te Meerman G J, Mullaart E, van der Meulen M A, den Daas J H, Morolli B, Uitterlinden A G, Vijg J
Department of Medical Genetics, University of Groningen, The Netherlands.
Am J Hum Genet. 1993 Dec;53(6):1289-97.
In two-dimensional (2-D) DNA typing, genomic DNA fragments are separated, first according to size by electrophoresis in a neutral polyacrylamide gel and second according to sequence by denaturing gradient gel electrophoresis, followed by hybridization analysis using micro- and minisatellite core probes. The 2-D DNA typing method generates a large amount of information on polymorphic loci per gel. Here we demonstrate the potential usefulness of 2-D DNA typing in an empirical linkage study on the red factor in cattle, and we show an example of the 2-D DNA typing analysis of a human pedigree. The power efficiency of 2-D DNA typing in general is compared with that of single-locus typing by simulation. The results indicate that, although 2-D DNA typing is very efficient in generating data on polymorphic loci, its power to detect linkage is lower than single-locus typing, because it is not obvious whether a spot represents the presence of one or two alleles. It is possible to compensate for this lower informativeness by increasing the sample size. Genome scanning by 2-D DNA typing has the potential to be more efficient than current genotyping methods in scoring polymorphic loci. Hence, it could become a method of choice in mapping genetic traits in humans and animals.
在二维(2-D)DNA分型中,基因组DNA片段首先在中性聚丙烯酰胺凝胶中通过电泳按大小分离,其次通过变性梯度凝胶电泳按序列分离,然后使用微卫星和小卫星核心探针进行杂交分析。二维DNA分型方法在每块凝胶上可产生大量关于多态性位点的信息。在此,我们展示了二维DNA分型在牛红色因子实证连锁研究中的潜在用途,并给出了一个人类家系的二维DNA分型分析示例。通过模拟将二维DNA分型的一般功效与单基因座分型的功效进行了比较。结果表明,尽管二维DNA分型在生成多态性位点数据方面非常高效,但其检测连锁的能力低于单基因座分型,因为一个斑点代表一个还是两个等位基因的存在并不明显。可以通过增加样本量来弥补这种较低的信息性。通过二维DNA分型进行基因组扫描在对多态性位点进行评分方面有可能比当前的基因分型方法更高效。因此,它可能成为人类和动物遗传性状定位的首选方法。