Synaptic structure, distribution, and circuitry in the central nervous system of the locust and related insects
- 24 January 2002
- journal article
- review article
- Published by Wiley in Microscopy Research and Technique
- Vol. 56 (3) , 210-226
- https://doi.org/10.1002/jemt.10031
Abstract
The Orthopteran central nervous system has proved a fertile substrate for combined morphological and physiological studies of identified neurons. Electron microscopy reveals two major types of synaptic contacts between nerve fibres: chemical synapses (which predominate) and electrotonic (gap) junctions. The chemical synapses are characterized by a structural asymmetry between the pre‐ and postsynaptic electron dense paramembranous structures. The postsynaptic paramembranous density defines the extent of a synaptic contact that varies according to synaptic type and location in single identified neurons. Synaptic bars are the most prominent presynaptic element at both monadic and dyadic (divergent) synapses. These are associated with small electron lucent synaptic vesicles in neurons that are cholinergic or glutamatergic (round vesicles) or GABAergic (pleomorphic vesicles). Dense core vesicles of different sizes are indicative of the presence of peptide or amine transmitters. Synapses are mostly found on small‐diameter neuropilar branches and the number of synaptic contacts constituting a single physiological synapse ranges from a few tens to several thousand depending on the neurones involved. Some principles of synaptic circuitry can be deduced from the analysis of highly ordered brain neuropiles. With the light microscope, synaptic location can be inferred from the distribution of the presynaptic protein synapsin I. In the ventral nerve cord, identified neurons that are components of circuits subserving known behaviours, have been studied using electrophysiology in combination with light and electron microscopy and immunocytochemistry of neuroactive compounds. This has allowed the synaptic distribution of the major classes of neurone in the ventral nerve cord to be analysed within a functional context. Microsc. Res. Tech. 56:210–226, 2002.Keywords
Funding Information
- Deutsche Forschungsgemeinschaft SFB 406 Göttingen
- Wellcome Trust (052313/Z/97)
This publication has 112 references indexed in Scilit:
- Synapse maturation and structural plasticity at Drosophila neuromuscular junctionsCurrent Opinion in Neurobiology, 1996
- The distribution of histamine-immunoreactive neurons in the ventral nerve cord of the cricket, Gryllus bimaculatusCell and tissue research, 1996
- Distribution of synapses on two local auditory interneurones, ON1 and ON2, in the prothoracic ganglion of the cricket: relationships with GABA-immunoreactive neuronesCell and tissue research, 1996
- GABA-immunoreactivity in processes presynaptic to the terminals of afferents from a locust leg proprioceptorJournal of Neurocytology, 1993
- GABA and glutamate-like immunoreactivity in processes presynaptic to afferents from hair plates on the proximal joints of the locust legJournal of Neurocytology, 1991
- Both electrical and chemical transmission between the ?lobula giant movement detector? and the ?descending contralateral movement detector? neurons of locusts are supported by electron microscopyJournal of Neurocytology, 1985
- The dorsal unpaired median neurons of the locust metathoracic ganglion: neuronal structure and diversity, and synapse distributionJournal of Neurocytology, 1984
- Cobalt-coupled neurons of a giant fibre system in DipteraJournal of Neurocytology, 1983
- Motor and sensory flight neurones in a locust demonstrated using cobalt chlorideJournal of Comparative Neurology, 1974
- Electron microscope observations on the calyces of the insect brainJournal of Ultrastructure Research, 1962