PhyKIT: A Multitool for Phylogenomics

JL Steenwyk, GI Martínez‐Redondo… - Current …, 2024 - Wiley Online Library
Current Protocols, 2024Wiley Online Library
Multiple sequence alignments and phylogenetic trees are rich in biological information and
are fundamental to research in biology. PhyKIT is a tool for processing and analyzing the
information content of multiple sequence alignments and phylogenetic trees. Here, we
describe how to use PhyKIT for diverse analyses, including (i) constructing a phylogenomic
supermatrix,(ii) detecting errors in orthology inference,(iii) quantifying biases in
phylogenomic data sets,(iv) identifying radiation events or lack of resolution using gene …
Abstract
Multiple sequence alignments and phylogenetic trees are rich in biological information and are fundamental to research in biology. PhyKIT is a tool for processing and analyzing the information content of multiple sequence alignments and phylogenetic trees. Here, we describe how to use PhyKIT for diverse analyses, including (i) constructing a phylogenomic supermatrix, (ii) detecting errors in orthology inference, (iii) quantifying biases in phylogenomic data sets, (iv) identifying radiation events or lack of resolution using gene support frequencies, and (v) conducting evolution‐based screens to facilitate gene function prediction. Several PhyKIT functions that streamline multiple sequence alignment and phylogenetic processing—such as renaming FASTA entries or tree tips—are also discussed. These protocols demonstrate how simple command‐line operations in the unified framework of PhyKIT facilitate diverse phylogenomic data analysis and processing, from supermatrix construction and diagnosis to gaining clues about gene function. © 2024 The Author(s). Current Protocols published by Wiley Periodicals LLC.
Basic Protocol 1: Installing PhyKIT and syntax for usage
Basic Protocol 2: Constructing a phylogenomic supermatrix
Basic Protocol 3: Detecting anomalies in orthology relationships
Basic Protocol 4: Quantifying biases in phylogenomic data matrices and related measures
Basic Protocol 5: Identifying polytomies
Basic Protocol 6: Assessing gene‐gene coevolution as a genetic screen
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