Scheetz T E, Raymond M R, Nishimura D Y, McClain A, Roberts C, Birkett C, Gardiner J, Zhang J, Butters N, Sun C, Kwitek-Black A, Jacob H, Casavant T L, Soares M B, Sheffield V C
Howard Hughes Medical Institute, University of Iowa, Iowa City, Iowa 52242, USA.
Genome Res. 2001 Mar;11(3):497-502. doi: 10.1101/gr.gr-1516r.
We have developed a high-density EST map of the rat, consisting of >11,000 ESTs. These ESTs were placed on a radiation hybrid framework map of genetic markers spanning all 20 rat autosomes, plus the X chromosome. The framework maps have a total size of approximately 12,400 cR, giving an average correspondence of 240 kb/cR. The frameworks are all LOD 3 chromosomal maps consisting of 775 radiation-hybrid-mapped genetic markers and ESTs. To date, we have generated radiation-hybrid-mapping data for >14,000 novel ESTs identified by our Rat Gene Discovery and Mapping Project (http://ratEST.uiowa.edu), from which we have placed >11,000 on our framework maps. To minimize mapping errors, ESTs were mapped in duplicate and consensus RH vectors produced for use in the placement procedure. This EST map was then used to construct high-density comparative maps between rat and human and rat and mouse. These maps will be a useful resource for positional cloning of genes for rat models of human diseases and in the creation and verification of a tiling set of map order for the upcoming rat-genome sequencing.
我们构建了一张大鼠的高密度EST图谱,包含超过11,000个EST。这些EST被定位到一个涵盖大鼠所有20条常染色体以及X染色体的遗传标记辐射杂种框架图谱上。框架图谱的总大小约为12,400 cR,平均对应关系为240 kb/cR。这些框架图谱均为LOD 3染色体图谱,由775个辐射杂种定位的遗传标记和EST组成。到目前为止,我们已经为通过大鼠基因发现与定位项目(http://ratEST.uiowa.edu)鉴定出的超过14,000个新EST生成了辐射杂种定位数据,其中我们已将超过11,000个定位到我们的框架图谱上。为了尽量减少定位错误,EST进行了重复定位,并生成了用于定位过程的一致性RH载体。然后,利用这张EST图谱构建大鼠与人类以及大鼠与小鼠之间的高密度比较图谱。这些图谱将成为定位克隆人类疾病大鼠模型相关基因以及为即将进行的大鼠基因组测序创建和验证一组平铺式图谱顺序的有用资源。