Differential neurogenic patterns underlie the formation of primary and secondary areas in the developing somatosensory cortex.

IF 2.9 2区 医学 Q2 NEUROSCIENCES Cerebral cortex Pub Date : 2025-02-05 DOI:10.1093/cercor/bhae491
Naoto Ohte, Takayuki Kimura, Rintaro Sekine, Shoko Yoshizawa, Yuta Furusho, Daisuke Sato, Chihiro Nishiyama, Carina Hanashima
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Abstract

The cerebral cortex consists of hierarchically organized areas interconnected by reciprocal axonal projections. However, the coordination of neurogenesis to optimize neuronal production and wiring between distinct cortical areas remains largely unexplored. The somatosensory cortex plays a crucial role in processing tactile information, with inputs from peripheral sensory receptors relayed through the thalamus to the primary and secondary somatosensory areas. To investigate the dynamics of neurogenesis in cortical circuit formation, we employed temporal genetic fate mapping of glutamatergic neuron cohorts across the somatosensory cortices. Our analysis revealed that neuronal production in the secondary somatosensory cortex (S2) precedes that of the primary somatosensory cortex (S1) from the deep-layer neuron production period and terminates earlier. We further revealed a progressive decline in upper-layer neuron output in S2, attributed to the attenuation of the apical ventricular surface, resulting in a reduced number of upper-layer neurons within S2. These findings support the existence of a protomap mechanism governing the area-specific assembly of primary and secondary areas in the developing neocortex.

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不同的神经发生模式是发育中的体感觉皮层初级和次级区域形成的基础。
大脑皮层由等级组织的区域组成,这些区域通过相互的轴突投射相互连接。然而,神经发生的协调以优化神经元的产生和不同皮层区域之间的连接在很大程度上仍未被探索。体感皮层在处理触觉信息中起着至关重要的作用,来自外周感觉受体的输入通过丘脑传递到初级和次级体感区域。为了研究皮层回路形成中神经发生的动力学,我们采用了体感觉皮层谷氨酸能神经元群的时间遗传命运图谱。我们的分析表明,次级体感皮层(S2)的神经元产生早于初级体感皮层(S1),从深层神经元产生期开始,并提前终止。我们进一步揭示了S2中上层神经元输出的进行性下降,这是由于顶室表面的衰减,导致S2中上层神经元数量减少。这些发现支持了一种原图机制的存在,这种机制控制着发育中的新皮层中主要和次要区域的特定区域组装。
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来源期刊
Cerebral cortex
Cerebral cortex 医学-神经科学
CiteScore
6.30
自引率
8.10%
发文量
510
审稿时长
2 months
期刊介绍: Cerebral Cortex publishes papers on the development, organization, plasticity, and function of the cerebral cortex, including the hippocampus. Studies with clear relevance to the cerebral cortex, such as the thalamocortical relationship or cortico-subcortical interactions, are also included. The journal is multidisciplinary and covers the large variety of modern neurobiological and neuropsychological techniques, including anatomy, biochemistry, molecular neurobiology, electrophysiology, behavior, artificial intelligence, and theoretical modeling. In addition to research articles, special features such as brief reviews, book reviews, and commentaries are included.
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