Padova Neuroscience Center, Università degli Studi di Padova, Veneto, Padova, Italy.
Department of Biomedical Sciences, Università degli Studi di Padova, Veneto, Padova, Italy.
Sci Rep. 2024 Sep 27;14(1):22277. doi: 10.1038/s41598-024-73221-1.
Animals' ability to orient and navigate relies on selecting an appropriate motor response based on the perception and integration of the environmental information. This is the case, for instance, of the optokinetic response (OKR) in Drosophila melanogaster, where optic flow visual stimulation modulates head movements. Despite a large body of literature on the OKR, there is still a limited understanding, in flies, of the impact on OKR of concomitant, and potentially conflicting, inputs. To evaluate the impact of this multimodal integration, we combined in D. melanogaster, while flying in a tethered condition, the optic flow stimulation leading to OKR with the simultaneous presentation of olfactory cues, based on repellent or masking compounds typically used against noxious insect species. First, this approach allowed us to directly quantify the effect of several substances and of their concentration on the dynamics of the flies' OKR in response to moving gratings by evaluating the number of saccades and the velocity of the slow phase. Subsequently, this analysis was capable of easily revealing the actual effect, i.e. masking vs. repellent, of the compound tested. In conclusion, we show that D. melanogaster, a cost-affordable species, represents a viable option for studying the effects of several compounds on the navigational abilities of insects.
动物定向和导航的能力依赖于根据对环境信息的感知和整合来选择适当的运动反应。例如,在黑腹果蝇(Drosophila melanogaster)中,光流视觉刺激会调节头部运动,这就是光定向反应(OKR)的情况。尽管关于 OKR 的文献很多,但对于同时存在的、潜在冲突的输入对 OKR 的影响,在果蝇中仍然了解有限。为了评估这种多模态整合的影响,我们在黑腹果蝇飞行的同时,在系绳条件下,将导致 OKR 的光流刺激与同时呈现的嗅觉线索结合起来,这些嗅觉线索基于通常用于对抗有害昆虫物种的驱避或掩蔽化合物。首先,这种方法使我们能够通过评估果蝇对移动光栅的 OKR 的扫视次数和慢相速度,直接量化几种物质及其浓度对其动力学的影响。随后,这种分析能够很容易地揭示出所测试化合物的实际效果,即掩蔽或驱避。总之,我们表明,黑腹果蝇是一种价格合理的物种,是研究几种化合物对昆虫导航能力影响的可行选择。