Literature DB >> 7690786

Neurotransmitters in the nervous system of Macoma balthica (Bivalvia).

T Karhunen1, M S Airaksinen, L Tuomisto, P Panula.   

Abstract

The distribution of histamine-, octopamine-, gamma-aminobutyric acid- (GABA) and taurine-like immunoreactivity in the bivalve mollusc Macoma balthica was studied immunocytochemically with antisera produced in rabbits. Histamine levels in the ganglia and whole animals were also measured by high-performance liquid chromatography using a postcolumn derivatization method. Immunoreactivity for these substances, except for taurine, is found in the central nervous system of this species. The most extensive neuronal system is revealed with the antiserum against histamine. All the main ganglia contain histamine-immunoreactive cell bodies, and a dense network of nerve fibers is seen in the ganglia and nerve roots. Histamine-immunoreactive nerve fibers project to the mantle edge, lips and oesophagus. The basal part of the inhalant siphon is rich in histamine-immunoreactive fibers. Unlike histamine, octopamine- and GABA-like immunoreactivities are restricted to the central nervous system. Taurine-like immunoreactivity is not found in the nervous system of this species. In the nervous system, histamine-immunoreactive cell bodies and fibers are more numerous than those that are octopamine- and GABA-immunoreactive. The distribution of these substances in the ganglia is different. GABA-immunoreactive cells are typically smaller than most of the histamine- and octapamine-immunoreactive cells. Most GABA- and octopamine-immunoreactive cells and fibers are located in the pedal ganglion. Histamine is distributed more evenly in the ganglia and nerve roots. The biochemical measurements of histamine correlate well with the immunohistochemical findings and confirm the predominant location of the amine in the nervous tissue. These results suggest that histamine is more widespread than some other putative transmitters, and support the concept that histamine may have an important role in many physiological processes in molluscs.

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Year:  1993        PMID: 7690786     DOI: 10.1002/cne.903340311

Source DB:  PubMed          Journal:  J Comp Neurol        ISSN: 0021-9967            Impact factor:   3.215


  6 in total

1.  Cerebral Dopamine Neurotrophic Factor Regulates Multiple Neuronal Subtypes and Behavior.

Authors:  Yu-Chia Chen; Diego Baronio; Svetlana Semenova; Shamsiiat Abdurakhmanova; Pertti Panula
Journal:  J Neurosci       Date:  2020-07-06       Impact factor: 6.167

2.  The Presence of Histamine and a Histamine Receptor in the Bivalve Mollusc, Crassostrea virginica.

Authors:  Jarreau Harrison; Kisha LaFleur; Daniel Mantone; Beatrix Boisette; Ave Harris; Edward J Catapane; Margaret A Carroll
Journal:  In Vivo (Brooklyn)       Date:  2015

3.  Presence of Octopamine and an Octopamine Receptor in Crassostrea virginica.

Authors:  Kerri Pryce; Dahniel Samuel; Elsie Lagares; Mathilde Myrthil; Fiana Bess; Ave Harris; Christopher Welsh; Margaret A Carroll; Edward J Catapane
Journal:  In Vivo (Brooklyn)       Date:  2015

4.  Histamine Immunoreactive Elements in the Central and Peripheral Nervous Systems of the Snail, Biomphalaria spp., Intermediate Host for Schistosoma mansoni.

Authors:  Mohamed R Habib; Azza H Mohamed; Gamalat Y Osman; Ahmed T Sharaf El-Din; Hanan S Mossalem; Nadia Delgado; Grace Torres; Solymar Rolón-Martínez; Mark W Miller; Roger P Croll
Journal:  PLoS One       Date:  2015-06-18       Impact factor: 3.240

5.  Distribution of Molecules Related to Neurotransmission in the Nervous System of the Mussel Crenomytilus grayanus.

Authors:  Elena Kotsyuba; Alexander Kalachev; Polina Kameneva; Vyacheslav Dyachuk
Journal:  Front Neuroanat       Date:  2020-06-30       Impact factor: 3.856

6.  Neurogenesis of the scallop Azumapecten farreri: from the first larval sensory neurons to the definitive nervous system of juveniles.

Authors:  Marina Kniazkina; Vyacheslav Dyachuk
Journal:  Front Zool       Date:  2022-08-03       Impact factor: 3.300

  6 in total

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