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水稻-大麦共线性及其在大麦Rpg1区域饱和作图中的应用。

Rice-barley synteny and its application to saturation mapping of the barley Rpg1 region.

作者信息

Kilian A, Kudrna D A, Kleinhofs A, Yano M, Kurata N, Steffenson B, Sasaki T

机构信息

Department of Corp and Soil Sciences, Washington State University, Pullman 99164-6420, USA.

出版信息

Nucleic Acids Res. 1995 Jul 25;23(14):2729-33. doi: 10.1093/nar/23.14.2729.

Abstract

In order to facilitate the map-based cloning of the barley stem rust resistance gene Rpg1, we have demonstrated a high degree of synteny at a micro level between the telomeric region of barley chromosome 1P and rice chromosome 6. We have also developed and applied a simple and efficient method for selecting useful probes from large insert genomic YAC and cosmid clones. The gene order within the most terminal 6.5 cM of barley chromosome 1P was compared with the most terminal 2.7 cM of rice chromosome 6. Nine rice probes, previously mapped in rice or isolated from YAC or cosmid clones from this region, were mapped in barley. All, except one, were in synteny with the rice gene order. The exception, probe Y617R, was duplicated in barley. One copy was located on a different chromosome and the other in a non-syntenic position on barley chromosome 1P. The barley probes from this region could not be mapped to rice, but two of them were inferred to be in a syntenic location based on their position on a rice YAC. This work demonstrates the utility of applying the results of genetic and physical mapping of the small genome cereal rice to map-based cloning of interesting genes from large genome relatives.

摘要

为了促进基于图谱的大麦秆锈病抗性基因Rpg1的克隆,我们已经证明了大麦1P染色体端粒区域与水稻6号染色体在微观水平上具有高度的共线性。我们还开发并应用了一种简单有效的方法,从大型插入基因组酵母人工染色体(YAC)和黏粒克隆中筛选有用的探针。将大麦1P染色体最末端6.5厘摩(cM)范围内的基因顺序与水稻6号染色体最末端2.7厘摩范围内的基因顺序进行了比较。九个先前已在水稻中定位或从该区域的YAC或黏粒克隆中分离出的水稻探针,在大麦中进行了定位。除一个探针外,所有探针都与水稻基因顺序保持共线性。例外的探针Y617R在大麦中发生了重复。一个拷贝位于不同的染色体上,另一个位于大麦1P染色体上的非共线位置。来自该区域的大麦探针无法定位到水稻上,但基于它们在水稻YAC上的位置,推断其中两个处于共线位置。这项工作证明了将小基因组谷类作物水稻的遗传和物理图谱绘制结果应用于从大基因组亲缘物种中基于图谱克隆感兴趣基因的实用性。

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