Ancient emergence of neuronal heterogeneity in the enteric nervous system of jawless vertebrates.

IF 2.5 3区 生物学 Q2 DEVELOPMENTAL BIOLOGY Developmental biology Pub Date : 2025-01-03 DOI:10.1016/j.ydbio.2024.12.020
Brittany M Edens, Jason Lin, Marianne E Bronner
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Abstract

While the enteric nervous system (ENS) of jawed vertebrates is largely derived from the vagal neural crest, lamprey are jawless vertebrates that lack the vagal neural crest, yet possess enteric neurons derived from late-migrating Schwann cell precursors. To illuminate homologies between the ENS of jawed and jawless vertebrates, here we examine the diversity and distribution of neuronal subtypes within the intestine of the sea lamprey during late embryonic and ammocete stages. In addition to previously described 5-HT-immunoreactive serotonergic neurons, we identified NOS+ and VIP+ neurons, consistent with motor neuron identity. Moreover, the presence of Calbindin+ neurons was suggestive of sensory IPANs. Quantification of neural numbers by subtype across the length of the intestine revealed significant, albeit subtle differences in distribution of neuronal markers at different axial levels, suggesting that the complex organizational features of the ENS may have emerged much earlier in the vertebrate lineage than previously appreciated.

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来源期刊
Developmental biology
Developmental biology 生物-发育生物学
CiteScore
5.30
自引率
3.70%
发文量
182
审稿时长
1.5 months
期刊介绍: Developmental Biology (DB) publishes original research on mechanisms of development, differentiation, and growth in animals and plants at the molecular, cellular, genetic and evolutionary levels. Areas of particular emphasis include transcriptional control mechanisms, embryonic patterning, cell-cell interactions, growth factors and signal transduction, and regulatory hierarchies in developing plants and animals.
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Ancient emergence of neuronal heterogeneity in the enteric nervous system of jawless vertebrates. Moderate levels of folic acid benefit outcomes for cilia based neural tube defects. Spatiotemporal control of cell ablation using Ronidazole with Nitroreductase in Drosophila. Introduction to "Research that Transformed Developmental Biology". Teaching Students to Effectively Evaluate Scientific Evidence and Advocate for Research in the Context of Autism Spectrum Disorder and the Neurodiversity Movement.
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