Codon Usage Bias in Animals: Disentangling the Effects of Natural Selection, Effective Population Size, and GC-Biased Gene Conversion.

Details

Serval ID
serval:BIB_B980B2DC1F15
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Codon Usage Bias in Animals: Disentangling the Effects of Natural Selection, Effective Population Size, and GC-Biased Gene Conversion.
Journal
Molecular Biology and Evolution
Author(s)
Galtier N., Roux C., Rousselle M., Romiguier J., Figuet E., Glémin S., Bierne N., Duret L.
ISSN
1537-1719 (Electronic)
ISSN-L
0737-4038
Publication state
Published
Issued date
2018
Peer-reviewed
Oui
Volume
35
Number
5
Pages
1092-1103
Language
english
Abstract
Selection on codon usage bias is well documented in a number of microorganisms. Whether codon usage is also generally shaped by natural selection in large organisms, despite their relatively small effective population size (Ne), is unclear. In animals, the population genetics of codon usage bias has only been studied in a handful of model organisms so far, and can be affected by confounding, nonadaptive processes such as GC-biased gene conversion and experimental artefacts. Using population transcriptomics data, we analyzed the relationship between codon usage, gene expression, allele frequency distribution, and recombination rate in 30 nonmodel species of animals, each from a different family, covering a wide range of effective population sizes. We disentangled the effects of translational selection and GC-biased gene conversion on codon usage by separately analyzing GC-conservative and GC-changing mutations. We report evidence for effective translational selection on codon usage in large-Ne species of animals, but not in small-Ne ones, in agreement with the nearly neutral theory of molecular evolution. C- and T-ending codons tend to be preferred over synonymous G- and A-ending ones, for reasons that remain to be determined. In contrast, we uncovered a conspicuous effect of GC-biased gene conversion, which is widespread in animals and the main force determining the fate of AT↔GC mutations. Intriguingly, the strength of its effect was uncorrelated with Ne.
Keywords
Animals, Base Composition, Codon, Gene Conversion, Insecta/genetics, Population Density, Selection, Genetic, Silent Mutation
Pubmed
Web of science
Create date
14/04/2019 15:58
Last modification date
20/08/2019 16:27
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