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Mapping quantitative trait loci for quality factors in an inter-class cross of US and Chinese wheat

机译:在美国和中国小麦的种间杂交中绘制品质性状的数量性状基因座

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Wheat quality factors are critical in determining the suitability of wheat (Triticum aestivum L.) for end-use product and economic value, and they are prime targets for marker-assisted selection. Objectives of this study were to identify quantitative trait loci (QTLs) that ultimately influence wheat market class and milling quality. A population of 132 F recombinant inbred lines (RILs) was derived by single-seed descent from a cross between the Chinese hard wheat line Ning7840 and the soft wheat cultivar Clark and grown at three Oklahoma locations from 2001 to 2003. Milling factors such as test weight (volumetric grain weight, TW), kernel weight (KW), and kernel diameter (KD) and market class factors such as wheat grain protein content (GPC) and kernel hardness index (HI) were characterized on the basis of a genetic map constructed from 367 SSR and 241 AFLP markers covering all 21 chromosomes. Composite interval mapping identified eight QTLs for TW, seven for KW, six for KD, two each for GPC and HI measured by near-infrared reflectance (NIR) spectroscopy, and four for HI measured by single kernel characterization system. Positive phenotypic correlations were found among milling factors. Consistent co-localized QTLs were identified for TW, KW, and KD on the short arms of chromosomes 5A and 6A. A common QTL was identified for TW and KD on the long arm of chromosome 5A. A consistent major QTL for HI peaked at the Pinb-D1 locus on the short arm of chromosome 5D and explained up to 85% of the phenotypic variation for hardness. We identified QTLs for GPC on 4B and the short arm of 3A chromosomes. The consistency of quality factor QTLs across environments reveals their potential for marker-assisted selection.
机译:小麦品质因子对于确定小麦(Triticum aestivum L.)对最终用途产品和经济价值的适应性至关重要,它们是标记辅助选择的主要目标。这项研究的目的是确定最终影响小麦市场等级和制粉质量的数量性状基因座(QTL)。 132 F重组近交系(RILs)的种群是通过单粒后代从中国硬质小麦Ning7840与软质小麦品种Clark之间的杂交获得的,并于2001年至2003年在俄克拉荷马州的三个地点生长。重量(体积谷物重量,TW),籽粒重量(KW)和籽粒直径(KD)以及市场分类因素,例如小麦籽粒蛋白质含量(GPC)和籽粒硬度指数(HI)均基于遗传图谱进行了表征。由367个SSR和241个AFLP标记构建而成,覆盖了所有21条染色体。复合区间映射确定了TW的八个QTL,KW的七个QTL,KD的六个QTL,GPC和HI的两个(通过近红外反射(NIR)光谱测量)和HI的四个(通过单核​​表征系统测量)。在碾磨因子之间发现正表型相关性。在5A和6A染色体的短臂上发现了TW,KW和KD一致的共定位QTL。在5A染色体长臂上发现了TW和KD的常见QTL。 HI的一致主要QTL在5D染色体短臂上的Pinb-D1基因座处达到峰值,并解释了高达85%的硬度表型变异。我们在4B和3A染色体的短臂上鉴定了GPC的QTL。跨环境的质量因子QTL的一致性揭示了其在标记辅助选择中的潜力。

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