The evolution of sex ratio distorter suppression affects a 25 cM genomic region in the butterfly Hypolimnas bolina.

Symbionts that distort their host's sex ratio by favouring the production and survival of females are common in arthropods. Their presence produces intense Fisherian selection to return the sex ratio to parity, typified by the rapid spread of host 'suppressor' loci that restore male s...

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Main Authors: Emily A Hornett, Bruce Moran, Louise A Reynolds, Sylvain Charlat, Samuel Tazzyman, Nina Wedell, Chris D Jiggins, Greg D D Hurst
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-12-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC4256269?pdf=render
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spelling doaj-834f412f3b44471ea807e8720088cb4c2020-11-25T01:16:12ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042014-12-011012e100482210.1371/journal.pgen.1004822The evolution of sex ratio distorter suppression affects a 25 cM genomic region in the butterfly Hypolimnas bolina.Emily A HornettBruce MoranLouise A ReynoldsSylvain CharlatSamuel TazzymanNina WedellChris D JigginsGreg D D HurstSymbionts that distort their host's sex ratio by favouring the production and survival of females are common in arthropods. Their presence produces intense Fisherian selection to return the sex ratio to parity, typified by the rapid spread of host 'suppressor' loci that restore male survival/development. In this study, we investigated the genomic impact of a selective event of this kind in the butterfly Hypolimnas bolina. Through linkage mapping, we first identified a genomic region that was necessary for males to survive Wolbachia-induced male-killing. We then investigated the genomic impact of the rapid spread of suppression, which converted the Samoan population of this butterfly from a 100:1 female-biased sex ratio in 2001 to a 1:1 sex ratio by 2006. Models of this process revealed the potential for a chromosome-wide effect. To measure the impact of this episode of selection directly, the pattern of genetic variation before and after the spread of suppression was compared. Changes in allele frequencies were observed over a 25 cM region surrounding the suppressor locus, with a reduction in overall diversity observed at loci that co-segregate with the suppressor. These changes exceeded those expected from drift and occurred alongside the generation of linkage disequilibrium. The presence of novel allelic variants in 2006 suggests that the suppressor was likely to have been introduced via immigration rather than through de novo mutation. In addition, further sampling in 2010 indicated that many of the introduced variants were lost or had declined in frequency since 2006. We hypothesize that this loss may have resulted from a period of purifying selection, removing deleterious material that introgressed during the initial sweep. Our observations of the impact of suppression of sex ratio distorting activity reveal a very wide genomic imprint, reflecting its status as one of the strongest selective forces in nature.http://europepmc.org/articles/PMC4256269?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Emily A Hornett
Bruce Moran
Louise A Reynolds
Sylvain Charlat
Samuel Tazzyman
Nina Wedell
Chris D Jiggins
Greg D D Hurst
spellingShingle Emily A Hornett
Bruce Moran
Louise A Reynolds
Sylvain Charlat
Samuel Tazzyman
Nina Wedell
Chris D Jiggins
Greg D D Hurst
The evolution of sex ratio distorter suppression affects a 25 cM genomic region in the butterfly Hypolimnas bolina.
PLoS Genetics
author_facet Emily A Hornett
Bruce Moran
Louise A Reynolds
Sylvain Charlat
Samuel Tazzyman
Nina Wedell
Chris D Jiggins
Greg D D Hurst
author_sort Emily A Hornett
title The evolution of sex ratio distorter suppression affects a 25 cM genomic region in the butterfly Hypolimnas bolina.
title_short The evolution of sex ratio distorter suppression affects a 25 cM genomic region in the butterfly Hypolimnas bolina.
title_full The evolution of sex ratio distorter suppression affects a 25 cM genomic region in the butterfly Hypolimnas bolina.
title_fullStr The evolution of sex ratio distorter suppression affects a 25 cM genomic region in the butterfly Hypolimnas bolina.
title_full_unstemmed The evolution of sex ratio distorter suppression affects a 25 cM genomic region in the butterfly Hypolimnas bolina.
title_sort evolution of sex ratio distorter suppression affects a 25 cm genomic region in the butterfly hypolimnas bolina.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2014-12-01
description Symbionts that distort their host's sex ratio by favouring the production and survival of females are common in arthropods. Their presence produces intense Fisherian selection to return the sex ratio to parity, typified by the rapid spread of host 'suppressor' loci that restore male survival/development. In this study, we investigated the genomic impact of a selective event of this kind in the butterfly Hypolimnas bolina. Through linkage mapping, we first identified a genomic region that was necessary for males to survive Wolbachia-induced male-killing. We then investigated the genomic impact of the rapid spread of suppression, which converted the Samoan population of this butterfly from a 100:1 female-biased sex ratio in 2001 to a 1:1 sex ratio by 2006. Models of this process revealed the potential for a chromosome-wide effect. To measure the impact of this episode of selection directly, the pattern of genetic variation before and after the spread of suppression was compared. Changes in allele frequencies were observed over a 25 cM region surrounding the suppressor locus, with a reduction in overall diversity observed at loci that co-segregate with the suppressor. These changes exceeded those expected from drift and occurred alongside the generation of linkage disequilibrium. The presence of novel allelic variants in 2006 suggests that the suppressor was likely to have been introduced via immigration rather than through de novo mutation. In addition, further sampling in 2010 indicated that many of the introduced variants were lost or had declined in frequency since 2006. We hypothesize that this loss may have resulted from a period of purifying selection, removing deleterious material that introgressed during the initial sweep. Our observations of the impact of suppression of sex ratio distorting activity reveal a very wide genomic imprint, reflecting its status as one of the strongest selective forces in nature.
url http://europepmc.org/articles/PMC4256269?pdf=render
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