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发育中的鸡三叉神经节的转录图谱。

The transcriptional landscape of the developing chick trigeminal ganglion.

作者信息

Leonard Carrie E, McIntosh Alec, Sanyal Johena, Taneyhill Lisa A

机构信息

Department of Animal and Avian Sciences, University of Maryland, College Park, MD, 20742, USA.

Lombardi Comprehensive Cancer Center, Georgetown University, Washington, DC, 20007, USA.

出版信息

Dev Biol. 2025 Apr;520:108-116. doi: 10.1016/j.ydbio.2024.12.013. Epub 2024 Dec 22.

Abstract

The trigeminal ganglion is a critical structure in the peripheral nervous system, responsible for transmitting sensations of touch, pain, and temperature from craniofacial regions to the brain. Trigeminal ganglion development depends upon intrinsic cellular programming as well as extrinsic signals exchanged by diverse cell populations. With its complex anatomy and dual cellular origin from cranial placodes and neural crest cells, the trigeminal ganglion offers a rich context for examining diverse biological processes, including cell migration, fate determination, adhesion, and axon guidance. Avian models have, so far, enabled key insights into craniofacial and peripheral nervous system development. Yet the molecular mechanisms driving trigeminal ganglion formation and subsequent nerve growth remain elusive. In this study, we performed RNA-sequencing at multiple stages of chick trigeminal ganglion development and generated a novel transcriptomic dataset that has been curated to illustrate temporally dynamic gene expression patterns. This publicly available resource identifies major pathways involved in trigeminal gangliogenesis, particularly with respect to the condensation and maturation of placode-derived neurons, thus inviting new lines of research into the essential processes governing trigeminal ganglion development.

摘要

三叉神经节是周围神经系统中的一个关键结构,负责将颅面部区域的触觉、疼痛和温度感觉传递至大脑。三叉神经节的发育取决于内在的细胞编程以及不同细胞群体之间交换的外在信号。由于其复杂的解剖结构以及源自颅基板和神经嵴细胞的双重细胞起源,三叉神经节为研究包括细胞迁移、命运决定、黏附及轴突导向等多种生物学过程提供了丰富的背景。迄今为止,禽类模型已使我们对颅面部和周围神经系统的发育有了重要的认识。然而,驱动三叉神经节形成及随后神经生长的分子机制仍不清楚。在本研究中,我们在鸡三叉神经节发育的多个阶段进行了RNA测序,并生成了一个经过整理的新转录组数据集,以阐明随时间变化的动态基因表达模式。这个公开可用的资源确定了参与三叉神经节形成的主要途径,特别是关于基板衍生神经元的聚集和成熟,从而引发了对控制三叉神经节发育的基本过程的新研究方向。

相似文献

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The transcriptional landscape of the developing chick trigeminal ganglion.发育中的鸡三叉神经节的转录图谱。
Dev Biol. 2025 Apr;520:108-116. doi: 10.1016/j.ydbio.2024.12.013. Epub 2024 Dec 22.

本文引用的文献

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The Gene Ontology knowledgebase in 2023.2023 版基因本体论知识库。
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Gene Set Knowledge Discovery with Enrichr.基因集知识发现与 Enrichr
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