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小麦1D染色体的高分辨率辐射杂种图谱。

High-resolution radiation hybrid map of wheat chromosome 1D.

作者信息

Kalavacharla Venu, Hossain Khwaja, Gu Yong, Riera-Lizarazu Oscar, Vales M Isabel, Bhamidimarri Suresh, Gonzalez-Hernandez Jose L, Maan Shivcharan S, Kianian Shahryar F

机构信息

Department of Bioscience & Biotechnology, Drexel University, Philadelphia, Pennsylvania 19141, USA.

出版信息

Genetics. 2006 Jun;173(2):1089-99. doi: 10.1534/genetics.106.056481. Epub 2006 Apr 19.

Abstract

Physical mapping methods that do not rely on meiotic recombination are necessary for complex polyploid genomes such as wheat (Triticum aestivum L.). This need is due to the uneven distribution of recombination and significant variation in genetic to physical distance ratios. One method that has proven valuable in a number of nonplant and plant systems is radiation hybrid (RH) mapping. This work presents, for the first time, a high-resolution radiation hybrid map of wheat chromosome 1D (D genome) in a tetraploid durum wheat (T. turgidum L., AB genomes) background. An RH panel of 87 lines was used to map 378 molecular markers, which detected 2312 chromosome breaks. The total map distance ranged from approximately 3,341 cR(35,000) for five major linkage groups to 11,773 cR(35,000) for a comprehensive map. The mapping resolution was estimated to be approximately 199 kb/break and provided the starting point for BAC contig alignment. To date, this is the highest resolution that has been obtained by plant RH mapping and serves as a first step for the development of RH resources in wheat.

摘要

对于像小麦(普通小麦)这样的复杂多倍体基因组而言,不依赖减数分裂重组的物理作图方法是必要的。这种需求源于重组分布不均以及遗传距离与物理距离比率的显著变化。在许多非植物和植物系统中已证明有价值的一种方法是辐射杂种(RH)作图。这项工作首次展示了在四倍体硬粒小麦(圆锥小麦,AB基因组)背景下小麦1D染色体(D基因组)的高分辨率辐射杂种图谱。利用一个由87个株系组成的RH群体对378个分子标记进行作图,这些标记检测到2312个染色体断裂。总图距范围从五个主要连锁群的约3341厘雷姆(35000)到综合图谱的11773厘雷姆(35000)。作图分辨率估计约为199千碱基对/断裂,并为细菌人工染色体(BAC)重叠群比对提供了起点。迄今为止,这是通过植物RH作图获得的最高分辨率,并且是小麦RH资源开发的第一步。

相似文献

1
High-resolution radiation hybrid map of wheat chromosome 1D.小麦1D染色体的高分辨率辐射杂种图谱。
Genetics. 2006 Jun;173(2):1089-99. doi: 10.1534/genetics.106.056481. Epub 2006 Apr 19.

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