Reconstructing Tree-Child Networks from Reticulate-Edge-Deleted Subnetworks
Abstract
Network reconstruction lies at the heart of phylogenetic research. Two well studied classes of phylogenetic networks include tree-child networks and level- networks. In a tree-child network, every non-leaf node has a child that is a tree node or a leaf. In a level- network, the maximum number of reticulations contained in a biconnected component is . Here, we show that level- tree-child networks are encoded by their reticulate-edge-deleted subnetworks, which are subnetworks obtained by deleting a single reticulation edge, if . Following this, we provide a polynomial-time algorithm for uniquely reconstructing such networks from their reticulate-edge-deleted subnetworks. Moreover, we show that this can even be done when considering subnetworks obtained by deleting one reticulation edge from each biconnected component with reticulations.
Keywords
Cite
@article{arxiv.1811.06777,
title = {Reconstructing Tree-Child Networks from Reticulate-Edge-Deleted Subnetworks},
author = {Yukihiro Murakami and Leo van Iersel and Remie Janssen and Mark Jones and Vincent Moulton},
journal= {arXiv preprint arXiv:1811.06777},
year = {2019}
}
Comments
30 pages, 19 figures