Scinovex
articleTop 10% cited

Estimating Gene Gain and Loss Rates in the Presence of Error in Genome Assembly and Annotation Using CAFE 3

Molecular Biology and Evolution · 2013 · Vol. 30(8) · pp. 1987–1997
Mira HanGregg W.C. ThomasJose Lugo-MartinezMatthew W. Hahn

Abstract

Current sequencing methods produce large amounts of data, but genome assemblies constructed from these data are often fragmented and incomplete. Incomplete and error-filled assemblies result in many annotation errors, especially in the number of genes present in a genome. This means that methods attempting to estimate rates of gene duplication and loss often will be misled by such errors and that rates of gene family evolution will be consistently overestimated. Here, we present a method that takes these errors into account, allowing one to accurately infer rates of gene gain and loss among genomes even with low assembly and annotation quality. The method is implemented in the newest version of the software package CAFE, along with several other novel features. We demonstrate the accuracy of the method with extensive simulations and reanalyze several previously published data sets. Our results show that errors in genome annotation do lead to higher inferred rates of gene gain and loss but that CAFE 3 sufficiently accounts for these errors to provide accurate estimates of important evolutionary parameters.

Genomics and Phylogenetic StudiesChromosomal and Genetic VariationsGenome Rearrangement AlgorithmsAnnotationGenomeBiologyGene AnnotationGene duplicationGeneComputational biologyGene familyWord error rateData mining

MeSH terms

AlgorithmsSoftwareReproducibility of ResultsGenomeSequence Analysis, DNAEvolution, MolecularComputational BiologyGenomicsMolecular Sequence Annotation
Citations
886
FWCI
7.77
field-weighted impact
References
44
Percentile
98%
vs. same field & year
Citations per year
Citation Network

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

Estimating Gene Gain and Loss Rates in the Presence of Error in Genome Assembly and Annotation Using CAFE 3 · Scinovex