Key Laboratory of Genetic Evolution & Animal Models, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming, China.
Kunming College of Life Science, University of Chinese Academy of Sciences, Kunming, China.
PLoS Biol. 2024 Aug 12;22(8):e3002763. doi: 10.1371/journal.pbio.3002763. eCollection 2024 Aug.
Phenotypic plasticity displayed by an animal in response to different environmental conditions is supposedly crucial for its survival and reproduction. The female adults of some ant lineages display phenotypic plasticity related to reproductive role. In pharaoh ant queens, insemination induces substantial physiological/behavioral changes and implicates remarkable gene regulatory network (GRN) shift in the brain. Here, we report a neuropeptide neuroparsin A (NPA) showing a conserved expression pattern associated with reproductive activity across ant species. Knock-down of NPA in unmated queen enhances ovary activity, whereas injection of NPA peptide in fertilized queen suppresses ovary activity. We found that NPA mainly affected the downstream gene JHBP in the ovary, which is positively regulated by NPA and suppression of which induces elevated ovary activity, and shadow which is negatively regulated by NPA. Furthermore, we show that NPA was also employed into the brain-ovary axis in regulating the worker reproductive changes in other distantly related species, such as Harpegnathos venator ants.
动物对不同环境条件表现出的表型可塑性,据称对其生存和繁殖至关重要。一些蚂蚁谱系的雌性成虫表现出与生殖角色相关的表型可塑性。在法老蚁蚁后中,受精诱导了大量的生理/行为变化,并暗示了大脑中显著的基因调控网络(GRN)转变。在这里,我们报告了一种神经肽神经副蛋白 A(NPA),它在与生殖活动相关的各种蚂蚁物种中表现出保守的表达模式。在未交配的蚁后中敲低 NPA 会增强卵巢活性,而在受精的蚁后中注射 NPA 肽会抑制卵巢活性。我们发现 NPA 主要影响卵巢中的下游基因 JHBP,该基因受 NPA 正向调控,抑制该基因会导致卵巢活性升高,而影子则受 NPA 负向调控。此外,我们还表明,NPA 也被用于调节其他远缘相关物种(如 Harpegnathos venator 蚂蚁)的工蜂生殖变化的脑-卵巢轴。