English

New reduction rules for the tree bisection and reconnection distance

Data Structures and Algorithms 2021-04-13 v2 Populations and Evolution

Abstract

Recently it was shown that, if the subtree and chain reduction rules have been applied exhaustively to two unrooted phylogenetic trees, the reduced trees will have at most 15k-9 taxa where k is the TBR (Tree Bisection and Reconnection) distance between the two trees, and that this bound is tight. Here we propose five new reduction rules and show that these further reduce the bound to 11k-9. The new rules combine the ``unrooted generator'' approach introduced in [Kelk and Linz 2018] with a careful analysis of agreement forests to identify (i) situations when chains of length 3 can be further shortened without reducing the TBR distance, and (ii) situations when small subtrees can be identified whose deletion is guaranteed to reduce the TBR distance by 1. To the best of our knowledge these are the first reduction rules that strictly enhance the reductive power of the subtree and chain reduction rules.

Keywords

Cite

@article{arxiv.1905.01468,
  title  = {New reduction rules for the tree bisection and reconnection distance},
  author = {Steven Kelk and Simone Linz},
  journal= {arXiv preprint arXiv:1905.01468},
  year   = {2021}
}

Comments

Accepted for journal publication. This version contains extra figures. Keywords: fixed-parameter tractability, tree bisection and reconnection, generator, kernelization, agreement forest, phylogenetic network, phylogenetic tree, hybridization number

R2 v1 2026-06-23T08:56:55.687Z