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alignments of nucleotide or amino acid sequences. It provides a wide range of options that were designed to facilitate standard phylogenetic analyses. The main strengths of PhyML lies in the large number of substitution models coupled to various options to search the space of phylogenetic tree topologies, going from very fast and efficient methods to slower but generally more accurate approaches. It also implements two methods to evaluate branch supports in a sound statistical framework (the non-parametric bootstrap and the approximate likelihood ratio test). PhyML was designed to process moderate to large data sets. In theory, alignments with up to 4,000 sequences 2,000,000 character-long can analyzed. In practice however, the amount of memory required to process a data set is proportional of the product of the number of sequences by their length. Hence, a large number of sequences can only be processed provided that they are short. Also, PhyML can handle long sequences provided that they are not numerous. With most standard personal computers, the "comfort zone" for PhyML generally lies around 3 to 500 sequences less than 2,000 character long. WWW: http://code.google.com/p/phyml/ PR: 136877 Submitted by: Ben Allen <ben@sysadminschronicles.com>
19 lines
1.2 KiB
Plaintext
19 lines
1.2 KiB
Plaintext
PhyML is a software that estimates maximum likelihood phylogenies from
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alignments of nucleotide or amino acid sequences. It provides a wide range of
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options that were designed to facilitate standard phylogenetic analyses. The
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main strengths of PhyML lies in the large number of substitution models coupled
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to various options to search the space of phylogenetic tree topologies, going
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from very fast and efficient methods to slower but generally more accurate
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approaches. It also implements two methods to evaluate branch supports in a
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sound statistical framework (the non-parametric bootstrap and the approximate
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likelihood ratio test). PhyML was designed to process moderate to large data
|
|
sets. In theory, alignments with up to 4,000 sequences 2,000,000 character-long
|
|
can analyzed. In practice however, the amount of memory required to process a
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data set is proportional of the product of the number of sequences by their
|
|
length. Hence, a large number of sequences can only be processed provided that
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they are short. Also, PhyML can handle long sequences provided that they are
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not numerous. With most standard personal computers, the "comfort zone" for
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PhyML generally lies around 3 to 500 sequences less than 2,000 character long.
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WWW: http://code.google.com/p/phyml/
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