Development of catecholamine systems in the brain of the lizard Gallotia galloti
- 1 December 1994
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 350 (1) , 41-62
- https://doi.org/10.1002/cne.903500104
Abstract
For a better insight into general and derived traits of developmental aspects of catecholaminergic (CA) systems in amniotes, we have studied the development of these systems in the brain of a lizard, Gallotia galloti, with tyrosine hydroxylase (TH)- and dopamine (DA) immunohistochemical techniques. Two main groups of TH-immunoreactive (THi) perikarya appear very early in development: one group in the midbrain which gives rise to the future ventral tegmental area, substantia nigra and retrorubral cell groups, and another group in the tuberomammillary hypothalamus. Somewhat later in development, TH/DA-immunoreactive cells are observed in the thalamus, rostrodorsal hypothalamus and spinal cord, and, with another delay, in the suprachiasmatic nucleus, the periventricular organ, and the pretectal posterodorsal nucleus. CA cell groups that appear rather late in development include the cells in the olfactory bulb, the locus coeruleus and the caudal brainstem. As expected, the development of immunoreactive fibers stays behind that of the cell bodies, but reaches the adult-like pattern just prior to hatching. The present study revealed considerable variation in the relation between the state of cytodifferentiation and first expression of TH/DA immunoreactivity between CA cell groups. Catecholamine cells in the midbrain and tuberomammillary hypothalamus are still migrating, immature (absence of dendrites) and express only TH immunoreactivity at the time of first detection. Cells which appear at later developmental stages lie already further away from the ventricle, possess two or more dendritic prccesses, and generally express both TH- and DA immunoreactivity. © 1994 Wiley-Liss. Inc.Keywords
This publication has 62 references indexed in Scilit:
- Development of tyrosine hydroxylase-, dopamine- and dopamine β-hydroxylase-immunoreactive neurons in a teleost, the three-spined sticklebackJournal of Chemical Neuroanatomy, 1992
- Differential ontogeny of functional dopamine and muscarinic receptors mediating presynaptic inhibition of neurotransmitter release and postsynaptic regulation of adenylate cyclase activity in rat striatumDevelopmental Brain Research, 1992
- α-MPT does not affect dopamine levels in the periventricular organ of lizardsNeuroReport, 1991
- Are putative dopamine-accumulating cell bodies in the hypothalamic periventricular organ a primitive brain character of non-mammalian vertebrates?Neuroscience Letters, 1990
- Segmental patterns of neuronal development in the chick hindbrainNature, 1989
- Transient tyrosine hydroxylase-like immunoreactive neurons contain somatostatin and substance P in the developing amygdala and bed nucleus of the stria terminalis of the ratDevelopmental Brain Research, 1988
- Anterior dorsal ventricular ridge in the lizard: Embryonic developmentJournal of Morphology, 1987
- Transient expression of tyrosine hydroxylase in some neurons of the developing inferior colliculus of the ratDevelopmental Brain Research, 1983
- The time of genesis, embryonic origin and differentiation of the brain stem monoamine neurons in the rhesus monkeyDevelopmental Brain Research, 1982
- Initial development of the noradrenergic phenotype in autonomic neuroblasts of the rat embryo in vivoDevelopmental Biology, 1979