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A multiparental cross population for mapping QTL for agronomic traits in durum wheat (Triticum turgidum ssp durum)

机译:用于杜兰麦小麦农艺性状的QTL映射QTL的多一轮交叉口(Triticum Turgidum SSP杜兰姆)

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Multiparental cross designs for mapping quantitative trait loci (QTL) provide an efficient alternative to biparental populations because of their broader genetic basis and potentially higher mapping resolution. We describe the development and deployment of a recombinant inbred line (RIL) population in durum wheat (Triticum turgidum ssp. durum) obtained by crossing four elite cultivars. A linkage map spanning 2664cM and including 7594 single nucleotide polymorphisms (SNPs) was produced by genotyping 338 RILs. QTL analysis was carried out by both interval mapping on founder haplotype probabilities and SNP bi-allelic tests for heading date and maturity date, plant height and grain yield from four field experiments. Sixteen QTL were identified across environments and detection methods, including two yield QTL on chromosomes 2BL and 7AS, with the former mapped independently from the photoperiod response gene Ppd-B1, while the latter overlapped with the vernalization locus VRN-A3. Additionally, 21 QTL with environment-specific effects were found. Our results indicated a prevalence of environment-specific QTL with relatively small effect on the control of grain yield. For all traits, functionally different QTL alleles in terms of direction and size of genetic effect were distributed among parents. We showed that QTL results based on founder haplotypes closely matched functional alleles at known heading date loci. Despite the four founders, only 2.1 different functional haplotypes were estimated per QTL, on average. This durum wheat population provides a mapping resource for detailed genetic dissection of agronomic traits in an elite background typical of breeding programmes.
机译:用于映射定量特性基因座(QTL)的万尺度交叉设计,因为其更广泛的遗传基础和潜在的更高的映射分辨率,为婴儿群提供了高效的替代品。我们描述了通过穿过四种精英品种而获得的硬粒小麦(Triticum Turgidum SSP)中重组近交系(RIL)群体的开发和部署。通过基因分型338 rils制备跨越2664cm且包括7594个单核苷酸多态性(SNP)的连杆地图。 QTL分析是通过对创始人单倍型概率的间隔映射和SNP双等位基因检验来进行,用于排序日期和到期日,植物高度和四个场实验。在环境和检测方法中鉴定了16个QTL,包括在染色体2BL和7as上产生QTL,前者独立地从光周期响应基因PPD-B1映射,而后者与vernalization基因座VRN-A3重叠。此外,发现了21个具有特定环境效果的QTL。我们的结果表明,对环境特异性QTL的患病率相对较小,对籽粒产量的控制影响。对于所有特征,在父母之间分配了遗传效应方向和尺寸方向的功能不同的QTL等位基因。我们表明,基于创始人单倍型的QTL结果在已知的标题日期基因座上与功能等位值紧密匹配。尽管四个创始人,平均每QTL估计2.1种不同的功能单倍型。这种硬粒小麦人口为繁殖计划的精英背景中的农艺性状的详细遗传解剖,提供了一种映射资源。

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