Most Compact Parsimonious Trees

March 10, 2016 Β· Declared Dead Β· πŸ› arXiv.org

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Authors Dimitris Papamichail, Angela Huang, Andrew Miller, Edward Kennedy, Jan-Lucas Ott, Georgios Papamichail arXiv ID 1603.03315 Category cs.DS: Data Structures & Algorithms Citations 0 Venue arXiv.org Last Checked 5 months ago
Abstract
Construction of phylogenetic trees has traditionally focused on binary trees where all species appear on leaves, a problem for which numerous efficient solutions have been developed. Certain application domains though, such as viral evolution and transmission, paleontology, linguistics, and phylogenetic stemmatics, often require phylogeny inference that involves placing input species on ancestral tree nodes (live phylogeny), and polytomies. These requirements, despite their prevalence, lead to computationally harder algorithmic solutions and have been sparsely examined in the literature to date. In this article we prove some unique properties of most parsimonious live phylogenetic trees with polytomies, and describe novel algorithms to find the such trees without resorting to exhaustive enumeration of all possible tree topologies.
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