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通过二维DNA分型进行基因组扫描:利用重复DNA序列快速定位遗传性状。

Genome scanning by two-dimensional DNA typing: the use of repetitive DNA sequences for rapid mapping of genetic traits.

作者信息

Uitterlinden A G, Slagboom E P, Mullaart E, Meulenbelt I, Vijg J

机构信息

Department of Genetic Diagnostics Medscand Ingeny, Rijswijk, The Netherlands.

出版信息

Electrophoresis. 1991 Feb-Mar;12(2-3):119-34. doi: 10.1002/elps.1150120206.

Abstract

The existence of repetitive DNA sequences offers the possibility to assess the mammalian genome for individual variation in its entirety rather than at one or only a few sites. In order to fully explore the various sets of mammalian repeat sequences for this purpose, analytical tools are required which allow many if not all individual members of sets of repetitive elements to be resolved and identified in terms of location and allelic variation. We have applied and further developed an electrophoretic system, two-dimensional DNA typing, which may fulfill these requirements. The two-dimensional system combines separation of DNA fragments by size in a neutral gel, with separation by sequence composition in a denaturing gradient gel. By hybridization with minisatellite- and simple-sequence core probes and by inter-repeat polymerase chain reaction techniques, it is possible to obtain individual--and even chromosome-specific separation patterns that consist of hundreds of spots. Computerized image analysis and matching of such spot patterns allows the rapid assessment of multiple polymorphisms, spread over the genome, to monitor genetic variability in populations. When coupled to databases of polymorphic DNA markers with a known genomic location, two-dimensional DNA typing can greatly accelerate the mapping of genetic traits in humans, animals, and plants.

摘要

重复DNA序列的存在为全面评估哺乳动物基因组的个体差异提供了可能,而非仅在一个或少数几个位点进行评估。为了充分探索用于此目的的各种哺乳动物重复序列集,需要有分析工具,以便能够解析并识别重复元件集中的许多(即便不是全部)个体成员的位置和等位基因变异。我们应用并进一步开发了一种电泳系统——二维DNA分型,它可能满足这些要求。二维系统将在中性凝胶中按大小分离DNA片段与在变性梯度凝胶中按序列组成分离相结合。通过与小卫星和简单序列核心探针杂交以及重复序列间聚合酶链反应技术,有可能获得由数百个斑点组成的个体甚至染色体特异性分离模式。对这些斑点模式进行计算机图像分析和匹配,可以快速评估遍布基因组的多个多态性,以监测群体中的遗传变异性。当与具有已知基因组位置的多态性DNA标记数据库相结合时,二维DNA分型可以极大地加速人类、动物和植物遗传性状的定位。

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