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Rapid genotyping with DNA micro-arrays for high-density linkage mapping and QTL mapping in common buckwheat (Fagopyrum esculentum Moench)

机译:利用DNA芯片进行快速基因分型,可在普通荞麦中进行高密度连锁图谱和QTL定位(Fagopyrum esculentum Moench)

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摘要

For genetic studies and genomics-assisted breeding, particularly of minor crops, a genotyping system that does not require a priori genomic information is preferable. Here, we demonstrated the potential of a novel array-based genotyping system for the rapid construction of high-density linkage map and quantitative trait loci (QTL) mapping. By using the system, we successfully constructed an accurate, high-density linkage map for common buckwheat (Fagopyrum esculentum Moench); the map was composed of 756 loci and included 8,884 markers. The number of linkage groups converged to eight, which is the basic number of chromosomes in common buckwheat. The sizes of the linkage groups of the P1 and P2 maps were 773.8 and 800.4 cM, respectively. The average interval between adjacent loci was 2.13 cM. The linkage map constructed here will be useful for the analysis of other common buckwheat populations. We also performed QTL mapping for main stem length and detected four QTL. It took 37 days to process 178 samples from DNA extraction to genotyping, indicating the system enables genotyping of genome-wide markers for a few hundred buckwheat plants before the plants mature. The novel system will be useful for genomics-assisted breeding in minor crops without a priori genomic information.
机译:对于遗传研究和基因组学辅助育种,特别是小农作物的育种,优选不需要先验基因组信息的基因分型系统。在这里,我们展示了一种新型的基于阵列的基因分型系统在快速构建高密度连锁图谱和数量性状基因座(QTL)映射中的潜力。通过使用该系统,我们成功地为普通荞麦(Fagopyrum esculentum Moench)构建了一个准确的高密度连锁图;该地图由756个位点组成,并包含8,884个标记。连锁基团的数目收敛到八个,这是常见荞麦中的基本染色体数目。 P1和P2图的链接组的大小分别为773.8和800.4 cM。相邻基因座之间的平均间隔为2.13 cM。此处构建的连锁图将有助于分析其他常见的荞麦种群。我们还对主茎长度进行了QTL定位,并检测到四个QTL。从DNA提取到基因分型,共花费了37天的时间来处理178个样品,这表明该系统能够在数百株荞麦植物成熟之前对全基因组标记物进行基因分型。无需先验的基因组信息,该新型系统将可用于小农作物的基因组学辅助育种。

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