 Mb的序列,以创建菜豆v1.0组件,约占菜豆v0.9组件的487 Mb可用序列支架的89%。基于365个干豆和134个四季豆的基因分型以及BARCBean6K_1和BARCBean6K_2 BeadChips的基因分型,选择了具有高基因分型质量和多态性的6000个SNP(BARCBean6K_3 BeadChip)核心集。 BARCBean6K_3 BeadChip是用于遗传学和基因组学研究的有用工具,在美国和国外的育种者和遗传学家中广泛使用。

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