Department of Biology, York University, 4700, Keele St., Toronto, Ontario, Canada.
Donnelly Centre, University of Toronto, Toronto, Canada.
Sci Rep. 2018 Jul 10;8(1):10388. doi: 10.1038/s41598-018-28489-5.
Eusociality has independently evolved multiple times in the hymenoptera, but the patterns of adaptive molecular evolution underlying the evolution and elaboration of eusociality remain uncertain. Here, we performed a population genomics study of primitively eusocial Polistes (paper wasps), and compared their patterns of molecular evolution to two social bees; Bombus (bumblebees), and Apis (honey bees). This species triad allowed us to study molecular evolution across a gradient of social complexity (Polistes < Bombus < Apis) and compare species pairs that have similar (i.e. Polistes and Bombus) or different (i.e. Polistes and Apis) life histories, while controlling for phylogenetic distance. We found that regulatory genes have high levels of positive selection in Polistes; consistent with the prediction that adaptive changes in gene regulation are important during early stages of social evolution. Polistes and Bombus exhibit greater similarity in patterns of adaptive evolution including greater overlap of genes experiencing positive selection, and greater positive selection on queen-biased genes. Our findings suggest that either adaptive evolution of a few key genes underlie the evolution of simpler forms of eusociality, or that the initial stages of social evolution lead to selection on a few key traits orchestrated by orthologous genes and networks.
社会性在膜翅目昆虫中已经独立进化了多次,但支持社会性进化和复杂化的适应性分子进化模式仍不确定。在这里,我们对原始社会性的 Polistes(纸蜂)进行了群体基因组学研究,并将它们的分子进化模式与两种社会性蜜蜂;Bombus(熊蜂)和 Apis(蜜蜂)进行了比较。这个物种三联体使我们能够在社会性复杂程度的梯度上研究分子进化(Polistes < Bombus < Apis),并比较具有相似(即 Polistes 和 Bombus)或不同(即 Polistes 和 Apis)生活史的物种对,同时控制系统发育距离。我们发现调节基因在 Polistes 中具有高水平的正选择;与预测一致,即基因调控的适应性变化在社会性进化的早期阶段很重要。Polistes 和 Bombus 在适应性进化模式上表现出更大的相似性,包括经历正选择的基因重叠更多,以及对蜂王偏爱的基因的正选择更多。我们的研究结果表明,要么是少数关键基因的适应性进化导致了更简单形式的社会性的进化,要么是社会性进化的初始阶段导致了由同源基因和网络协调的少数关键特征的选择。