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A high-resolution physical map integrating an anchored chromosome with the BAC physical maps of wheat chromosome 6B

机译:结合锚定染色体和小麦6B染色体BAC物理图的高分辨率物理图

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A complete genome sequence is an essential tool for the genetic improvement of wheat. Because the wheat genome is large, highly repetitive and complex due to its allohexaploid nature, the International Wheat Genome Sequencing Consortium (IWGSC) chose a strategy that involves constructing bacterial artificial chromosome (BAC)-based physical maps of individual chromosomes and performing BAC-by-BAC sequencing. Here, we report the construction of a physical map of chromosome 6B with the goal of revealing the structural features of the third largest chromosome in wheat. We assembled 689 informative BAC contigs (hereafter reffered to as contigs) representing 91?% of the entire physical length of wheat chromosome 6B. The contigs were integrated into a radiation hybrid (RH) map of chromosome 6B, with one linkage group consisting of 448 loci with 653 markers. The order and direction of 480 contigs, corresponding to 87?% of the total length of 6B, were determined. We also characterized the contigs that contained a part of the nucleolus organizer region or centromere based on their positions on the RH map and the assembled BAC clone sequences. Analysis of the virtual gene order along 6B using the information collected for the integrated map revealed the presence of several chromosomal rearrangements, indicating evolutionary events that occurred on chromosome 6B. We constructed a reliable physical map of chromosome 6B, enabling us to analyze its genomic structure and evolutionary progression. More importantly, the physical map should provide a high-quality and map-based reference sequence that will serve as a resource for wheat chromosome 6B.
机译:完整的基因组序列是小麦遗传改良的重要工具。由于小麦基因组的异源六倍体性质,其基因组庞大,高度重复且复杂,因此国际小麦基因组测序协会(IWGSC)选择了一种策略,该策略涉及构建基于细菌人工染色体(BAC)的单个染色体物理图谱并进行BAC-by -BAC测序。在这里,我们报告了6B号染色体的物理图谱的构建,目的是揭示小麦第三大染色体的结构特征。我们组装了689条信息丰富的BAC重叠群(以下简称为重叠群),占小麦6B染色体全长的91%。重叠群被整合到6B号染色体的辐射杂交(RH)图中,其中一个连锁组由448个基因座和653个标记组成。确定了480个重叠群的顺序和方向,相当于6B总长度的87%。我们还基于其在RH图谱上的位置和组装的BAC克隆序列对包含重叠部分的核仁组织区或着丝粒进行了鉴定。使用为整合图谱收集的信息对沿着6B的虚拟基因顺序进行的分析显示,存在几种染色体重排,表明发生在6B号染色体上的进化事件。我们构建了可靠的6B号染色体物理图谱,使我们能够分析6B号染色体的基因组结构和进化进程。更重要的是,物理图谱应提供基于图谱的高质量参考序列,该序列将作为小麦6B染色体的资源。

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