
This class implements the F84 GTR-submodel.
The rate parameters are the following: Kappa. Package: Class F84
Object
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PSRoot
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Process
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GeneralSubstitution
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UNREST
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GTR
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F84
Directly known subclasses:
public static class F84 extends GTR
F84(name="Anonymous", rate.params=list(Kappa = 0), base.freqs=c(0.25, 0.25, 0.25, 0.25))
Object name.
Rate parameters.
Base frequency parameters.
Not used.
Methods:
checkConsistency |
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getBaseFreqs |
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getKappa |
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getRateParam |
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getRateParamList |
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setBaseFreqs |
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setKappa |
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setRateParam |
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setRateParamList |
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summary |
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Methods inherited from GTR: checkConsistency, getBaseFreqs, getRateParam, getRateParamList, setBaseFreqs, setRateParam, setRateParamList, summary
Methods inherited from UNREST: checkConsistency, summary
Methods inherited from GeneralSubstitution: as.character, checkConsistency, clone, getAlphabet, getEquDist, getEventRate, getEventRateAtSite, getEventsAtSite, getQMatrix, getRate, getRateList, hasUndefinedRate, is, plot, rescaleQMatrix, sampleState, setAlphabet, setEquDist, setQMatrix, setRate, setRateList, summary
Methods inherited from Process: !=, ==, as.character, checkConsistency, clone, getAlphabet, getEventsAtSite, getId, getName, getParameterAtSite, getSiteSpecificParamIds, getSiteSpecificParamList, getWriteProtected, hasSiteSpecificParameter, hasUndefinedRate, is, setAlphabet, setId, setName, setParameterAtSite, setSiteSpecificParamIds, setSiteSpecificParamList, setWriteProtected, summary
Methods inherited from PSRoot: checkConsistency, enableVirtual, getComments, getMethodsList, globalConsistencyCheck, intersect.list, is, is.na, ll, my.all.equal, plot, setComments, setMethodsList, summary, virtualAssignmentForbidden
Methods inherited from Object: $, $<-, [[, [[<-, as.character, attach, attachLocally, clearCache, clearLookupCache, clone, detach, equals, extend, finalize, getEnvironment, getFieldModifier, getFieldModifiers, getFields, getInstantiationTime, getStaticInstance, hasField, hashCode, ll, load, names, objectSize, print, save
GTR UNREST GeneralSubstitution HKY
# NOT RUN {
# create substitution process object
p<-F84(rate.params=list( "Kappa"=2), base.freqs=c(1,2,3,4))
# get a summary
summary(p)
# display a bubble plot
plot(p)
# The following code demonstrates how to use
# the process in a simulation.
# create a sequence, attach process p
s<-NucleotideSequence(length=20,processes=list(list(p)))
# sample states
sampleStates(s)
# make the first five positions invariable
setRateMultipliers(s,p,0,1:5)
# get rate multipliers
getRateMultipliers(s,p)
# create a simulation object
sim<-PhyloSim(root.seq=s,phylo=rcoal(2))
# run simulation
Simulate(sim)
# print alignment
sim$alignment
# }
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