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首页> 外文期刊>Cerebral cortex >Germinal Zones in the Developing Cerebral Cortex of Ferret: Ontogeny, Cell Cycle Kinetics, and Diversity of Progenitors
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Germinal Zones in the Developing Cerebral Cortex of Ferret: Ontogeny, Cell Cycle Kinetics, and Diversity of Progenitors

机译:雪貂大脑皮层中的生殖区:个体发育,细胞周期动力学和祖细胞的多样性。

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摘要

Expansion and folding of the cerebral cortex are landmark features of mammalian brain evolution. This is recapitulated during embryonic development and specialized progenitor cell populations known as intermediate radial glia cells (IRGCs) are believed to play central roles. Because developmental mechanisms involved in cortical expansion and folding are likely conserved across phylogeny, it is crucial to identify features specific for gyrencephaly from those unique to primate brain development. Here, we studied multiple features of cortical development in ferret, a gyrencephalic carnivore, in comparison with primates. Analyzing the combinatorial expression of transcription factors, cytoskeletal proteins, and cell cycle parameters, we identified a combination of traits that distinguish in ferret similar germinal layers as in primates. Transcription factor analysis indicated that inner subventricular zone (ISVZ) and outer subventricular zone (OSVZ) may contain an identical mixture of progenitor cell subpopulations in ferret. However, we found that these layers emerge at different time points, differ in IRGC abundance, and progenitors have different cell cycle kinetics and self-renewal dynamics. Thus, ISVZ and OSVZ are likely distinguished by genetic differences regulating progenitor cell behavior and dynamics. Our findings demonstrate that some, but not all, features of primate cortical development are shared by the ferret, suggesting a conserved role in the evolutionary emergence of gyrencephaly.
机译:大脑皮层的扩张和折叠是哺乳动物大脑进化的标志性特征。这在胚胎发育过程中得到了概括,据信称为中间放射状神经胶质细胞(IRGC)的专门祖细胞群起着核心作用。由于涉及皮层扩张和折叠的发育机制在整个系统发育过程中都可能是保守的,因此从灵长类动物大脑发育的独特特征中识别出针对脑性脑畸变的特征至关重要。在这里,我们研究了与灵长类动物相比,雪貂(一种脑型食肉动物)的皮质发育的多个特征。分析转录因子,细胞骨架蛋白和细胞周期参数的组合表达,我们确定了在雪貂中与灵长类相似的生发层区别的特征的组合。转录因子分析表明,脑室内地下区(ISVZ)和脑室外侧下区(OSVZ)可能在雪貂中含有祖细胞亚群的相同混合物。然而,我们发现这些层出现在不同的时间点,IRGC丰度不同,并且祖细胞具有不同的细胞周期动力学和自我更新动力学。因此,ISVZ和OSVZ可能通过调节祖细胞行为和动力学的遗传差异来区分。我们的发现表明,雪貂具有灵长类动物皮层发育的某些但不是全部特征,这表明在脑脊髓型的进化出现中有保守作用。

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