Scinovex
article Open Access

Detection of nonneutral substitution rates on mammalian phylogenies

Genome Research · 2009 · Vol. 20(1) · pp. 110–121
Katherine S. PollardMelissa J. HubiszKate R. RosenbloomAdam Siepel

Abstract

Methods for detecting nucleotide substitution rates that are faster or slower than expected under neutral drift are widely used to identify candidate functional elements in genomic sequences. However, most existing methods consider either reductions (conservation) or increases (acceleration) in rate but not both, or assume that selection acts uniformly across the branches of a phylogeny. Here we examine the more general problem of detecting departures from the neutral rate of substitution in either direction, possibly in a clade-specific manner. We consider four statistical, phylogenetic tests for addressing this problem: a likelihood ratio test, a score test, a test based on exact distributions of numbers of substitutions, and the genomic evolutionary rate profiling (GERP) test. All four tests have been implemented in a freely available program called phyloP. Based on extensive simulation experiments, these tests are remarkably similar in statistical power. With 36 mammalian species, they all appear to be capable of fairly good sensitivity with low false-positive rates in detecting strong selection at individual nucleotides, moderate selection in 3-bp elements, and weaker or clade-specific selection in longer elements. By applying phyloP to mammalian multiple alignments from the ENCODE project, we shed light on patterns of conservation/acceleration in known and predicted functional elements, approximate fractions of sites subject to constraint, and differences in clade-specific selection in the primate and glires clades. We also describe new "Conservation" tracks in the UCSC Genome Browser that display both phyloP and phastCons scores for genome-wide alignments of 44 vertebrate species.

Genomics and Phylogenetic StudiesChromosomal and Genetic VariationsRNA and protein synthesis mechanismsBiologyCladePhylogenetic treeGenomeEvolutionary biologySelection (genetic algorithm)Negative selectionFalse discovery rateENCODEPhylogenetics

MeSH terms

AnimalsBase SequenceComputer SimulationHumansMammalsModels, GeneticPhylogenyPrimatesSelection, GeneticSoftwareSpecies SpecificityModels, StatisticalLikelihood FunctionsSequence AlignmentConserved Sequence

Funding

  • National Science Foundation
  • David and Lucile Packard Foundation
  • Alfred P. Sloan Foundation
  • National Institute of General Medical Sciences
Citations
2,503
FWCI
field-weighted impact
References
66
Percentile
vs. same field & year
Citations per year
References
Controlling the False Discovery Rate: A Practical and Powerful Approach to Multiple Testing
Journal of the Royal Statistical Society Series B (Statistical Methodology) · 1995 · 106,483 citations
Patterns of Positive Selection in Six Mammalian Genomes
PLoS Genetics · 2008 · 618 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.