Performance trade-offs in the flight initiation ofDrosophila
Open Access
- 1 February 2008
- journal article
- Published by The Company of Biologists in Journal of Experimental Biology
- Vol. 211 (3) , 341-353
- https://doi.org/10.1242/jeb.012682
Abstract
The fruit fly Drosophila melanogaster performs at least two distinct types of flight initiation. One kind is a stereotyped escape response to a visual stimulus that is mediated by the hard-wired giant fiber neural pathway, and the other is a more variable `voluntary' response that can be performed without giant fiber activation. Because the simpler escape take-offs are apparently successful, it is unclear why the fly has multiple pathways to coordinate flight initiation. In this study we use high-speed videography to observe flight initiation in unrestrained wild-type flies and assess the flight performance of each of the two types of take-off. Three-dimensional kinematic analysis of take-off sequences indicates that wing use during the jumping phase of flight initiation is essential for stabilizing flight. During voluntary take-offs, early wing elevation leads to a slower and more stable take-off. In contrast, during visually elicited escapes, the wings are pulled down close to the body during take-off, resulting in tumbling flights in which the fly translates faster but also rotates rapidly about all three of its body axes. Additionally, we find evidence that the power delivered by the legs is substantially greater during visually elicited escapes than during voluntary take-offs. Thus, we find that the two types of Drosophila flight initiation result in different flight performances once the fly is airborne, and that these performances are distinguished by a trade-off between speed and stability.Keywords
This publication has 26 references indexed in Scilit:
- Free-flight responses ofDrosophila melanogasterto attractive odorsJournal of Experimental Biology, 2006
- Making an escape: Development and function of the Drosophila giant fibre systemPublished by Elsevier ,2005
- The aerodynamics of hovering flight inDrosophilaJournal of Experimental Biology, 2005
- Remote Control of Behavior through Genetically Targeted Photostimulation of NeuronsCell, 2005
- Distance and force production during jumping in wild-type and mutantDrosophila melanogasterJournal of Experimental Biology, 2004
- The Aerodynamics of Free-Flight Maneuvers in DrosophilaScience, 2003
- Initiation of flight in the unrestrained fly, Drosophila melanogasterJournal of Zoology, 1995
- A visually elicited escape response in the fly that does not use the giant fiber pathwayVisual Neuroscience, 1994
- A visually evoked escape response of the houseflyJournal of Comparative Physiology A, 1991
- Giant neuron input in mutant and wild typeDrosophilaJournal of Comparative Physiology A, 1974