Department of Life Sciences and Convergence Research Center for Insect Vectors, Incheon National University, 119 Academy-ro, Yeonsu-gu, Incheon 22012, Korea.
Int J Mol Sci. 2018 Sep 20;19(10):2855. doi: 10.3390/ijms19102855.
High-fat diet (HFD) often causes obesity and it has detrimental effects on the sensory system. In particular, sensory-mediated responses are crucial for maintaining energy balance, as they are involved in a metabolic regulation; however, there is still no clear explanation about the relationship between HFD-induced stress and sensory system. To gain insight on how HFD-induced stress affects olfactory sensitivity and behavioral responses, we have used a model for olfactory and nutrient-related signaling and accessed physiological, behavioral, and transcriptional changes. We demonstrated that lifespan and climbing ability in HFD-treated flies decreased and that olfactory sensitivity and behavioral responses to odorants were changed. Olfactory sensitivity to eight of ten odorants after 14 days on HFD treatment were reduced, while behavioral attraction was increased to benzaldehyde in flies that were treated with HFD. This behavioral and physiological modification in HFD-treated flies for 14 days was accompanied by a significant decrease in gene expression in a peripheral olfactory organ, suggesting that is could be involved in the action of metabolic and sensory signal. Gene expression profiles of antennae showed significant differences on the olfactory receptors, odorant-binding proteins, and insulin signaling. Our results suggested that olfactory sensitivity and behavioral responses to HFD-induced stress are mediated through olfactory and nutrient-related signaling pathways.
高脂肪饮食(HFD)通常会导致肥胖,并对感觉系统产生有害影响。特别是,感觉介导的反应对于维持能量平衡至关重要,因为它们涉及代谢调节;然而,关于 HFD 诱导的应激与感觉系统之间的关系,仍没有明确的解释。为了深入了解 HFD 诱导的应激如何影响嗅觉敏感性和行为反应,我们使用了一种与嗅觉和营养相关的信号模型,并研究了生理、行为和转录变化。我们证明,高脂肪饮食处理的果蝇的寿命和攀爬能力下降,对气味的嗅觉敏感性和行为反应发生变化。在高脂肪饮食处理 14 天后,对十种气味中的八种的嗅觉敏感性降低,而对苯甲醛的行为吸引力增加。这种在 HFD 处理的果蝇中持续 14 天的行为和生理改变伴随着外周嗅觉器官中基因表达的显著下降,表明这可能涉及代谢和感觉信号的作用。触角的基因表达谱显示出嗅觉受体、气味结合蛋白和胰岛素信号通路的显著差异。我们的结果表明,对 HFD 诱导的应激的嗅觉敏感性和行为反应是通过嗅觉和营养相关信号通路介导的。