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« Previous AbstractMale pheromone polymorphism and reproductive isolation in populations of Drosophila simulans    Next AbstractAcp70A regulates Drosophila pheromones through juvenile hormone induction »

J Evol Biol


Title:Interaction between temperature and male pheromone in sexual isolation in Drosophila melanogaster
Author(s):Bontonou G; Denis B; Wicker-Thomas C;
Address:"CNRS UPR 9034, Universite de Paris Sud, Gif sur Yvette, France"
Journal Title:J Evol Biol
Year:2013
Volume:20130814
Issue:9
Page Number:2008 - 2020
DOI: 10.1111/jeb.12206
ISSN/ISBN:1420-9101 (Electronic) 1010-061X (Print) 1010-061X (Linking)
Abstract:"In Drosophila, female hydrocarbons are known to be involved in premating isolation between different species and pheromonal races. The role of male-specific hydrocarbon polymorphism is not as well documented. The dominant cuticular hydrocarbon (CHC) in male D. melanogaster is usually 7-tricosene (7-T), with the exception of African populations, in which 7-pentacosene (7-P) is dominant. Here, we took advantage of a population from the Comoro Islands (Com), in which males fell on a continuum of low to high levels of 7-T, to perform temperature selection and selection on CHCs' profiles. We conducted several experiments on the selected Com males to study the plasticity of their CHCs in response to temperature shift, their role in resistance to desiccation and in sexual selection. We then compared the results obtained for selected lines to those from three common laboratory strains with different and homogenous hydrocarbon profiles: CS, Cot and Tai. Temperature selection modified the CHC profiles of the Com males in few generations of selection. We showed that the 7-P/7-T ratio depends on temperature with generally more 7-P at higher temperatures and observed a relationship between chain length and resistance to desiccation in both temperature- and phenotypically selected Com lines. There was partial sexual isolation between the flies with clear-cut phenotypes within the phenotypically selected lines and the laboratory strains. These results indicate that the dominant male pheromones are under environmental selection and may have played a role in reproductive isolation"
Keywords:"Alkenes Animals Chromatography, Gas Comoros Crosses, Genetic Drosophila melanogaster/*physiology Female Male Pheromones/*metabolism *Reproductive Isolation *Selection, Genetic Species Specificity *Temperature adaptation desiccation resistance mating selec;"
Notes:"MedlineBontonou, G Denis, B Wicker-Thomas, C eng Comparative Study Research Support, Non-U.S. Gov't Switzerland 2013/08/16 J Evol Biol. 2013 Sep; 26(9):2008-20. doi: 10.1111/jeb.12206. Epub 2013 Aug 14"

 
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