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◆ Science Advances2025-11-05· Echinoderm

Single-nucleus profiling highlights the all-brain echinoderm nervous system

Periklis Paganos, Jack Ullrich-Lüter, Alba Almazán, Danila Voronov, Jil Carl, Anne-C. Zakrzewski, Berit Zemann, Maria Lorenza Rusciano, Tiphaine Sancerni, Maria Schauer, Oğuz Akar, Filomena Caccavale, Maria Cocurullo, Giovanna Benvenuto, Jenifer C. Croce, Carsten Lüter, Maria Ina Arnone

原始摘要(英文原文)· Original abstract
Metazoans comprise diverse tissues and cell types, each essential for the organismal survival. Most of these types are established early in embryogenesis and persist into adulthood. In indirectly developing sea urchins, however, the continuity between embryonic and adult stages is interrupted by a planktonic larval stage that undergoes complete metamorphosis. While gene regulatory networks controlling embryonic and larval lineages are well studied, the molecular and morphological identities of postmetamorphic cell types remain poorly understood. Here, we reconstructed the cell atlas of postmetamorphic Paracentrotus lividus juveniles using single-nucleus transcriptomics, revealing conservation of regulatory mechanisms. We identified signatures of eight distinct cell type groups and analyzed 29 neuronal families, including 15 unique photoreceptor types. By combining transcriptomics, spatial analysis, and ultrastructure, we identified vertebrate neuronal and opsin homologs expressed across the juvenile. These findings show that the echinoderm body plan is predominantly head-like and exhibits an “all-brain” organization.
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Single-nucleus profiling highlights the all-brain echinoderm nervous system — 科研速览 Science Skim