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Changes in the regulation of cortical neurogenesis contribute to encephalization during amniote brain evolution

机译:羊膜动物大脑进化过程中皮层神经发生调控的变化有助于脑化

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The emergence of larger brains with large numbers of neurons is an evolutionary innovation in mammals and birds. However, the corresponding changes in cortical developmental programmes during amniote evolution are poorly understood. Here we examine the cortical development of Madagascar ground geckos, and report unique characteristics of their reptilian cortical progenitors. The rates of proliferation and neuronal differentiation in the gecko cortex are much lower than those in other amniotes. Notch signalling is highly activated in the gecko cortical progenitors, which provides a molecular basis for the low rate of cortical neurogenesis. Interestingly, multiple neuron subtypes are sequentially generated in the gecko cortex, similar to other amniotes. These results suggest that changes in the regulation of cortical neural progenitors have accelerated neurogenesis and provided encephalization in mammalian and archosaurian lineages. In addition, the temporal regulation for making cortical neuronal subtypes has evolved in a common ancestor(s) of amniotes.
机译:具有大量神经元的大脑的出现是哺乳动物和鸟类的进化创新。但是,对羊膜进化过程中皮质发育程序的相应变化知之甚少。在这里,我们检查了马达加斯加地面壁虎的皮质发育,并报告了其爬虫类皮质祖细胞的独特特征。壁虎皮层的增殖和神经元分化速率远低于其他羊膜动物。 Notch信号在壁虎皮质祖细胞中被高度激活,为皮质神经发生的低发生率提供了分子基础。有趣的是,类似于其他羊膜动物,在壁虎皮质中依次生成了多个神经元亚型。这些结果表明,皮质神经祖细胞调控的改变加速了神经发生,并在哺乳动物和始祖鸟的血统中提供了脑化作用。另外,用于制造皮质神经元亚型的时间调节在羊膜动物的共同祖先中已经发展。

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