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Drawing Tree-Based Phylogenetic Networks with Minimum Number of Crossings

Discrete Mathematics 2020-08-21 v1 Combinatorics

Abstract

In phylogenetics, tree-based networks are used to model and visualize the evolutionary history of species where reticulate events such as horizontal gene transfer have occurred. Formally, a tree-based network NN consists of a phylogenetic tree TT (a rooted, binary, leaf-labeled tree) and so-called reticulation edges that span between edges of TT. The network NN is typically visualized by drawing TT downward and planar and reticulation edges with one of several different styles. One aesthetic criteria is to minimize the number of crossings between tree edges and reticulation edges. This optimization problem has not yet been researched. We show that, if reticulation edges are drawn x-monotone, the problem is NP-complete, but fixed-parameter tractable in the number of reticulation edges. If, on the other hand, reticulation edges are drawn like "ears", the crossing minimization problem can be solved in quadratic time.

Keywords

Cite

@article{arxiv.2008.08960,
  title  = {Drawing Tree-Based Phylogenetic Networks with Minimum Number of Crossings},
  author = {Jonathan Klawitter and Peter Stumpf},
  journal= {arXiv preprint arXiv:2008.08960},
  year   = {2020}
}

Comments

Appears in the Proceedings of the 28th International Symposium on Graph Drawing and Network Visualization (GD 2020)