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首页> 外文期刊>Developmental cell >The Temporal Sequence of the Mammalian Neocortical Neurogenetic Program Drives Mediolateral Pattern in the Chick Pallium
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The Temporal Sequence of the Mammalian Neocortical Neurogenetic Program Drives Mediolateral Pattern in the Chick Pallium

机译:哺乳动物新皮层神经遗传程序的时间序列驱动小鸡大脑皮外侧模式。

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The six-layered neocortex permits complex information processing in all mammalian species. Because its homologous region (the pallium) in nonmammalian amniotes has a different architecture, the ability of neocortical progenitors to generate an orderly sequence of distinct cell types was thought to have arisen in the mammalian lineage. This study, however, shows that layer-specific neuron subtypes do exist in the chick pallium. Deep- and upper-layer neurons are not layered but are segregated in distinct mediolateral domains in vivo. Surprisingly, cultured chick neural progenitors produce multiple layer-specific neuronal subtypes in the same chronological sequence as seen in mammals. These results suggest that the temporal sequence of the neocortical neurogenetic program was already inherent in the last common ancestor of mammals and birds and that mammals use this conserved program to generate a uniformly layered neocortex, whereas birds impose spatial constraints on the sequence to pattern the pallium. Video Abstract: . Suzuki et al. find that " layer-specific" neuron subtypes typical of mammalian neocortex are arranged mediolaterally in the chick pallium. Their results indicate that mammalian neocortical and chick pallial progenitors use the same temporally ordered neurogenetic program to generate subtype-specific progeny, but chick pallial output is spatially constrained by developmental patterning.
机译:六层新皮层允许在所有哺乳动物物种中进行复杂的信息处理。由于其在非哺乳动物羊膜中的同源区域(皮层)具有不同的结构,因此认为在哺乳动物谱系中已经出现了新皮层祖细胞产生有序序列的不同细胞类型的能力。然而,这项研究表明,在鸡皮层中确实存在特定于层的神经元亚型。深层和上层神经元不是分层的,而是在体内隔离在不同的内侧区域中。出乎意料的是,培养的雏鸡神经祖细胞以与哺乳动物相同的时间顺序产生多层特定的神经元亚型。这些结果表明,新皮质神经发生程序的时间序列已经是哺乳动物和鸟类的最后共同祖先所固有的,并且哺乳动物使用该保守程序来生成均匀分层的新皮质,而鸟类对该序列施加空间约束以图案化大脑皮层。 。影片摘要:。铃木等。发现在哺乳动物的新皮层中典型的“层特异性”神经元亚型在小鸡的大脑皮侧面排列。他们的结果表明,哺乳动物新皮层和雏鸡的祖细胞使用相同的时间有序的神经遗传程序来生成亚型特异性后代,但雏鸡的输出在空间上受到发育模式的限制。

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