DEVELOPMENTAL-CHANGES IN THE BRAIN-STEM SEROTONERGIC NUCLEI OF TELEOST FISH AND NEURAL PLASTICITY

被引:26
作者
EKSTROM, P
机构
[1] Department of Zoology, University of Lund, Lund, S-223 62
关键词
SEROTONIN; 5-HYDROXYTRYPTAMINE; TRYPTOPHAN; 5-HYDROXYLASE; AROMATIC L-AMINO ACID DECARBOXYLASE; TYROSINE HYDROXYLASE; IMMUNOCYTOCHEMISTRY; GASTEROSTEUS ACULEATUS; ONCORHYNCHUS KISUTSCH; OSTEICHTYES;
D O I
10.1007/BF02088718
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
1. During early ontogeny, the serotonergic neurons in the brain stem of the three-spined stickleback shows a temporal and spatial developmental pattern that closely resembles that of amniotes. 2. However, in the adult fish, only the midline nuclei of the rostral group (dorsal and median raphe nuclei) and the dorsal lateral tegmental nucleus are consistently serotonin-immunoreactive (5-HTir), whereas the groups of the upper and lower rhombencephalon (raphe pontis, raphe magnus, and raphe pallidus/obscurus nuclei) are variable and, when present, contain relatively small numbers of 5-HTir neurons. 3. Using specific antisera against tryptopban 5-hydroxylase and aromatic L-amino acid decarboxylase, we have shown that the lateral B9 group and the groups of the upper and lower rhombencephalon are consistently present in adult sticklebacks. The results are discussed in relation to other known instances of neurotransmitter plasticity or transient neurotransmitter expression in teleost fish. 4. While there are several instances of transient expression of neurotransmitter markers by discrete neuronal populations, there is so far no evidence of changes from one neurotransmitter phenotype to another in the brain of teleost fish. However, there are indications of plasticity of expression of catecholamines and indoleamines, and their respective synthesizing enzymes, as reflected in age-dependent changes and variation between individuals of different physiological status. 5. As the brain grows continuously in teleost fish, and new neurons are added from proliferative regions, synaptic connections may be expected to undergo remodeling in all brain regions throughout life. Thus, the teleostean brain may be considered a suitable model for experimental studies of different aspects of neural plasticity.
引用
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页码:381 / 393
页数:13
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