Siracusa L D, Jenkins N A, Copeland N G
NCI-Frederick Cancer Research and Development Center, Mammalian Genetics Laboratory, Maryland 21702.
Genetics. 1991 Jan;127(1):169-79. doi: 10.1093/genetics/127.1.169.
Interspecific mouse hybrids that are viable and fertile provide a wealth of genetic variation that is useful for gene mapping. We are using this genetic variation to develop multilocus linkage maps of the mouse genome. As an outgrowth of this work, we have identified three repetitive probes that collectively identify 28 loci dispersed on 16 of the 19 mouse autosomes and the X chromosome. These loci establish a skeleton linkage map that can be used to detect linkage over much of the mouse genome. The molecular probes are derived from the mouse mammary tumor virus envelope gene, the ornithine decarboxylase gene, and the triose phosphate isomerase gene. The ability to scan the mouse genome quickly and efficiently in an interspecific cross using these three repetitive probes makes this system a powerful tool for identifying the chromosomal location of mutations that have yet to be cloned, mapping multigenic traits, and identifying recessive protooncogene loci associated with murine neoplastic disease. Ultimately, interspecific hybrids in conjunction with repetitive and single-copy probes will provide a rapid means to access virtually any gene of interest in the mouse genome at the molecular level.
具有生存能力且可育的种间小鼠杂交种提供了丰富的遗传变异,这对于基因定位很有用。我们正在利用这种遗传变异来构建小鼠基因组的多位点连锁图谱。作为这项工作的成果,我们鉴定出了三种重复探针,它们共同鉴定出28个位点,这些位点分散在19条小鼠常染色体中的16条以及X染色体上。这些位点构建了一个骨架连锁图谱,可用于检测小鼠基因组大部分区域的连锁情况。这些分子探针源自小鼠乳腺肿瘤病毒包膜基因、鸟氨酸脱羧酶基因和磷酸丙糖异构酶基因。利用这三种重复探针在种间杂交中快速有效地扫描小鼠基因组的能力,使该系统成为一种强大的工具,可用于鉴定尚未克隆的突变的染色体位置、定位多基因性状以及鉴定与鼠类肿瘤疾病相关的隐性原癌基因位点。最终,种间杂交种与重复探针和单拷贝探针相结合,将提供一种快速手段,在分子水平上获取小鼠基因组中几乎任何感兴趣的基因。