Bounds for phylogenetic network space metrics
Andrew Francis, Katharina Huber, Vincent Moulton, Taoyang Wu

TL;DR
This paper establishes bounds for metrics on unrooted phylogenetic network spaces, generalizing tree metrics, and introduces new metrics with potential applications in network search algorithms.
Contribution
It derives bounds for existing network metrics and introduces new SPR and TBR metrics for phylogenetic networks, extending tree metric concepts.
Findings
Derived bounds for the network metric d.
Introduced and bounded new SPR and TBR metrics.
Generalized NNI-metric to phylogenetic networks.
Abstract
Phylogenetic networks are a generalization of phylogenetic trees that allow for representation of reticulate evolution. Recently, a space of unrooted phylogenetic networks was introduced, where such a network is a connected graph in which every vertex has degree 1 or 3 and whose leaf-set is a fixed set of taxa. This space, denoted , is defined in terms of two operations on networks -- the nearest neighbor interchange and triangle operations -- which can be used to transform any network with leaf set into any other network with that leaf set. In particular, it gives rise to a metric on which is given by the smallest number of operations required to transform one network in into another in . The metric generalizes the well-known NNI-metric on phylogenetic trees which has been intensively studied in the literature.…
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Taxonomy
TopicsGenomics and Phylogenetic Studies · Genetic diversity and population structure · Alzheimer's disease research and treatments
