Mathews Trey, Joyce Ella, Abramson Charles I, Wells Harrington, Sheaff Robert J
Department of Biological Science, The University of Tulsa, Tulsa, OK 74104, USA.
Department of Chemical Engineering, The University of Tulsa, Tulsa, OK 74104, USA.
Insects. 2025 May 26;16(6):561. doi: 10.3390/insects16060561.
Essential oils have been utilized in the health, learning/memory, and agricultural fields, but not much is known about the biological activity of their individual components. Terpinyl acetate is a p-menthane monoterpenoid commonly found in cardamom, pine, cajeput, pine needle, and other essential oils. Using a cell culture model system, we found that terpinyl acetate is a potent and specific inhibitor of mitochondrial ATP production, suggesting it might function as a plant toxin. Remarkably, however, terpinyl acetate was not cytotoxic because cells switched to glycolysis to maintain ATP levels. Based on these findings, we hypothesized that terpinyl acetate might be employed to benefit plant survival by modulating metabolism/behavior of plant pollinators such as the honey bee. This hypothesis was tested by investigating terpinyl acetate's effect on honey bee foraging. Free-flying honey bee flower color choice was recorded when visiting a blue-white dimorphic artificial flower patch of 36 flowers. The nectar-reward difference between flower colors was varied in a manner in which both learning and reversal learning could be measured. Terpinyl acetate ingestion disrupted reversal learning but not initial learning: this change caused bees to remain faithful to a flower color longer than was energetically optimal.
香精油已被应用于健康、学习/记忆和农业领域,但对于其单个成分的生物活性却知之甚少。乙酸松油酯是一种对薄荷烷单萜类化合物,常见于小豆蔻、松树、白千层、松针和其他香精油中。通过细胞培养模型系统,我们发现乙酸松油酯是线粒体ATP生成的一种强效且特异性抑制剂,这表明它可能作为一种植物毒素发挥作用。然而,值得注意的是,乙酸松油酯没有细胞毒性,因为细胞会转向糖酵解以维持ATP水平。基于这些发现,我们推测乙酸松油酯可能通过调节诸如蜜蜂等植物传粉者的新陈代谢/行为来促进植物生存。通过研究乙酸松油酯对蜜蜂觅食的影响来验证这一假设。当蜜蜂访问由36朵花组成的蓝白二态人工花丛时,记录其自由飞行时对花朵颜色的选择。花朵颜色之间的花蜜奖励差异以一种能够测量学习和逆向学习的方式变化。摄入乙酸松油酯会干扰逆向学习,但不会影响初始学习:这种变化导致蜜蜂对一种花朵颜色的忠诚度高于能量最优水平。