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High-throughput SNP discovery through deep resequencing of a reduced representation library to anchor and orient scaffolds in the soybean whole genome sequence

机译:通过对还原表示库进行深度重排以在大豆全基因组序列中锚定和定向支架对高通量SNP进行发现

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摘要

BackgroundThe Soybean Consensus Map 4.0 facilitated the anchoring of 95.6% of the soybean whole genome sequence developed by the Joint Genome Institute, Department of Energy, but its marker density was only sufficient to properly orient 66% of the sequence scaffolds. The discovery and genetic mapping of more single nucleotide polymorphism (SNP) markers were needed to anchor and orient the remaining genome sequence. To that end, next generation sequencing and high-throughput genotyping were combined to obtain a much higher resolution genetic map that could be used to anchor and orient most of the remaining sequence and to help validate the integrity of the existing scaffold builds.
机译:背景大豆共识图谱4.0促进了美国能源部联合基因组研究所开发的大豆全基因组序列的95.6%的锚定,但其标记密度仅足以正确定向66%的序列支架。需要更多的单核苷酸多态性(SNP)标记物的发现和遗传定位来锚定和定向其余的基因组序列。为此,将下一代测序和高通量基因分型相结合,以获得更高分辨率的遗传图谱,可用于锚定和定向大多数剩余序列并帮助验证现有支架构建的完整性。

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