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ClonalFrameML: Efficient Inference of Recombination in Whole Bacterial Genomes
by
Wilson, Daniel J.
, Didelot, Xavier
in
Bacteria
/ Bacterial genetics
/ Biomedical research
/ Clostridioides difficile - classification
/ Clostridioides difficile - genetics
/ Computer Simulation
/ Databases, Genetic
/ Datasets
/ Evolution
/ Evolution, Molecular
/ Genetic diversity
/ Genetic recombination
/ Genetic research
/ Genome, Bacterial - genetics
/ Genomes
/ Genomics
/ Genomics - methods
/ Maximum likelihood method
/ Medical research
/ Mutation
/ Phylogenetics
/ Phylogeny
/ Recombination, Genetic - genetics
/ Sequence Analysis, DNA
/ Software
/ Staphylococcus aureus - classification
/ Staphylococcus aureus - genetics
/ Streptococcus infections
/ Trees
2015
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ClonalFrameML: Efficient Inference of Recombination in Whole Bacterial Genomes
by
Wilson, Daniel J.
, Didelot, Xavier
in
Bacteria
/ Bacterial genetics
/ Biomedical research
/ Clostridioides difficile - classification
/ Clostridioides difficile - genetics
/ Computer Simulation
/ Databases, Genetic
/ Datasets
/ Evolution
/ Evolution, Molecular
/ Genetic diversity
/ Genetic recombination
/ Genetic research
/ Genome, Bacterial - genetics
/ Genomes
/ Genomics
/ Genomics - methods
/ Maximum likelihood method
/ Medical research
/ Mutation
/ Phylogenetics
/ Phylogeny
/ Recombination, Genetic - genetics
/ Sequence Analysis, DNA
/ Software
/ Staphylococcus aureus - classification
/ Staphylococcus aureus - genetics
/ Streptococcus infections
/ Trees
2015
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
ClonalFrameML: Efficient Inference of Recombination in Whole Bacterial Genomes
by
Wilson, Daniel J.
, Didelot, Xavier
in
Bacteria
/ Bacterial genetics
/ Biomedical research
/ Clostridioides difficile - classification
/ Clostridioides difficile - genetics
/ Computer Simulation
/ Databases, Genetic
/ Datasets
/ Evolution
/ Evolution, Molecular
/ Genetic diversity
/ Genetic recombination
/ Genetic research
/ Genome, Bacterial - genetics
/ Genomes
/ Genomics
/ Genomics - methods
/ Maximum likelihood method
/ Medical research
/ Mutation
/ Phylogenetics
/ Phylogeny
/ Recombination, Genetic - genetics
/ Sequence Analysis, DNA
/ Software
/ Staphylococcus aureus - classification
/ Staphylococcus aureus - genetics
/ Streptococcus infections
/ Trees
2015
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ClonalFrameML: Efficient Inference of Recombination in Whole Bacterial Genomes
Journal Article
ClonalFrameML: Efficient Inference of Recombination in Whole Bacterial Genomes
2015
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Overview
Recombination is an important evolutionary force in bacteria, but it remains challenging to reconstruct the imports that occurred in the ancestry of a genomic sample. Here we present ClonalFrameML, which uses maximum likelihood inference to simultaneously detect recombination in bacterial genomes and account for it in phylogenetic reconstruction. ClonalFrameML can analyse hundreds of genomes in a matter of hours, and we demonstrate its usefulness on simulated and real datasets. We find evidence for recombination hotspots associated with mobile elements in Clostridium difficile ST6 and a previously undescribed 310kb chromosomal replacement in Staphylococcus aureus ST582. ClonalFrameML is freely available at http://clonalframeml.googlecode.com/.
Publisher
Public Library of Science,Public Library of Science (PLoS)
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