Santos Priscila K F, Kapheim Karen M
Department of Biology, Utah State University, Logan, UT 84322, USA.
Genome Biol Evol. 2024 Dec 4;16(12). doi: 10.1093/gbe/evae255.
Diapause has long been proposed to play a significant role in the evolution of eusociality in Hymenoptera. Recent studies have shown that shifts in the diapause stage precede social evolution in wasps and bees; however, the genomic basis remains unknown. Given the overlap in molecular pathways that regulate diapause and lifespan, we hypothesized that the evolutionary loss of developmental diapause may lead to extended lifespan among adults, which is a prerequisite for the evolution of eusociality. To test whether the loss of prepupal diapause is followed by genomic changes associated with lifespan extension, we compared 27 bee genomes with or without prepupal diapause. Our results point to several potential mechanisms for lifespan extension in species lacking prepupal diapause, including the loss of the growth hormone PTTH and its receptor TORSO, along with convergent selection in genes known to regulate lifespan in animals. Specifically, we observed purifying selection of prolongevity genes and relaxed selection of antilongevity genes within the IIS/TOR pathway in species that have lost prepupal diapause. Changes in selection pressures on this pathway may lead to the evolution of new phenotypes, such as lifespan extension and altered responses to nutritional signals that are crucial for social evolution.
长期以来,人们一直认为滞育在膜翅目昆虫真社会性的进化中起着重要作用。最近的研究表明,滞育阶段的转变先于黄蜂和蜜蜂的社会进化;然而,其基因组基础仍然未知。鉴于调节滞育和寿命的分子途径存在重叠,我们推测发育滞育的进化丧失可能导致成虫寿命延长,这是真社会性进化的一个先决条件。为了测试蛹前期滞育的丧失是否伴随着与寿命延长相关的基因组变化,我们比较了有或没有蛹前期滞育的27种蜜蜂基因组。我们的结果指出了缺乏蛹前期滞育的物种中寿命延长的几种潜在机制,包括生长激素PTTH及其受体TORSO的丧失,以及在已知调节动物寿命的基因中的趋同选择。具体来说,我们观察到在已经丧失蛹前期滞育的物种中,IIS/TOR途径内延长寿命基因的纯化选择和抗长寿基因的放松选择。该途径选择压力的变化可能导致新表型的进化,如寿命延长和对营养信号反应的改变,而这些对于社会进化至关重要。