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Biology subjects

Visentin, P.

Publications and source records attributed to Visentin, P..

2 recordsLinked to original sources

Repellent olfactory cues influence the optomotor response modulation in Drosophila melanogaster

Animals need to precisely perceive and integrate the environmental cues to orient and select the appropriate motor responses required for navigating. This is the case, for instance, of the optokinetic reflex (OKR) and the optomotor response (OMR) in Drosophila melanogaster, where optic flow stimulation modulates the head or the body and legs motor activity respectively. Despite large bodies of literature on both the OKR and the OMR, there is still a limited understanding, in flies, of the impact on these responses of concomitant, and potentially conflicting, sensory inputs. To investigate this aspect, we used fruit flies walking on a sphere, presented with optic flow stimulation leading to the OMR together with the simultaneous exposure to olfactory stimulation, either using established repellent or masking compounds. We analysed the effect of different substances, and of their concentration, on the dynamics of the flies response to moving gratings, evaluating the fly walking path as well as average speed and duration. This analysis revealed several alterations between the compounds tested, in agreement with reported data on the simpler OKR. In conclusion, we show that concomitant exposure to repellents and maskers may consistently affect fundamental processes (the OKR and OMR) available to insects for informing themselves while navigating through the environment.

animal behavior and cognition↗

Optokinetic response in D. Melanogaster reveals the nature of common repellent odorants.

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 the walking or flying patterns. Despite a large body of literature on the OKR, theres still a limited understanding of the impact on OKR of concomitant, 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 al lowed us to directly quantify the effect of several substances and their concentration, on the dynamics of the flies OKR in response to moving gratings by evaluating the number of saccades and the velocity of its 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.

animal behavior and cognition↗