Literature DB >> 27546577

The pdm3 Locus Is a Hotspot for Recurrent Evolution of Female-Limited Color Dimorphism in Drosophila.

Amir Yassin1, Emily K Delaney2, Adam J Reddiex3, Thaddeus D Seher4, Héloïse Bastide1, Nicholas C Appleton3, Justin B Lack1, Jean R David5, Stephen F Chenoweth3, John E Pool6, Artyom Kopp7.   

Abstract

Sex-limited polymorphisms are an intriguing form of sexual dimorphism that offer unique opportunities to reconstruct the evolutionary changes that decouple male and female traits encoded by a shared genome. We investigated the genetic basis of a Mendelian female-limited color dimorphism (FLCD) that segregates in natural populations of more than 20 species of the Drosophila montium subgroup. In these species, females have alternative abdominal color morphs, light and dark, whereas males have only one color morph in each species. A comprehensive molecular phylogeny of the montium subgroup supports multiple origins of FLCD. Despite this, we mapped FLCD to the same locus in four distantly related species-the transcription factor POU domain motif 3 (pdm3), which acts as a repressor of abdominal pigmentation in D. melanogaster. In D. serrata, FLCD maps to a structural variant in the first intron of pdm3; however, this variant is not found in the three other species-D. kikkawai, D. leontia, and D. burlai-and sequence analysis strongly suggests the pdm3 alleles responsible for FLCD originated independently at least three times. We propose that cis-regulatory changes in pdm3 form sexually dimorphic and monomorphic alleles that segregate within species and are preserved, at least in one species, by structural variation. Surprisingly, pdm3 has not been implicated in the evolution of sex-specific pigmentation outside the montium subgroup, suggesting that the genetic paths to sexual dimorphism may be constrained within a clade but variable across clades.
Copyright © 2016 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  abdominal pigmentation; parallel evolution; pdm3; sex-limited polymorphism; sexual dimorphism

Mesh:

Substances:

Year:  2016        PMID: 27546577      PMCID: PMC5450831          DOI: 10.1016/j.cub.2016.07.016

Source DB:  PubMed          Journal:  Curr Biol        ISSN: 0960-9822            Impact factor:   10.834


  55 in total

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Journal:  PLoS Genet       Date:  2013-08-29       Impact factor: 5.917

6.  Composite effects of polymorphisms near multiple regulatory elements create a major-effect QTL.

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Review 2.  Perspectives on Gene Regulatory Network Evolution.

Authors:  Marc S Halfon
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Review 3.  Using Drosophila pigmentation traits to study the mechanisms of cis-regulatory evolution.

Authors:  Mark Rebeiz; Thomas M Williams
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Review 4.  The Evolution of Gene Expression in cis and trans.

Authors:  Sarah A Signor; Sergey V Nuzhdin
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7.  A phylogeny for the Drosophila montium species group: A model clade for comparative analyses.

Authors:  William R Conner; Emily K Delaney; Michael J Bronski; Paul S Ginsberg; Timothy B Wheeler; Kelly M Richardson; Brooke Peckenpaugh; Kevin J Kim; Masayoshi Watada; Ary A Hoffmann; Michael B Eisen; Artyom Kopp; Brandon S Cooper; Michael Turelli
Journal:  Mol Phylogenet Evol       Date:  2020-12-31       Impact factor: 4.286

8.  The effect of the doublesex gene in body colour masculinization of the damselfly Ischnura senegalensis.

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9.  Phylogenomic analyses of the genus Drosophila reveals genomic signals of climate adaptation.

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10.  Evolution of assortative mating following selective introgression of pigmentation genes between two Drosophila species.

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Journal:  Ecol Evol       Date:  2022-04-13       Impact factor: 2.912

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