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Translating DNA data tables into quasi-median networks for parsimony analysis and error detection

机译:将DNA数据表转换为准中性网络以进行简约分析和错误检测

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Every DNA data table can be turned into a quasi-median network that faithfully represents the data. We show that for (weighted) condensed data tables the associated network harbors all most parsimonious reconstructions for any tree that connects the sampled haplotypes. Structural features of this network can be computed directly from the data table. The key principle repeatedly used is that the quasi-median network is uniquely determined by the sub-tables for pairs of characters. The translation of a table into a network enhances the understanding of the properties of the data in regard to homoplasy and potential artifacts. The total number of nodes of such a network measures the complexity of the data. In particular, networks that display the results of filter analyses by which hotspot mutations are removed help to detect data idiosyncrasies and thus pinpoint sequencing problems. A pertinent example drawn from human mtDNA illustrates these points. (c) 2006 Elsevier Inc. All rights reserved.
机译:每个DNA数据表都可以变成一个忠实地代表数据的准中间网络。我们表明,对于(加权)精简数据表,关联的网络包含所有连接采样单倍型的树的所有最简约重构。该网络的结构特征可以直接从数据表中计算出来。重复使用的关键原理是:准中性网络由字符对子表唯一确定。将表转换为网络可增强对同质性和潜在伪像的数据属性的理解。这种网络的节点总数衡量了数据的复杂性。特别是,显示过滤器分析结果的网络可消除热点突变,从而有助于检测数据的特质性,从而查明排序问题。从人类mtDNA提取的一个相关例子说明了这些观点。 (c)2006 Elsevier Inc.保留所有权利。

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