Plant Genome. 2017 Jul;10(2). doi: 10.3835/plantgenome2017.03.0021.
Bread wheat ( L.) is one of the most important crops worldwide. Although a reference genome sequence would represent a valuable resource for wheat improvement through genomics-assisted breeding and gene cloning, its generation has long been hampered by its allohexaploidy, high repeat content, and large size. As a part of a project coordinated by the International Wheat Genome Sequencing Consortium (IWGSC), a physical map of the short arm of wheat chromosome 3D (3DS) was prepared to facilitate reference genome assembly and positional gene cloning. It comprises 869 contigs with a cumulative length of 274.5 Mbp and represents 85.5% of the estimated chromosome arm size. Eighty-six Mbp of survey sequences from chromosome arm 3DS were assigned in silico to physical map contigs via next-generation sequencing of bacterial artificial chromosome pools, thus providing a high-density framework for physical map ordering along the chromosome arm. About 60% of the physical map was anchored in this single experiment. Finally, 1393 high-confidence genes were anchored to the physical map. Comparisons of gene space of the chromosome arm 3DS with genomes of closely related species [ (L.) P.Beauv., rice ( L.), and sorghum [ (L.) Moench] and homeologous wheat chromosomes provided information about gene movement on the chromosome arm.
面包小麦( L.)是世界上最重要的作物之一。尽管参考基因组序列将通过基因组辅助育种和基因克隆代表小麦改良的宝贵资源,但由于其异源六倍体、高重复含量和大尺寸,其生成长期以来一直受到阻碍。作为国际小麦基因组测序联盟(IWGSC)协调的项目的一部分,小麦染色体 3D(3DS)短臂的物理图谱被制备,以促进参考基因组组装和定位基因克隆。它由 869 个重叠群组成,总长度为 274.5 Mbp,代表估计染色体臂大小的 85.5%。通过细菌人工染色体池的下一代测序,将来自染色体臂 3DS 的 86 Mbp 调查序列在计算机上分配给物理图谱重叠群,从而为染色体臂上的物理图谱排序提供了高密度框架。大约 60%的物理图谱在这一个实验中被锚定。最后,将 1393 个高可信度基因锚定到物理图谱上。与密切相关的物种( L.)、水稻( L.)和高粱( L.)的基因组相比,3DS 染色体臂的基因空间比较为染色体臂上的基因移动提供了信息。