Dissecting the Effects of Selection and Mutation on Genetic Diversity in Three Wood White (Leptidea) Butterfly Species

Author:

Talla Venkat1ORCID,Soler Lucile2,Kawakami Takeshi1,Dincă Vlad3,Vila Roger4ORCID,Friberg Magne5,Wiklund Christer6,Backström Niclas1ORCID

Affiliation:

1. Department of Evolutionary Biology, Evolutionary Biology Centre (EBC), Uppsala University, Sweden

2. Department of Medical Biochemistry and Microbiology, National Bioinformatics Infrastructure Sweden (NBIS), Science for Life Laboratory, Uppsala, Sweden

3. Department of Ecology and Genetics, University of Oulu, Finland

4. Institut de Biologia Evolutiva (CSIC-UPF), Barcelona, Spain

5. Department of Biology, Biodiversity Unit, Lund University, Sweden

6. Department of Zoology, Division of Ecology, Stockholm University, Sweden

Abstract

AbstractThe relative role of natural selection and genetic drift in evolution is a major topic of debate in evolutionary biology. Most knowledge spring from a small group of organisms and originate from before it was possible to generate genome-wide data on genetic variation. Hence, it is necessary to extend to a larger number of taxonomic groups, descriptive and hypothesis-based research aiming at understanding the proximate and ultimate mechanisms underlying both levels of genetic polymorphism and the efficiency of natural selection. In this study, we used data from 60 whole-genome resequenced individuals of three cryptic butterfly species (Leptidea sp.), together with novel gene annotation information and population recombination data. We characterized the overall prevalence of natural selection and investigated the effects of mutation and linked selection on regional variation in nucleotide diversity. Our analyses showed that genome-wide diversity and rate of adaptive substitutions were comparatively low, whereas nonsynonymous to synonymous polymorphism and substitution levels were comparatively high in Leptidea, suggesting small long-term effective population sizes. Still, negative selection on linked sites (background selection) has resulted in reduced nucleotide diversity in regions with relatively high gene density and low recombination rate. We also found a significant effect of mutation rate variation on levels of polymorphism. Finally, there were considerable population differences in levels of genetic diversity and pervasiveness of selection against slightly deleterious alleles, in line with expectations from differences in estimated effective population sizes.

Funder

junior research grants from the Swedish Research

INCA

UE

Science for Life Laboratory

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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