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# Overview:
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# Overview:
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The core PhyloToL pipeline comprises two main components, which we refer to as PhyloToL part one and part two. PhyloToL part one takes input sequences from a whole genome or transcriptome assembly, applies several curation steps, and provides initial homology assessment against a customizable database of reference sequences to assign GFs. Part one outputs a fasta file of curated nucleotide and amino acid sequences with gene families assigned, as well as a dataset of descriptive statistics (e.g. length, coverage, and composition) for each input sample. PhyloToL part 2 is highly modular; for a given selection of taxa and GFs it stringently assesses homology by iterating the tool Guidance (Penn et al., 2010; Sela et al., 2015), which outputs an MSA for each gene family. From MSAs it builds gene trees, and then includes an innovative workflow for tree topology-based contamination removal.
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The core PhyloToL pipeline comprises two main components, which we refer to as PhyloToL part one and part two. PhyloToL part one takes input sequences from a whole genome or transcriptome assembly, applies several curation steps, and provides initial homology assessment against a customizable database of reference sequences to assign GFs. Part one outputs a fasta file of curated nucleotide and amino acid sequences with gene families assigned, as well as a dataset of descriptive statistics (e.g. length, coverage, and composition) for each input sample. PhyloToL part 2 is highly modular; for a given selection of taxa and GFs it stringently assesses homology by iterating the tool Guidance (Penn et al., 2010; Sela et al., 2015), which outputs an MSA for each gene family. From MSAs it builds gene trees, and then includes an innovative workflow for tree topology-based contamination removal.
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We also provide
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# Table of Contents
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# Table of Contents
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## PhyloToL Part I = determining gene families
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## PhyloToL Part I = determining gene families
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