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QTLs Associated with Agronomic Traits in the Cutler × AC Barrie Spring Wheat Mapping Population Using Single Nucleotide Polymorphic Markers

机译:利用单核苷酸多态性标记与卡特勒×AC巴里春季小麦作图群体的农艺性状相关的QTL

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摘要

We recently reported three earliness per se quantitative trait loci (QTL) associated with flowering and maturity in a recombinant inbred lines (RILs) population derived from a cross between the spring wheat (Triticum aestivum L.) cultivars ‘Cutler’ and ‘AC Barrie’ using 488 microsatellite and diversity arrays technology (DArT) markers. Here, we present QTLs associated with flowering time, maturity, plant height, and grain yield using high density single nucleotide polymorphic (SNP) markers in the same population. A mapping population of 158 RILs and the two parents were evaluated at five environments for flowering, maturity, plant height and grain yield under field conditions, at two greenhouse environments for flowering, and genotyped with a subset of 1809 SNPs out of the 90K SNP array and 2 functional markers (Ppd-D1 and Rht-D1). Using composite interval mapping on the combined phenotype data across all environments, we identified a total of 19 QTLs associated with flowering time in greenhouse (5), and field (6) conditions, maturity (5), grain yield (2) and plant height (1). We mapped these QTLs on 8 chromosomes and they individually explained between 6.3 and 37.8% of the phenotypic variation. Four of the 19 QTLs were associated with multiple traits, including a QTL on 2D associated with flowering, maturity and grain yield; two QTLs on 4A and 7A associated with flowering and maturity, and another QTL on 4D associated with maturity and plant height. However, only the QTLs on both 2D and 4D had major effects, and they mapped adjacent to well-known photoperiod response Ppd-D1 and height reducing Rht-D1 genes, respectively. The QTL on 2D reduced flowering and maturity time up to 5 days with a yield penalty of 436 kg ha-1, while the QTL on 4D reduced plant height by 13 cm, but increased maturity by 2 days. The high density SNPs allowed us to map eight moderate effect, two major effect, and nine minor effect QTLs that were not identified in our previous study using microsatellite and DArT markers. Results from this study provide additional information to wheat researchers developing early maturing and short stature spring wheat cultivars.
机译:最近,我们报道了三个早熟本身的数量性状基因座(QTL),与来自春季小麦(Cutler)和'AC Barrie'杂交的重组近交系(RILs)群体的开花和成熟相关使用488微卫星和分集阵列技术(DArT)标记。在这里,我们介绍了在同一种群中使用高密度单核苷酸多态性(SNP)标记与开花时间,成熟度,株高和籽粒产量相关的QTL。在田间条件下,在两个温室环境下开花,在五个环境下评估了158个RIL和两个亲本的作图种群的开花,成熟度,株高和籽粒产量,并对90K SNP阵列中的1809个SNP进行了基因分型和2个功能标记(Ppd-D1和Rht-D1)。使用复合间隔映射在所有环境中的组合表型数据上,我们确定了总共19个QTL,这些QTL与温室(5)和田间(6)条件,成熟度(5),谷物产量(2)和植物高度的开花时间相关(1)。我们将这些QTL定位在8条染色体上,它们分别解释了6.3至37.8%的表型变异。 19个QTL中有4个与多种性状相关,包括与开花,成熟和籽粒产量相关的二维QTL。 4A和7A上的两个QTL与开花和成熟相关,而4D上的另一个QTL与成熟和植物高度相关。但是,只有2D和4D上的QTL具有主要作用,并且它们分别定位在与著名的光周期反应Ppd-D1和降低高度的Rht-D1基因相邻的位置。 2D QTL最多可减少5天的开花和成熟时间,产量损失为436 kg ha -1 ,而4D QTL则将株高降低13 cm,但成熟期增加2天。高密度SNP使我们能够绘制8个中等效应,2个主要效应和9个次要效应QTL,这些QTL在我们先前的研究中未使用微卫星和DArT标记物鉴定。这项研究的结果为开发早熟和矮身材的春小麦品种的小麦研究者提供了更多信息。

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