4.5 Article

Morphological analysis of the cerebellum and its efferent system in a basal actinopterygian fish, Polypterus senegalus

期刊

JOURNAL OF COMPARATIVE NEUROLOGY
卷 530, 期 8, 页码 1231-1246

出版社

WILEY
DOI: 10.1002/cne.25271

关键词

AB_10000320; AB_221448; AB_2571781; AB_477329; actinopterygian fish; cerebellar nuclei; cerebellum; efferent neuron; Polypterus; purkinje cell; vglut

资金

  1. JSPS KAKENHI [JP17K07943, JP21K05772]
  2. Ministry of Education, Culture, Sports, Science and Technology

向作者/读者索取更多资源

The study revealed the unique structural features of the bichir cerebellum among vertebrates, with efferent neurons not located in deep cerebellar nuclei but in granular areas. The bichir cerebellum exhibits intermediate features between teleosts and amniote vertebrates, providing insights into the diversity of actinopterygian cerebella.
Although all vertebrate cerebella contain granule cells, Purkinje cells, and efferent neurons, the cellular arrangement and neural circuitry are highly diverse. In amniotes, cerebellar efferent neurons form clusters, deep cerebellar nuclei, lie deep in the cerebellum, and receive synaptic inputs from Purkinje cells but not granule cells. However, in the cerebellum of teleosts, the efferent neurons, called eurydendroid cells, lie near the cell bodies of Purkinje cells and receive inputs both from axons of Purkinje cells and granule cell parallel fibers. It is largely unknown how the cerebellar structure evolved in ray-finned fish (actinopterygians). To address this issue, we analyzed the cerebellum of a bichir Polypterus senegalus, one of the most basal actinopterygians. We found that the cell bodies of Purkinje cells are not aligned in a layer; incoming climbing fibers terminate mainly on the basal portion of Purkinje cells, revealing that the Polypterus cerebellum has unique features among vertebrate cerebella. Retrograde labeling and marker analyses of the efferent neurons revealed that their cell bodies lie in restricted granular areas but not as deep cerebellar nuclei in the cerebellar white matter. The efferent neurons have long dendrites like eurydendroid cells, although they do not reach the molecular layer. Our findings suggest that the efferent system of the bichir cerebellum has intermediate features between teleosts and amniote vertebrates, and provides a model to understand the basis generating diversity in actinopterygian cerebella.

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