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Evolution of Cortical Neurogenesis in Amniotes Controlled by Robo Signaling Levels

机译:基于机器人信号水平控制的羊膜内生殖的进化

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摘要

Cerebral cortex size differs dramatically between reptiles, birds, and mammals, owing to developmental differences in neuron production. In mammals, signaling pathways regulating neurogenesis have been identified, but genetic differences behind their evolution across amniotes remain unknown. We show that direct neurogenesis from radial glia cells, with limited neuron production, dominates the avian, reptilian, and mammalian paleocortex, whereas in the evolutionarily recent mammalian neocortex, most neurogenesis is indirect via basal progenitors. Gain- and loss-of-function experiments in mouse, chick, and snake embryos and in human cerebral organoids demonstrate that high Slit/Robo and low Dll1 signaling, via Jag1 and Jag2, are necessary and sufficient to drive direct neurogenesis. Attenuating Robo signaling and enhancing Dll1 in snakes and birds recapitulates the formation of basal progenitors and promotes indirect neurogenesis. Our study identifies modulation in activity levels of conserved signaling pathways as a primary mechanism driving the expansion and increased complexity of the mammalian neocortex during amniote evolution.
机译:由于神经元生产的发育差异,脑皮层尺寸在爬行动物,鸟类和哺乳动物之间显着不同。在哺乳动物中,已经确定了调节神经发生的信号传导途径,但在羊膜羊皮内的演变背后的遗传差异仍然未知。我们表明,桡骨细胞的直接神经发生,神经元生产有限,牧师,爬行动物和哺乳动物古古物质,而在进化最近的哺乳动物Neocortex中,大多数神经发生是通过基础祖细胞间接间接的。小鼠,小鸡和蛇胚胎和人类脑细胞体中的功能和函数丧失实验表明,通过JAG1和JAG2,高狭缝/ ROBO和低DLL1信号传导是必要的,并且足以驱动直接神经发生。在蛇和鸟类中衰减ROBO信号和增强DLL1,促进了基础祖细胞的形成,并促进间接神经发生。我们的研究识别了作为推动哺乳动物进化期间哺乳动物Neocortex的膨胀和增加复杂性的主要机制中的活动水平的调制。

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  • 来源
    《Cell》 |2018年第3期|共38页
  • 作者单位

    CSIC Inst Neurociencias Alacant 03550 Spain;

    CSIC Inst Neurociencias Alacant 03550 Spain;

    CSIC Inst Neurociencias Alacant 03550 Spain;

    CSIC Inst Neurociencias Alacant 03550 Spain;

    Max Planck Inst Psychiat Dev Neurobiol D-80804 Munich Germany;

    Univ Geneva Dept Genet &

    Evolut CH-1205 Geneva Switzerland;

    Stanford Univ Dept Biol Stanford CA 94305 USA;

    Thomas Jefferson Univ Sydney Kimmel Med Coll Vickie &

    Jack Farber Inst Neurosci Jefferson Synapt Biol Ctr Dept Neurosci Philadelphia PA 19107 USA;

    Helmholtz Ctr Munich Inst Stem Cell Res D-85764 Neuherberg Germany;

    Max Planck Inst Psychiat Dev Neurobiol D-80804 Munich Germany;

    CSIC Inst Neurociencias Alacant 03550 Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

  • 入库时间 2022-08-19 23:27:52

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