bioRxiv · 10.1101/2020.06.03.131706
Evolutionary genetics of Drosophila melanogaster immunity: role of the X chromosome and sex-specific dominance
Abstract
Intralocus Sexual Conflict (IaSC) ensues when males and females of the same species experience divergent selection on shared traits. A large number of traits have been implicated in IaSC and there is growing evidence for sexual antagonism associated with immunity. X chromosomes are thought to be hotspots of sexually antagonistic genetic variation and have been shown to harbour substantial immunity-related genetic variation. Here, using interpopulation crosses and cytogenetic cloning, we investigated the role of the X chromosome in improved immune response of laboratory populations of the fruit-fly Drosophila melanogaster selected against systemic infection by Pseudomonas entomophila. We could not detect any contribution of the X chromosome in the evolved immune response of our selected populations. However, we found strong evidence of sex-specific dominance related to immunity in our populations. Our results indicate that alleles that confer a superior immune response to the selected populations are, on average, partially dominant in females but partially recessive in males. We argue that sex-specific dominance over immunity evolved as a by-product of sexually antagonistic selection in the wild ancestors of our populations. We also highlight sex-specific dominance as a potential mechanism of sex differences in immunity, with population-level sex differences primarily driven by sex differences in heterozygotes.
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Geeta Arun, M., Agarwala, A., Jigisha,, Kashyap, M., Venkatesan, S., Chechi, T. S., Syed, Z. A., Gupta, V., Prasad, N. G.. 2020-06-05. Evolutionary genetics of Drosophila melanogaster immunity: role of the X chromosome and sex-specific dominance. https://doi.org/10.1101/2020.06.03.131706
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