Abstract
ABSTRACTDopamine is one of the most versatile neurotransmitters in invertebrates. It’s distribution and plethora of functions is likely coupled to feeding ecology, especially in Euthyneura (the largest clade of molluscs), which presents the broadest spectrum of environmental adaptations. Still, the analyses of dopamine-mediated signaling were dominated by studies of grazers. Here, we characterize the distribution of dopaminergic neurons in representatives of two distinct ecological groups: the sea angel - obligate predatory pelagic molluscClione limacina(Pteropoda, Gymnosomata) and its prey - the sea devilLimacina helicina(Pteropoda, Thecosomata) as well as the plankton eaterMelibe leonina(Nudipleura, Nudibranchia). By using tyrosine hydroxylase-immunoreactivity (TH-ir) as a reporter, we showed that the dopaminergic system is moderately conservative among euthyneurans. Across all studied species, small numbers of dopaminergic neurons in the central ganglia contrast to significant diversification of TH-ir neurons in the peripheral nervous system, primarily representing sensory-like cells, which predominantly concentrated in the chemotactic areas and projecting afferent axons to the central nervous system. Combined with α-tubulin immunoreactivity, this study illuminates the unprecedented complexity of peripheral neural systems in gastropod molluscs, with lineage-specific diversification of sensory and modulatory functions.
Publisher
Cold Spring Harbor Laboratory
Reference159 articles.
1. Contribution to the Knowledge of the Nudibranchiate Mollusk, Melibe Leonina (Gould)
2. Contributions to the biology of Melibe leonina (Gould, 1852) (Mollusca; Opisthobranchia);Veliger,1976
3. Dopaminergic Modulation of Arousal in Drosophila
4. Analysis of the Central Pattern Generator for Swimming in the Mollusk Clionea
5. Control of locomotion in marine mollusc Clione limacina;I. Efferent activity during actual and fictitious swimming. Experimental brain research,1985