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Orienting undirected phylogenetic networks

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arxiv 1906.07430 v4 pith:K3ZC2JAZ submitted 2019-06-18 cs.DS math.COq-bio.PE

classification cs.DSmath.COq-bio.PE
keywords phylogeneticdirectednetworknetworksundirectedalgorithmbinarynonbinary
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abstract

This paper studies the relationship between undirected (unrooted) and directed (rooted) phylogenetic networks. We describe a polynomial-time algorithm for deciding whether an undirected nonbinary phylogenetic network, given the locations of the root and reticulation vertices, can be oriented as a directed nonbinary phylogenetic network. Moreover, we characterize when this is possible and show that, in such instances, the resulting directed nonbinary phylogenetic network is unique. In addition, without being given the location of the root and the reticulation vertices, we describe an algorithm for deciding whether an undirected binary phylogenetic network $N$ can be oriented as a directed binary phylogenetic network of a certain class. The algorithm is fixed-parameter tractable (FPT) when the parameter is the level of $N$ and is applicable to classes of directed phylogenetic networks that satisfy certain conditions. As an example, we show that the well-studied class of binary tree-child networks satisfies these conditions.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The agreement distance of unrooted phylogenetic networks

    math.CO 2019-08 conditional novelty 6.0 of 10

    For unrooted phylogenetic networks, the new agreement and endpoint agreement distances are metrics that bound the TBR-distance by a factor of two and the PR-distance by a factor of three.

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