Single-cell transcriptomic resources for tracing neurogenesis and cell fate specification in sea urchin embryos
Ресурсы одноядерной транскриптомики для отслеживания нейрогенеза и спецификации клеточной судьбы в эмбрионах морского ежа
2026-02-15
SCID: 54.1/sndxaju5
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Delta/Notch-sensitive regulatorsHemicentrotus pulcherrimuscell-type deconvolution (bulk to single-cell)neurogenesis gene modulessingle-cell RNA-sequencing atlas
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Abstract (AI)
We generated a developmental stage-specific single-cell RNA-sequencing atlas of the Western Pacific sea urchin Hemicentrotus pulcherrimus, uncovering new gene modules associated with neurogenesis and identifying Delta/Notch-sensitive regulators of neuronal differentiation. Pharmacological perturbation of this pathway revealed neurogenic genes that are inconspicuous under normal conditions and clarified the roles of regional specifiers in maintaining progenitor states. To promote broader accessibility, we developed an interactive web platform within HpBase with Kana, enabling gene expression exploration even for researchers without computational expertise. Furthermore, we performed a cell-type deconvolution method that links bulk RNA sequencing to the single-cell reference, allowing rapid visualization of cell-type composition changes from bulk data alone. These integrated resources and analytical tools not only provide mechanistic insights into echinoderm neurodevelopment but also establish a generalizable workflow for combining bulk and single-cell transcriptomics in non-model organisms, empowering developmental and evolutionary biologists with practical strategies for cell-type-level resolution in complex systems.
Key Findings
1
A cell-type deconvolution method was implemented that links bulk RNA-sequencing to the single-cell reference, enabling rapid visualization of cell-type composition changes from bulk data.
2
A stage-specific single-cell RNA-sequencing atlas was generated for the sea urchin Hemicentrotus pulcherrimus, mapping developmental cell types.
3
An interactive web platform within HpBase using Kana was developed to enable gene expression exploration without computational expertise.
4
Delta/Notch-sensitive regulators of neuronal differentiation were identified, including genes revealed by pharmacological perturbation.
5
New gene modules associated with neurogenesis were uncovered from the single-cell atlas.
6
Pharmacological perturbation of Delta/Notch signaling exposed neurogenic genes that are inconspicuous under normal conditions and clarified regional specifiers' roles in maintaining progenitor states.
7
The resources and tools establish a generalizable workflow for combining bulk and single-cell transcriptomics in non-model organisms, facilitating cell-type-level resolution for developmental and evolutionary studies.
Research Object
Developmental stage-specific single-cell RNA-sequencing atlas of the Western Pacific sea urchin Hemicentrotus pulcherrimus
Research Subject
Gene modules, Delta/Notch-dependent regulators, and cell-type specification dynamics underlying neurogenesis and progenitor state maintenance, plus methods linking bulk RNA-seq to the single-cell reference
Publication Details
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2026-02-15
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