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High density mapping and haplotype analysis of the major stem-solidness locus SSt1 in durum and common wheat

机译:硬质小麦和普通小麦主要茎固性位点SSt1的高密度作图和单倍型分析

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摘要

Breeding for solid-stemmed durum (Triticum turgidum L. var durum) and common wheat (Triticum aestivum L.) cultivars is one strategy to minimize yield losses caused by the wheat stem sawfly (Cephus cinctus Norton). Major stem-solidness QTL have been localized to the long arm of chromosome 3B in both wheat species, but it is unclear if these QTL span a common genetic interval. In this study, we have improved the resolution of the QTL on chromosome 3B in a durum (Kofa/W9262-260D3) and common wheat (Lillian/Vesper) mapping population. Coincident QTL (LOD = 94–127, R2 = 78–92%) were localized near the telomere of chromosome 3BL in both mapping populations, which we designate SSt1. We further examined the SSt1 interval by using available consensus maps for durum and common wheat and compared genetic to physical intervals by anchoring markers to the current version of the wild emmer wheat (WEW) reference sequence. These results suggest that the SSt1 interval spans a physical distance of 1.6 Mb in WEW (positions 833.4–835.0 Mb). In addition, minor QTL were identified on chromosomes 2A, 2D, 4A, and 5A that were found to synergistically enhance expression of SSt1 to increase stem-solidness. These results suggest that developing new wheat cultivars with improved stem-solidness is possible by combining SSt1 with favorable alleles at minor loci within both wheat species.
机译:硬梗硬粒小麦(Triticum turgidum L. var durum)和普通小麦(Triticum aestivum L.)品种的育种是一种将小麦茎锯蝇(Cephus cinctus Norton)造成的产量损失降至最低的策略。在两个小麦品种中,主要的茎实性QTL已定位于3B号染色体的长臂,但尚不清楚这些QTL是否跨越相同的遗传间隔。在这项研究中,我们提高了硬粒(Kofa / W9262-260D3)和普通小麦(Lillian / Vesper)作图种群中3B染色体QTL的分辨率。在这两个作图群体中,巧合的QTL(LOD = 94–127,R 2 = 78–92%)位于3BL染色体的端粒附近。我们通过使用针对硬质小麦和普通小麦的可用共有图谱进一步检查了SSt1间隔,并通过将标记锚定至野生版本的野生小麦(WEW)参考序列的当前版本,比较了遗传间隔与物理间隔。这些结果表明,SSt1间隔在WEW中跨越了1.6 Mb的物理距离(位置833.4–835.0 Mb)。此外,在2A,2D,4A和5A染色体上鉴定出次要QTL,发现它们协同增强了SSt1的表达,从而增加了茎的坚固性。这些结果表明,通过在两种小麦品种的次要位点上将SSt1与有利等位基因结合,可以开发具有提高的茎固性的新小麦品种。

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