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FastTree is more accurate than PhyML 3 with default settings, and much more accurate than the distance-matrix methods that are traditionally used for large alignments. FastTree uses the Jukes-Cantor or generalized time-reversible (GTR) models of nucleotide evolution and the JTT (Jones-Taylor-Thornton 1992) model of amino acid evolution. To account for the varying rates of evolution across sites, FastTree uses a single rate for each site (the "CAT" approximation). To quickly estimate the reliability of each split in the tree, FastTree computes local support values with the Shimodaira-Hasegawa test (these are the same as PhyML 3's "SH-like local supports").
Description
FastTree er mere præcis end PhyML 3 med standardindstillinger, og meget mere præcis end afstands-matrix metoder, der traditionelt anvendes til store justeringer. FastTree bruger Jukes-Cantor eller generaliseret[nbsp] tid-reversible (GTR) modeller af nukleotid-evolution og JTT (Jones- Taylor-Thornton 1992) modelaminosyreevolution. For at tage højde for de varierende satser evolution på tværs af steder, bruger FastTree en enkelt sats for hvert sted (»CAT«-tilnærmelsen). Hvis du hurtigt vil estimere pålideligheden af hver splittelse i træet, FastTree beregner lokal støtteværdier med Shimodaira-Hasegawa-test (disse er de samme som PhyML 3s »SH-lignende lokale understøtninger«).
Translated by Michael Vogt
Located in Package: fasttree
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This translation is managed by De danske oversættere af Ubuntu, assigned by Ubuntu Translators.

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