School of Biology, University of St Andrews, St Andrews, Fife KY16 9TH, U.K.
Evolution. 2013 Jul;67(7):1950-63. doi: 10.1111/evo.12082. Epub 2013 Mar 21.
Ecological speciation occurs with the adaptation of populations to different environments and concurrent evolution of reproductive isolation. Phenotypic plasticity might influence both ecological adaptation and reproductive traits. We examined environment-specific gene expression and male mating success in cactophilic Drosophila mojavensis using transcriptome sequencing. This species exhibits cactus-dependent mating success across different species of host plants, with genotype-by-environment interactions for numerous traits. We cultured flies from egg to eclosion on two natural cactus hosts and surveyed gene expression in adult males that were either successful or unsuccessful in achieving copulation in courtship trials. We identified gene expression differences that included functions involved with metabolism, most likely related to chemical differences between host cactus species. Several epigenetic-related functions were identified that might play a role in modulating gene expression in adults due to host cactus effects on larvae, and mating success. Cactus-dependent mating success involved expression differences of genes implicated in translation, transcription, and nervous system development. This suggests a role of neurological function genes in the mating success of D. mojavensis males. Together, these results suggest that the influence of environmental variation on mating success via regulation of gene expression might be an important aspect of ecological speciation.
生态物种形成是伴随着种群对不同环境的适应和生殖隔离的同时进化而发生的。表型可塑性可能会影响生态适应和生殖特征。我们使用转录组测序研究了嗜仙人掌果蝇(Drosophila mojavensis)在特定环境下的基因表达和雄性交配成功率。这种物种在不同的寄主植物上表现出对仙人掌的依赖交配成功率,具有许多性状的基因型-环境相互作用。我们从卵孵化到成虫培养在两种天然仙人掌宿主上,并在求爱试验中成功或不成功地实现交配的成年雄性中调查基因表达。我们鉴定了基因表达的差异,包括涉及代谢的功能,最有可能与宿主仙人掌物种之间的化学差异有关。还鉴定了几个与表观遗传相关的功能,这些功能可能由于宿主仙人掌对幼虫和交配成功率的影响,在调节成体中的基因表达方面发挥作用。依赖于仙人掌的交配成功率涉及到参与翻译、转录和神经系统发育的基因的表达差异。这表明神经功能基因在 D. mojavensis 雄蝇的交配成功率中起着重要作用。总之,这些结果表明,通过调节基因表达,环境变化对交配成功率的影响可能是生态物种形成的一个重要方面。