Department of Biology, University of Colorado, Colorado Springs, CO 80918, USA.
Proc Natl Acad Sci U S A. 2011 May 10;108(19):7878-83. doi: 10.1073/pnas.1100388108. Epub 2011 Apr 25.
In internally fertilizing organisms, mating involves a series of highly coordinated molecular interactions between the sexes that occur within the female reproductive tract. In species where females mate multiply, traits involved in postcopulatory interactions are expected to evolve rapidly, potentially leading to postmating-prezygotic (PMPZ) reproductive isolation between diverging populations. Here, we investigate the postmating transcriptional response of the lower reproductive tract of Drosophila mojavensis females following copulation with either conspecific or heterospecific (Drosophila arizonae) males at three time points postmating. Relatively few genes (15 total) were differentially regulated in the female lower reproductive tract in response to conspecific mating. Heterospecifically mated females exhibited significant perturbations in the expression of the majority of these genes, and also down-regulated transcription of a number of others, including several involved in mitochondrial function. These striking regulatory differences indicate failed postcopulatory molecular interactions between the sexes consistent with the strong PMPZ isolation observed for this cross. We also report the transfer of male accessory-gland protein (Acp) transcripts from males to females during copulation, a finding with potentially broad implications for understanding postcopulatory molecular interactions between the sexes.
在体内受精的生物中,交配涉及一系列高度协调的性别间分子相互作用,这些作用发生在雌性生殖道内。在雌性多次交配的物种中,与交配后相互作用相关的特征预计会迅速进化,可能导致不同种群之间出现交配后-合子前(PMPZ)生殖隔离。在这里,我们研究了交配后三个时间点内,与同种(Drosophila mojavensis)或异种(Drosophila arizonae)雄性交配后,Drosophila mojavensis 雌性下生殖道的交配后转录反应。相对较少的基因(总共 15 个)在雌性下生殖道中对同种交配有差异调节。与异种交配的雌性表现出这些基因的大多数表达显著失调,并且还下调了许多其他基因的转录,包括一些涉及线粒体功能的基因。这些显著的调控差异表明,雌雄间的交配后分子相互作用失败,与观察到的这种杂交强烈的 PMPZ 隔离一致。我们还报告了在交配过程中,雄性附属腺蛋白(Acp)转录本从雄性转移到雌性,这一发现可能对理解雌雄间交配后分子相互作用具有广泛的意义。