Connectivity of identified central synapses in the cricket is normal following regeneration and blockade of presynaptic activity
- 1 March 1991
- journal article
- research article
- Published by Wiley in Journal of Neurobiology
- Vol. 22 (2) , 130-142
- https://doi.org/10.1002/neu.480220204
Abstract
Cercal sensory neurons in the cricket innervate interneurons in the central nervous system (CNS) and provide a model system for studying the formation of central synapses. When axons of the sensory neurons were transected during larval development, the cell bodies and the soma-bearing portion of axons, which are located within the cercus, survived but lost their excitability for 9–10 days. During this period, the sensory neurons grew new axons and reinnervated the terminal abdominal ganglion. Physiological recordings showed that sensory neurons of known identity reestablished monosynaptic contacts with their normal postsynaptic interneuron. Moreover, each synapse exhibited a characterstic strength indistinguishable from the intact synapse in an unoperated cricket. Since this selective connectivity was apparent immediately after the excitability of the axotomized sensory neurons was restored, action potentials in the sensory neurons appear to be unnecessary for normal synaptic regeneration to occur. Consistent with this, the reinnervation process was unaffected even when action potentials in the sensory neurons were blocked by tetrodotoxin (TTX) immediately following axotomy until just before testing. During the normal course of development, the characteristic strength of individual synapses changes systematically, resulting in the developmental rearrangement of these synapses (Chiba et al., 1988). This synaptic rearrangement was also unaffected when action potentials in the sensory neurons were blocked by TTX for the last 30% of larval development. Therefore, in the cricket cercal sensory system, both regeneration of the central synapses following axotomy of the presynaptic sensory neurons and the normal rearrangement of connectivity during larval development appear not to require axonal action potentials.Keywords
This publication has 40 references indexed in Scilit:
- Axonal guidance in the chick visual system: Posterior tectal membanes induce collapse of growth cones from the temporal retinaNeuron, 1990
- Assembly of the cricket cercal sensory system: Genetic and epigenetic controlJournal of Neurobiology, 1990
- Specification of synaptic connections between sensory and motor neurons in the developing spinal cordJournal of Neurobiology, 1990
- Anatomical specificity of regenerated muscle sensory afferents in the spinal cord of the bullfrogJournal of Neurobiology, 1988
- The synaptic origins of receptive field properties in the cricket cercal sensory systemJournal of Comparative Physiology A, 1988
- Regeneration of afferent axons into discrete tracts within peripheral nerves in the leechBrain Research, 1987
- Competion and the dynamics of axon arbor growth in the cricketJournal of Comparative Neurology, 1986
- The afferent projection of mesothoracic bristle hairs in the cricket,Acheta domesticusJournal of Comparative Physiology A, 1985
- Elvax 40P implants: Sustained, local release of bioactive molecules influencing mammary ductal developmentDevelopmental Biology, 1982
- A topographic map of sensory cell terminal arborizations in the cricket CNS: Correlation with birthday and position in a sensory arrayJournal of Comparative Neurology, 1980