Munroe D J, Haas M, Bric E, Whitton T, Aburatani H, Hunter K, Ward D, Housman D E
Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.
Genomics. 1994 Feb;19(3):506-14. doi: 10.1006/geno.1994.1100.
A significant issue in the analysis of any genomic DNA segment is the generation of a unique set of short single-copy sequences that are representative of that region. In this report we describe a novel technique, IRE-bubble PCR, which was designed to amplify the human DNA content of somatic cell hybrids, YACs, cosmids, and lambda phage and result in greater complexity and representation than standard inter-IRE PCR. Here we demonstrate that IRE-bubble PCR is species specific and that it results in the generation of a product that is at least 10-fold more complex and representative than that produced by standard inter-IRE PCR. In addition, we have addressed the factors that contribute to the representation of the IRE-bubble PCR product and show how they may be used to further increase the complexity of this reaction. Finally, we have illustrated how the complexity and distribution of products generated by IRE-bubble PCR can be exploited and applied to FISH mapping and "chromosome painting" as well as to the generation of STSs targeted to specific chromosomal or subchromosomal regions.
分析任何基因组DNA片段时的一个重要问题是生成一组独特的短单拷贝序列,这些序列代表该区域。在本报告中,我们描述了一种新技术,即IRE-气泡PCR,其设计目的是扩增体细胞杂种、酵母人工染色体(YAC)、黏粒和λ噬菌体中的人类DNA含量,并且比标准的IRE间PCR产生更高的复杂度和代表性。在这里,我们证明IRE-气泡PCR具有物种特异性,并且它产生的产物比标准IRE间PCR产生的产物至少复杂10倍且更具代表性。此外,我们探讨了有助于IRE-气泡PCR产物代表性的因素,并展示了如何利用这些因素进一步提高该反应的复杂度。最后,我们举例说明了如何利用IRE-气泡PCR产生的产物的复杂度和分布,并将其应用于荧光原位杂交(FISH)图谱绘制和“染色体描绘”,以及生成针对特定染色体或亚染色体区域的序列标签位点(STS)。