首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >FluoMEP: a new genotyping method combining the advantages of randomly amplified polymorphic DNA and amplified fragment length polymorphism.
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FluoMEP: a new genotyping method combining the advantages of randomly amplified polymorphic DNA and amplified fragment length polymorphism.

机译:FluoMEP:一种新的基因分型方法,结合了随机扩增的多态性DNA和扩增的片段长度多态性的优点。

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摘要

PCR-based identification of differences between two unknown genomes often requires complex manipulation of the templates prior to amplification and/or gel electrophoretic separation of a large number of samples with manual methods. Here, we describe a new genotyping method, called fluorescent motif enhanced polymorphism (fluoMEP). The fluoMEP method is based on random amplified polymorphic DNA (RAPD) assay, but combines the advantages of the large collection of unlabelled 10mer primers (ca. 5000) from commercial sources and the power of the automated CE devices used for the detection of amplified fragment length polymorphism (AFLP) patterns. The link between these two components is provided by a fluorescently labeled "common primer" that is used in a two-primer PCR together with an unlabeled RAPD primer. By using the same "common primer" and a series of RAPD primers, DNA templates can be screened quickly and effectively for polymorphisms. Our manuscript describes the optimization of the method and its characterization on different templates. We demonstrate by using several different approaches that the addition of the "common primer" to the PCR changes the profile of amplified fragments, allowing for screening various parts of the genome with the same set of unlabeled primers. We also present an in silico analysis of the genomic localization of fragments amplified by a RAPD primer with two different "common primers" and alone.
机译:基于PCR的两个未知基因组之间差异的鉴定通常需要对模板进行复杂的操作,然后再使用手动方法对大量样品进行扩增和/或凝胶电泳分离。在这里,我们描述了一种新的基因分型方法,称为荧光基序增强多态性(fluoMEP)。 fluoMEP方法基于随机扩增多态性DNA(RAPD)分析,但结合了从商业来源大量收集未标记的10mer引物(约5000个)的优点以及用于检测扩增片段的自动CE设备的功能长度多态性(AFLP)模式。这两个组件之间的联系是由荧光标记的“通用引物”提供的,该引物与未标记的RAPD引物一起用于双引物PCR。通过使用相同的“通用引物”和一系列RAPD引物,可以快速有效地筛选DNA模板的多态性。我们的手稿描述了该方法的优化及其在不同模板上的表征。我们通过使用几种不同的方法证明,在PCR上添加“通用引物”可以改变扩增片段的轮廓,从而可以用同一组未标记的引物筛选基因组的各个部分。我们还提出了通过RAPD引物与两个不同的“通用引物”一起单独扩增的片段的基因组定位的计算机分析。

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