Fitch Graph Completion
June 12, 2023 Β· Declared Dead Β· π International Computing and Combinatorics Conference
"No code URL or promise found in abstract"
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Authors
Marc Hellmuth, Peter F. Stadler, Sandhya Thekkumpadan Puthiyaveedu
arXiv ID
2306.06878
Category
cs.DS: Data Structures & Algorithms
Cross-listed
cs.CC,
cs.DM,
math.CO
Citations
0
Venue
International Computing and Combinatorics Conference
Last Checked
5 months ago
Abstract
Horizontal gene transfer is an important contributor to evolution. According to Walter M.\ Fitch, two genes are xenologs if they are separated by at least one HGT. More formally, the directed Fitch graph has a set of genes is its vertices, and directed edges $(x,y)$ for all pairs of genes $x$ and $y$ for which $y$ has been horizontally transferred at least once since it diverged from the last common ancestor of $x$ and $y$. Subgraphs of Fitch graphs can be inferred by comparative sequence analysis. In many cases, however, only partial knowledge about the ``full'' Fitch graph can be obtained. Here, we characterize Fitch-satisfiable graphs that can be extended to a biologically feasible ``full'' Fitch graph and derive a simple polynomial-time recognition algorithm. We then proceed to showing that finding the Fitch graphs with total maximum (confidence) edge-weights is an NP-hard problem.
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