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A consensus framework map of durum wheat (Triticum durum Desf.) suitable for linkage disequilibrium analysis and genome-wide association mapping

机译:适用于连锁不平衡分析和全基因组关联映射的硬质小麦(Triticum durum Desf。)的共识框架图

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Background Durum wheat (Triticum durum Desf.) is a tetraploid cereal grown in the medium to low-precipitation areas of the Mediterranean Basin, North America and South-West Asia. Genomics applications in durum wheat have the potential to boost exploitation of genetic resources and to advance understanding of the genetics of important complex traits (e.g. resilience to environmental and biotic stresses). A dense and accurate consensus map specific for T. durum will greatly facilitate genetic mapping, functional genomics and marker-assisted improvement. Results High quality genotypic data from six core recombinant inbred line populations were used to obtain a consensus framework map of 598 simple sequence repeats (SSR) and Diversity Array Technology? (DArT) anchor markers (common across populations). Interpolation of unique markers from 14 maps allowed us to position a total of 2,575 markers in a consensus map of 2,463?cM. The T. durum A and B genomes were covered in their near totality based on the reference SSR hexaploid wheat map. The consensus locus order compared to those of the single component maps showed good correspondence, (average Spearman’s rank correlation rho ρ value of 0.96). Differences in marker order and local recombination rate were observed between the durum and hexaploid wheat consensus maps. The consensus map was used to carry out a whole-genome search for genetic differentiation signatures and association to heading date in a panel of 183 accessions adapted to the Mediterranean areas. Linkage disequilibrium was found to decay below the r2 threshold?=?0.3 within 2.20?cM, on average. Strong molecular differentiations among sub-populations were mapped to 87 chromosome regions. A genome-wide association scan for heading date from 27 field trials in the Mediterranean Basin and in Mexico yielded 50 chromosome regions with evidences of association in multiple environments. Conclusions The consensus map presented here was used as a reference for genetic diversity and mapping analyses in T. durum, providing nearly complete genome coverage and even marker density. Markers previously mapped in hexaploid wheat constitute a strong link between the two species. The consensus map provides the basis for high-density single nucleotide polymorphic (SNP) marker implementation in durum wheat.
机译:背景硬粒小麦(Triticum durum Desf。)是一种四倍体谷物,生长在地中海盆地,北美和西南亚的中低降水地区。硬粒小麦中的基因组学应用有可能促进遗传资源的开发和增进对重要复杂性状(例如对环境和生物胁迫的适应力)的遗传学理解。特异于硬粒小麦的密集而准确的共有图谱将极大地促进遗传图谱,功能基因组学和标记辅助的改良。结果利用来自六个核心重组自交系种群的高质量基因型数据,获得了598个简单序列重复序列(SSR)和多样性阵列技术?(DArT)锚定标记(在整个种群中常见)的共有框架图。 。来自14个图的独特标记的插值使我们能够在2,463?cM的共有图中定位总共2,575个标记。基于参考SSR六倍体小麦图谱,杜鹃T. A和B基因组几乎全部被覆盖。与单一成分图相比,共有基因座顺序显示出良好的对应性(平均Spearman等级相关性rhρ值为0.96)。在硬粒小麦和六倍体小麦共有图谱之间观察到标记顺序和局部重组率的差异。共有图谱用于对183个适合地中海地区的种质进行全基因组搜索,以寻找遗传分化特征和与抽穗期的关联。发现连锁不平衡平均在2.20cM内衰减到r 2 阈值?=?0.3以下。亚群之间的强分子分化被定位到87个染色体区域。在地中海盆地和墨西哥的27个田间试验的全基因组关联扫描中,研究了抽穗期,得出了50个染色体区域,这些证据表明在多个环境中具有关联。结论本文提供的共有图谱可作为杜伦麦草遗传多样性和作图分析的参考,可提供几乎完整的基因组覆盖甚至标记物密度。先前在六倍体小麦中作图的标记在两个物种之间构成了紧密的联系。共有图谱为硬质小麦中高密度单核苷酸多态性(SNP)标记的实现提供了基础。

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