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Deterministic Progenitor Behavior and Unitary Production of Neurons in the Neocortex

机译:新皮质中神经元的确定性祖细胞行为和单位产生

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Radial glial progenitors (RGPs) are responsible for producing nearly all neocortical neurons. To gain insight into the patterns of RGP division and neuron production, we quantitatively analyzed excitatory neuron genesis in the mouse neocortex using Mosaic Analysis with Double Markers, which provides single-cell resolution of progenitor division patterns and potential in vivo. We found that RGPs progress through a coherent program in which their proliferative potential diminishes in a predictable manner. Upon entry into the neurogenic phase, individual RGPs produce ~8-9 neurons distributed in both deep and superficial layers, indicating a unitary output in neuronal production. Removal of OTX1, a transcription factor transiently expressed in RGPs, results in both deep-and superficial-layer neuron loss and a reduction in neuronal unit size. Moreover, ~1/6 of neurogenic RGPs proceed to produce glia. These results suggest that progenitor behavior and histogenesis in the mammalian neocortex conform to a remarkably orderly and deterministic program.
机译:ial神经胶质祖细胞(RGP)负责产生几乎所有新皮层神经元。为了深入了解RGP分裂和神经元产生的模式,我们使用带有双标记的马赛克分析定量分析了小鼠新皮层中兴奋性神经元的发生,该分析提供了祖细胞分裂模式的单细胞分辨率和体内潜能。我们发现,RGPs通过一个连贯的程序进展,在该程序中,其增殖潜力以可预测的方式降低。进入神经发生期后,各个RGP会产生约8-9个神经元,分布在深层和表层,这表明神经元的产生具有统一的输出。 OTX1(在RGP中瞬时表达的转录因子)的去除会导致深层和表层神经元丢失,并导致神经元单位大小减少。此外,约1/6的神经源性RGP继续产生神经胶质。这些结果表明,哺乳动物新皮层中的祖细胞行为和组织发生符合显着有序和确定性的程序。

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