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Mapping of quantitative trait loci for grain yield and its components in a US popular winter wheat TAM 111 using 90K SNPs

机译:使用90K SNPs绘制美国流行冬小麦TAM 111的产量及其成分数量性状位点

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摘要

Stable quantitative trait loci (QTL) are important for deployment in marker assisted selection in wheat (Triticum aestivum L.) and other crops. We reported QTL discovery in wheat using a population of 217 recombinant inbred lines and multiple statistical approach including multi-environment, multi-trait and epistatic interactions analysis. We detected nine consistent QTL linked to different traits on chromosomes 1A, 2A, 2B, 5A, 5B, 6A, 6B and 7A. Grain yield QTL were detected on chromosomes 2B.1 and 5B across three or four models of GenStat, MapQTL, and QTLNetwork while the QTL on chromosomes 5A.1, 6A.2, and 7A.1 were only significant with yield from one or two models. The phenotypic variation explained (PVE) by the QTL on 2B.1 ranged from 3.3–25.1% based on single and multi-environment models in GenStat and was pleiotropic or co-located with maturity (days to heading) and yield related traits (test weight, thousand kernel weight, harvest index). The QTL on 5B at 211 cM had PVE range of 1.8–9.3% and had no significant pleiotropic effects. Other consistent QTL detected in this study were linked to yield related traits and agronomic traits. The QTL on 1A was consistent for the number of spikes m-2 across environments and all the four analysis models with a PVE range of 5.8–8.6%. QTL for kernels spike-1 were found in chromosomes 1A, 2A.1, 2B.1, 6A.2, and 7A.1 with PVE ranged from 5.6–12.8% while QTL for thousand kernel weight were located on chromosomes 1A, 2B.1, 5A.1, 6A.2, 6B.1 and 7A.1 with PVEranged from 2.7–19.5%. Among the consistent QTL, five QTL had significant epistatic interactions (additive × additive) at least for one trait and none revealed significant additive × additive × environment interactions. Comparative analysis revealed that the region within the confidence interval of the QTL on 5B from 211.4–244.2 cM is also linked to genes for aspartate-semialdehyde dehydrogenase, splicing regulatory glutamine/lysine-rich protein 1 isoform X1, and UDP-glucose 6-dehydrogenase 1-like isoform X1. The stable QTL could be important for further validation, high throughput SNP development, and marker-assisted selection (MAS) in wheat.
机译:稳定的数量性状基因座(QTL)对于在小麦(Triticum aestivum L.)和其他农作物的标记辅助选择中进行部署很重要。我们报告了使用217个重组自交系种群和多种统计方法(包括多环境,多性状和上位性相互作用分析)在小麦中发现QTL的情况。我们检测到9个一致的QTL,这些QTL与1A,2A,2B,5A,5B,6A,6B和7A染色体上的不同性状相关。在GenStat,MapQTL和QTLNetwork的三个或四个模型中,在2B.1号和5B号染色体上检测到了谷物产量QTL,而5A.1、6A.2和7A.1号染色体上的QTL仅与一两个中的产量显着相关楷模。根据GenStat中的单环境和多环境模型,由2B.1的QTL解释的表型变异(PVE)范围为3.3–25.1%,且具有多效性或与成熟度(抽穗日数)并与产量相关的性状共存(测试)重量,千粒重,收获指数)。 5B在211 cM处的QTL的PVE范围为1.8–9.3%,并且没有明显的多效作用。在这项研究中检测到的其他一致的QTL与产量相关性状和农艺性状相关。 1A上的QTL与整个环境和所有四个分析模型中的峰值m -2 一致,PVE范围为5.8–8.6%。在1A,2A.1、2B.1、6A.2和7A.1染色体上发现了穗穗 -1 的QTL,PVE为5.6–12.8%,而千粒重的QTL为位于1A,2B.1、5A.1、6A.2、6B.1和7A.1号染色体上,PVE范围为2.7–19.5%。在一致的QTL中,至少有一个性状有5个QTL具有显着的上位性相互作用(加性×加性),没有一个显着的加性×加性×环境相互作用。对比分析显示,从211.4–244.2 cM到5B的QTL置信区间内的区域也与天冬氨酸-半醛脱氢酶基因,剪接调节型谷氨酰胺/赖氨酸丰富的蛋白1亚型X1和UDP-葡萄糖6-脱氢酶基因相关。 1样异构体X1。稳定的QTL对于进一步验证,高通量SNP开发和小麦标记辅助选择(MAS)可能很重要。

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