Reconciling Multiple Genes Trees via Segmental Duplications and Losses
Abstract
Reconciling gene trees with a species tree is a fundamental problem to understand the evolution of gene families. Many existing approaches reconcile each gene tree independently. However, it is well-known that the evolution of gene families is interconnected. In this paper, we extend a previous approach to reconcile a set of gene trees with a species tree based on segmental macro-evolutionary events, where segmental duplication events and losses are associated with cost and , respectively. We show that the problem is polynomial-time solvable when (via LCA-mapping), while if the problem is NP-hard, even when and a single gene tree is given, solving a long standing open problem on the complexity of the reconciliation problem. On the positive side, we give a fixed-parameter algorithm for the problem, where the parameters are and the number of segmental duplications, of time complexity . Finally, we demonstrate the usefulness of this algorithm on two previously studied real datasets: we first show that our method can be used to confirm or refute hypothetical segmental duplications on a set of 16 eukaryotes, then show how we can detect whole genome duplications in yeast genomes.
Keywords
Cite
@article{arxiv.1806.03988,
title = {Reconciling Multiple Genes Trees via Segmental Duplications and Losses},
author = {Riccardo Dondi and Manuel Lafond and Celine Scornavacca},
journal= {arXiv preprint arXiv:1806.03988},
year = {2018}
}
Comments
23 pages, 7 figures, WABI 2018