基于距离的平均情况线性时间系统发育推断

M. Crochemore, Alexandre P. Francisco, S. Pissis, Cátia Vaz
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引用次数: 4

摘要

计算一组分类群之间的遗传进化距离决定了许多系统发育推断方法的运行时间。大多数遗传进化距离定义依赖于(即使是间接地)计算序列或谱间的成对汉明距离。本文提出了一种平均情况线性时间算法,在给定的汉明距离阈值下计算一组分类群之间的两两汉明距离。本文包括对所提出算法的理论分析和广泛的实验结果。我们进一步展示了该算法如何成功地集成到一个众所周知的系统发育推断方法中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards Distance-Based Phylogenetic Inference in Average-Case Linear-Time
Computing genetic evolution distances among a set of taxa dominates the running time of many phylogenetic inference methods. Most of genetic evolution distance definitions rely, even if indirectly, on computing the pairwise Hamming distance among sequences or profiles. We propose here an average-case linear-time algorithm to compute pairwise Hamming distances among a set of taxa under a given Hamming distance threshold. This article includes both a theoretical analysis and extensive experimental results concerning the proposed algorithm. We further show how this algorithm can be successfully integrated into a well known phylogenetic inference method.
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