Abstract
AbstractIn many animal species, females undergo physiological and behavioral changes after mating. Some of these changes are driven by male-derived seminal fluid proteins, and are critical for fertilization success. Unfortunately, our understanding of the molecular interplay between female and male reproductive proteins remains superficial. Here we analyze the post-mating response in a Drosophila species that has evolved strong gametic incompatibility with its sister species; D. novamexicana females produce only 1% fertilized eggs in crosses with D. americana males, compared to ~98% produced in within-species crosses. This incompatibility is likely caused by mismatched male and female reproductive molecules. In this study we use short-read RNA sequencing to examine the evolutionary dynamics of female reproductive genes and the post-mating transcriptome response in crosses within and between species. First, we found that most female reproductive tract genes are slow-evolving compared to the genome average. Second, post-mating responses in con- and heterospecific matings are largely congruent, but heterospecific mating induces expression of additional stress-response genes. Some of those are immunity genes that are activated by the Imd pathway. We also identify several genes in the JAK/STAT signaling pathway that are induced in heterospecific, but not conspecific mating. While this immune response was most pronounced in the female reproductive tract, we also detect it in the female head and ovaries. Our results show that the female’s post-mating transcriptome-level response is determined in part by the genotype of the male, and that divergence in male reproductive genes and/or traits can have immunogenic effects on females.
Publisher
Cold Spring Harbor Laboratory
Reference94 articles.
1. S.P.E.R.M.” (seminal proteins (are) essential reproductive modulators): the view from Drosophila;Society of Reproduction and Fertility supplement,2007
2. Mariana F Wolfner . Battle and ballet: molecular interactions between the sexes in Drosophila . In The Journal of heredity, pages 399–410, July 2009.
3. Sustained post-mating response in Drosophila melanogaster requires multiple seminal fluid proteins;PLoS genetics,2007
4. Seminal influences: Drosophila Acps and the molecular interplay between males and females during reproduction;American Zoologist,2007
5. The Female Post-Mating Response Requires Genes Expressed in the Secondary Cells of the Male Accessory Gland in Drosophila melanogaster