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A QTL associated with high seed coat cracking rate of a leading Japanese soybean variety

机译:与日本领先大豆品种的种皮高裂化率相关的QTL

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Seed coat cracking in soybeans [ Glycine max (L). Merr.] leads to commercial and agronomic losses. The Japanese elite soybean cultivar ‘Fukuyutaka’ is often used as a parent for breeding, but its high rate of seed coat cracking is an obstacle to its further use in breeding programs. To establish a DNA marker-assisted selection system for seed coat cracking, genetic factors related to high rates of seed coat cracking were surveyed, and a quantitative trait locus (QTL) with a stable effect on seed coat cracking in both years of a two-year replication experiment was detected on chromosome 20. Comparison of a set of near-isogenic lines (NILs) around this locus verified that the presence of the ‘Fukuyutaka’ allele significantly increased seed coat cracking in the kernel. The locus is located in a genomic region spanning 3.2 Mb. Marker-assisted selection for the locus will improve the selection efficiency of ‘Fukuyutaka’-derived breeding populations.
机译:大豆的种皮破裂[Glycine max(L)。 Merr。]导致商业和农艺损失。日本优良大豆品种“ Fukuyutaka”通常被用作育种的亲本,但其种皮裂化率很高,阻碍了其在育种计划中的进一步应用。为了建立用于种皮破裂的DNA标记辅助选择系统,调查了与种皮破裂高发生率相关的遗传因素,并在两年的两年内对种皮破裂具有稳定影响的定量性状位点(QTL)在20号染色体上检测到了一年的复制实验。在该基因座周围一组近等基因系(NIL)的比较证实,'Fukuyutaka'等位基因的存在显着增加了籽粒在籽粒中的开裂。该基因座位于一个跨越3.2 Mb的基因组区域。通过标记辅助选择基因座,可以提高“ Fukuyutaka”衍生繁殖种群的选择效率。

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