The role of visual and mechanosensory cues in structuring forward flight inDrosophila melanogaster
Open Access
- 1 December 2007
- journal article
- Published by The Company of Biologists in Journal of Experimental Biology
- Vol. 210 (23) , 4092-4103
- https://doi.org/10.1242/jeb.006502
Abstract
It has long been known that many flying insects use visual cues to orient with respect to the wind and to control their groundspeed in the face of varying wind conditions. Much less explored has been the role of mechanosensory cues in orienting insects relative to the ambient air. Here we show that Drosophila melanogaster, magnetically tethered so as to be able to rotate about their yaw axis, are able to detect and orient into a wind, as would be experienced during forward flight. Further, this behavior is velocity dependent and is likely subserved, at least in part, by the Johnston's organs, chordotonal organs in the antennae also involved in near-field sound detection. These wind-mediated responses may help to explain how flies are able to fly forward despite visual responses that might otherwise inhibit this behavior. Expanding visual stimuli, such as are encountered during forward flight, are the most potent aversive visual cues known for D. melanogaster flying in a tethered paradigm. Accordingly, tethered flies strongly orient towards a focus of contraction, a problematic situation for any animal attempting to fly forward. We show in this study that wind stimuli, transduced via mechanosensory means, can compensate for the aversion to visual expansion and thus may help to explain how these animals are indeed able to maintain forward flight.Keywords
This publication has 24 references indexed in Scilit:
- Visual stimulation of saccades in magnetically tetheredDrosophilaJournal of Experimental Biology, 2006
- Free-flight responses ofDrosophila melanogasterto attractive odorsJournal of Experimental Biology, 2006
- Odor localization requires visual feedback during free flight inDrosophila melanogasterJournal of Experimental Biology, 2003
- Genetically Similar Transduction Mechanisms for Touch and Hearing in DrosophilaJournal of Neuroscience, 2000
- Control of hindlimb posture by wind-sensitive hairs and antennae during locust flightJournal of Comparative Physiology A, 1986
- FUNCTIONAL ASPECTS OF DROSOPHILA COURTSHIPBiological Reviews, 1983
- The natural flight of the migratory locust,Locusta migratoria L.Journal of Comparative Physiology A, 1981
- The antenna of Drosophila as a ‘love song’ receptorPhysiological Entomology, 1978
- Der Bewegungsapparat der Antennen von Calliphora erythrocephalaZoomorphology, 1967
- Die Wirkung von Luftströmung auf die Antennen und das Flugverhalten der blauen Schmeissfliege (Calliphora Erythrocephala)Journal of Comparative Physiology A, 1967