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Genetic manipulation of reptilian embryos: toward an understanding of cortical development and evolution

机译:爬虫类胚胎的遗传操纵:对皮层发育和进化的理解

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The mammalian neocortex is a remarkable structure that is characterized by tangential surface expansion and six-layered lamination. However, how the mammalian neocortex emerged during evolution remains elusive. Because all modern reptiles have a homolog of the neocortex at the dorsal pallium, developmental analyses of the reptilian cortex are valuable to explore the origin of the neocortex. However, reptilian cortical development and the underlying molecular mechanisms remain unclear, mainly due to technical difficulties with sample collection and embryonic manipulation. Here, we introduce a method of embryonic manipulations for the Madagascar ground gecko and Chinese softshell turtle. We established in ovo electroporation and an ex ovo culture system to address neural stem cell dynamics, neuronal differentiation and migration. Applications of these techniques illuminate the developmental mechanisms underlying reptilian corticogenesis, which provides significant insight into the evolutionary steps of different types of cortex and the origin of the mammalian neocortex.
机译:哺乳动物新皮层是一个非凡的结构,其特征为切向表面膨胀和六层层压。然而,哺乳动物新皮层如何在进化过程中出现仍然难以捉摸。由于所有现代爬行动物的背侧皮层都有新皮层的同源物,因此对爬虫类皮层的发育分析对于探索新皮层的起源很有价值。但是,爬行动物的皮质发育和潜在的分子机制仍然不清楚,这主要是由于样品采集和胚胎操作的技术困难。在这里,我们介绍了一种用于马达加斯加地面壁虎和中华Chinese的胚胎操作方法。我们建立了卵内电穿孔和卵外培养系统来解决神经干细胞动力学,神经元分化和迁移。这些技术的应用阐明了爬虫类皮质发生的潜在发展机制,这为深入了解不同类型皮质的进化步骤和哺乳动物新皮质的起源提供了重要见识。

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