Electroconvulsive Seizure Behavior inDrosophila: Analysis of the Physiological Repertoire Underlying a Stereotyped Action Pattern in Bang-Sensitive Mutants
Open Access
- 15 December 2002
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 22 (24) , 11065-11079
- https://doi.org/10.1523/jneurosci.22-24-11065.2002
Abstract
Drosophila bang-sensitive mutants display a remarkable stereotyped behavioral sequence during mechanical disturbances. This seizure repertoire consists of initial and delayed bouts of spasm interposed with paralysis and followed by recovery of activity and a period of refractoriness to further stimulation. Electroconvulsive stimuli across the brain induced a similar seizure behavior in tethered flies, in which corresponding electrophysiological events could be readily recorded in indirect flight muscles [dorsal longitudinal muscles (DLMs)] of the giant fiber (GF) pathway. The DLM physiological repertoire consisted of initial and delayed discharges (IDs and DDs), a response failure and recovery, followed by a refractory period. Interestingly, wild-type flies also displayed the same electroconvulsive repertoire, albeit inducible only at higher stimulus intensities and with briefer expression. The DLM repertoire presumably originated from activities of distinct neural circuits subserving normal function and reflected the general sequence of excitation and depression of the nervous system as a whole, as shown by simultaneous recordings along the different body axes. The well characterized GF pathway facilitated localization of circuits responsible for response failure and ID and DD motor patterns by surgical manipulations, recording-stimulating site analysis, and genetic mosaic studies. A flight pattern generator is most likely the major contributor to shaping the DD pattern, with modifications by active integration of individual motor neurons and associated interneurons. The robust electroconvulsive repertoire of DLMs provides a convenient window for further genetic analysis of the interacting neural mechanisms underlying a stereotyped action pattern inDrosophila, which shows striking parallels with aspects of seizure in mammalian species.Keywords
This publication has 37 references indexed in Scilit:
- Targeting Epilepsy GenesNeuron, 1996
- Dendritic reduction inPassover, aDrosophila mutant with a defective giant fiber neuronal pathwayJournal of Neurobiology, 1993
- Clinical and EEG Features of Complex Partial Seizures of Temporal Lobe OriginEpilepsia, 1986
- Identification of a Cholinergic Synapse in the Giant Fiber Pathway ofDrosophilaUsing Conditional Mutations of Acetylcholine SynthesisJournal of Neurogenetics, 1984
- Evidence for a presynaptic blockage of transmission in a temperature‐sensitive mutant of DrosophilaJournal of Neurobiology, 1983
- Neural mechanisms for serial order in a stereotyped behaviour sequenceNature, 1982
- Anatomy of the giant fibre pathway inDrosophila. I. Three thoracic components of the pathwayJournal of Neurocytology, 1980
- Feeding inHelisoma trivolvis: The Morphological and Physiological Bases of a Fixed Action PatternAmerican Zoologist, 1974
- Stereotaxic map of the muscle fibers in the indirect flight muscles ofDrosophila melanogasterJournal of Morphology, 1973
- Neuronal Circuit Mediating Escape Responses in CrayfishScience, 1971