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Genotyping-by-Sequencing Derived High-Density Linkage Map and its Application to QTL Mapping of Flag Leaf Traits in Bread Wheat

机译:序列基因分型衍生的高密度连锁图谱及其在面包小麦剑叶性状QTL定位中的应用

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Winter wheat parents ‘Harry’ (drought tolerant) and ‘Wesley’ (drought susceptible) were used to develop a recombinant inbred population with future goals of identifying genomic regions associated with drought tolerance. To precisely map genomic regions, high-density linkage maps are a prerequisite. In this study genotyping-by- sequencing (GBS) was used to construct the high-density linkage map. The map contained 3,641 markers distributed on 21 chromosomes and spanned 1,959?cM with an average distance of 1.8?cM between markers. The constructed linkage map revealed strong collinearity in marker order across 21 chromosomes with POPSEQ-v2.0, which was based on a high-density linkage map. The reliability of the linkage map for QTL mapping was demonstrated by co-localizing the genes to previously mapped genomic regions for two highly heritable traits, chaff color, and leaf cuticular wax. Applicability of linkage map for QTL mapping of three quantitative traits, flag leaf length, width, and area, identified 21 QTLs in four environments, and QTL expression varied across the environments. Two major stable QTLs, one each for flag leaf length (Qfll.hww-7A) and flag leaf width (Qflw.hww-5A) were identified. The map constructed will facilitate QTL and fine mapping of quantitative traits, map-based cloning, comparative mapping, and in marker-assisted wheat breeding endeavors.
机译:冬小麦的亲本“耐旱”和“韦斯利”(易受干旱影响)被用于开发重组近交种群,其未来目标是确定与耐旱性相关的基因组区域。要精确绘制基因组区域图,先决条件是高密度连锁图。在这项研究中,通过测序进行基因分型(GBS)来构建高密度连锁图谱。该图包含分布在21条染色体上的3,641个标记,跨度为1,959?cM,标记之间的平均距离为1.8?cM。所构建的连锁图谱以高密度的连锁图谱为基础,显示了POPSEQ-v2.0在21条染色体上的标记顺序具有很强的共线性。通过将基因共定位到先前映射的两个高度遗传性状,谷壳颜色和叶表皮蜡质的基因组区域,可以证明用于QTL定位的连锁图谱的可靠性。连锁图的适用性用于QTL映射三个定量性状(旗叶的长度,宽度和面积),在四个环境中识别出21个QTL,并且QTL的表达随环境而变化。确定了两个主要的稳定QTL,分别为旗叶长度(Qfll.hww-7A)和旗叶宽度(Qflw.hww-5A)。构建的图谱将有助于QTL和数量性状的精细定位,基于图谱的克隆,比较图谱以及标记辅助小麦育种工作。

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