Early expression of acetylcholinesterase activity in functionally distinct neurons of the zebrafish
- 15 June 1989
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 284 (3) , 350-361
- https://doi.org/10.1002/cne.902840303
Abstract
The first expression and distribution of acetylcholinesterase (AChE) activity was studied among a distinct population of early neurons in embryonic zebrafish by using histochemical and retrograde labeling techniques. AChE first appeared in the nervous system in the primary motoneurons of the rostral spinal cord when the embryo had nine somites, approximately 14 hours postfertilization. Subsequent expression of AChE activity in the spinal cord proceeded in a rostral‐to‐caudal sequence. Cranial neurons expressed AChE activity shortly after it appeared in the rostral spinal cord. Several hours later, near the end of the first day, primary neurons in the hindbrain and spinal cord all contained AChE, including sensory neurons, reticulospinal interneurons, and primary motoneurons. AChE activity was also detected in the nucleus of the medial longitudinal fasciculus. Presumptive cranial ganglia transiently expressed AChE activity between 14 and 24 hours of development. These results, combined with previous observations that examined the time of origin and axogenesis of primary neurons, suggest that primary neurons in the embryonic zebrafish contain AChE before they sprout axons. The primary neurons appear to follow a common sequence of development consisting of a withdrawal from the cell division cycle, the expression of AChE, and axogenesis. Although this sequence is followed by all primary neurons, lack of a rostral‐to‐caudal sequence in the time of birth and variability in the time of axon outgrowth demonstrate that the relative timing of these three events is not rigidly programmed in individual neurons. Moreover, the very early expression of AChE in such diverse cell types suggests that it may have a developmental role in addition to its function in transmitter metabolism.Keywords
This publication has 55 references indexed in Scilit:
- Neuromuscular specificity: pathfinding by identified motor growth cones in a vertebrate embryoTrends in Neurosciences, 1988
- A neural degeneration mutation that spares primary neurons in the zebrafishDevelopmental Biology, 1988
- Development of reticulospinal neurons of the zebrafish. II. Early axonal outgrowth and cell body positionJournal of Comparative Neurology, 1986
- Cell lineage of zebrafish blastomeresDevelopmental Biology, 1985
- Evidence for neurotransmitter plasticity in vivo: Developmental changes in properties of cholinergic sympathetic neuronsDevelopmental Biology, 1983
- Cholinergic enzyme activity in neurons of the developing anuran spinal cordDevelopmental Brain Research, 1983
- The Identity of the Serotonin‐Sensitive Aryl Acylamidase with Acetylcholinesterase from Human Erythrocytes, Sheep Basal Ganglia and Electric EelEuropean Journal of Biochemistry, 1980
- Initial development of the noradrenergic phenotype in autonomic neuroblasts of the rat embryo in vivoDevelopmental Biology, 1979
- Ultrastructural development of Rohon-Beard neurons: Loss of intramitochondrial granules parallels loss of calcium action potentialsJournal of Comparative Neurology, 1979
- Acetylcholine and its metabolic enzymes in developing antennae of the moth, Manduca sextaDevelopmental Biology, 1976