Institute of Vegetable and Floriculture Science, National Agriculture and Food Research Organization (NARO), Tsu, Mie 514-2392, Japan.
Tohoku Agricultural Research Center, NARO, Morioka, Iwate 020-0198, Japan.
DNA Res. 2022 Aug 23;29(5). doi: 10.1093/dnares/dsac020.
Onions are one of the most widely cultivated vegetables worldwide; however, the development and utilization of molecular markers have been limited because of the large genome of this plant. We present a genome-wide marker design workflow for onions and its application in a high-throughput genotyping method based on target amplicon sequencing. The efficiency of the method was evaluated by genotyping of F2 populations. In the marker design workflow, unigene and genomic sequence data sets were constructed, and polymorphisms between parental lines were detected through transcriptome sequence analysis. The positions of polymorphisms detected in the unigenes were mapped onto the genome sequence, and primer sets were designed. In total, 480 markers covering the whole genome were selected. By genotyping an F2 population, 329 polymorphic sites were obtained from the estimated positions or the flanking sequences. However, missing or sparse marker regions were observed in the resulting genetic linkage map. We modified the markers to cover these regions by genotyping the other F2 populations. The grouping and order of markers on the linkages were similar across the genetic maps. Our marker design workflow and target amplicon sequencing are useful for genome-wide genotyping of onions owing to their reliability, cost effectiveness, and flexibility.
洋葱是世界上种植最广泛的蔬菜之一;然而,由于该植物的基因组较大,分子标记的开发和利用一直受到限制。我们提出了一种用于洋葱的全基因组标记设计工作流程及其在基于目标扩增子测序的高通量基因分型方法中的应用。通过 F2 群体的基因分型来评估该方法的效率。在标记设计工作流程中,构建了 unigene 和基因组序列数据集,并通过转录组序列分析检测亲本系之间的多态性。在 unigene 中检测到的多态性的位置被映射到基因组序列上,并设计了引物对。总共选择了 480 个覆盖整个基因组的标记。通过对 F2 群体进行基因分型,从估计的位置或侧翼序列中获得了 329 个多态性位点。然而,在所得到的遗传连锁图谱中观察到缺失或稀疏的标记区域。我们通过对其他 F2 群体进行基因分型来修改这些标记以覆盖这些区域。标记在连锁上的分组和顺序在遗传图谱中相似。由于其可靠性、成本效益和灵活性,我们的标记设计工作流程和目标扩增子测序可用于洋葱的全基因组基因分型。