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Evaluating intraspecific Network construction methods using simulated sequence data: do existing algorithms outperform the global maximum parsimony approach ?

机译:使用模拟序列数据评估种内网络构建方法:现有算法是否优于全局最大简约方法?

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摘要

In intraspecific studies, reticulated graphs are valuable tools for visualization, within a single figure, of alternative genealogical pathways among haplotypes. As available software packages implementing the global maximum parsimony (MP) approach only give the possibility to merge resulting topologies into less-resolved consensus trees, MP has often been neglected as an alternative approach to purely algorithmic (i.e. methods defined solely on the basis of an algorithm) "network" construction methods. Here, we propose to search tree space using the MP criterion and present a new algorithm for uniting all equally most parsimonious trees into a single (possibly reticulated) graph. Using simulated sequence data, we compare our method with three purely algorithmic and widely used graph construction approaches (minimum-spanning network, statistical parsimony, and median-joining network). We demonstrate that the combination of MP trees into a single graph provides a good estimate of the true genealogy. Moreover, our analyses indicate that, when internal node haplotypes are not sampled, the median-joining and MP methods provide the best estimate of the true genealogy whereas the minimum-spanning algorithm shows very poor performances.
机译:在种内研究中,网状图是在单个图中可视化单倍型间替代谱系途径的有价值的工具。由于实现全局最大简约(MP)方法的可用软件包仅提供了将结果拓扑合并到解析度较低的共识树中的可能性,因此MP通常被忽略为纯算法的另一种方法(即,仅基于算法定义的方法)。算法)“网络”构造方法。在这里,我们建议使用MP准则搜索树空间,并提出一种将所有同等简约树合并为单个(可能是网状)图的新算法。使用模拟的序列数据,我们将我们的方法与三种纯算法和广泛使用的图构造方法(最小跨度网络,统计简约性和中值联接网络)进行了比较。我们证明了MP树合并到单个图中可以很好地估计真实家谱。此外,我们的分析表明,当不采样内部节点单倍型时,中值连接和MP方法可提供对真实家谱的最佳估计,而最小跨度算法则显示出非常差的性能。

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