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首页> 外文期刊>Genome Biology >A high density physical map of chromosome 1BL supports evolutionary studies, map-based cloning and sequencing in wheat.
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A high density physical map of chromosome 1BL supports evolutionary studies, map-based cloning and sequencing in wheat.

机译:1BL染色体的高密度物理图谱支持小麦的进化研究,基于图谱的克隆和测序。

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Background: As for other major crops, achieving a complete wheat genome sequence is essential for the application of genomics to breeding new and improved varieties. To overcome the complexities of the large, highly repetitive and hexaploid wheat genome, the International Wheat Genome Sequencing Consortium established a chromosome-based strategy that was validated by the construction of the physical map of chromosome 3B. Here, we present improved strategies for the construction of highly integrated and ordered wheat physical maps, using chromosome 1BL as a template, and illustrate their potential for evolutionary studies and map-based cloning. Results: Using a combination of novel high throughput marker assays and an assembly program, we developed a high quality physical map representing 93% of wheat chromosome 1BL, anchored and ordered with 5,489 markers including 1,161 genes. Analysis of the gene space organization and evolution revealed that gene distribution and conservation along the chromosome results from the superimposition of the ancestral grass and recent wheat evolutionary patterns leading to a peak of synteny in the central part of the chromosome arm and an increased density of non collinear genes towards the telomere. With a density of about 11 markers per Mb, the 1BL physical map provides 916 markers, including 193 genes, for fine mapping the 40 QTLs mapped on this chromosome. Conclusions: Here, we demonstrate that high marker density physical maps can be developed in complex genomes such as wheat to accelerate map-based cloning, gain new insights into genome evolution, and provide a foundation for reference sequencing.
机译:背景:与其他主要农作物一样,获得完整的小麦基因组序列对于应用基因组学育种新品种和改良品种至关重要。为了克服大型,高度重复和六倍体小麦基因组的复杂性,国际小麦基因组测序联盟建立了一种基于染色体的策略,该策略已通过构建3B染色体的物理图谱得到了验证。在这里,我们以染色体1BL为模板,提出了构建高度整合和有序的小麦物理图谱的改进策略,并说明了它们在进化研究和基于图谱的克隆中的潜力。结果:结合新颖的高通量标记分析方法和装配程序,我们开发了代表93%小麦1BL染色体的高质量物理图谱,并与包括1,161个基因在内的5,489个标记进行了锚定和排序。对基因空间组织和进化的分析表明,沿染色体的基因分布和保守性是由祖先草的叠加和最近的小麦进化模式导致的,在染色体臂的中央部分出现了同调峰,而非染色体密度增加。共线基因朝向端粒。 1BL物理图的密度约为每Mb 11个标记,可提供916个标记(包括193个基因),以精细定位该染色体上定位的40个QTL。结论:在这里,我们证明了可以在小麦等复杂基因组中开发高标记密度的物理图谱,以加速基于图谱的克隆,获得对基因组进化的新见解,并为参考测序提供基础。

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