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Morphogenetic and Histogenetic Roles of the Temporal-Spatial Organization of Cell Proliferation in the Vertebrate Corticogenesis as Revealed by Inter-specific Analyses of the Optic Tectum Cortex Development

机译:视皮层皮层发育的种间分析揭示了脊椎动物的皮质发生中细胞增殖的时空组织的形态和组织遗传学作用。

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摘要

The central nervous system areas displaying the highest structural and functional complexity correspond to the so called cortices, i.e., concentric alternating neuronal and fibrous layers. Corticogenesis, i.e., the development of the cortical organization, depends on the temporal-spatial organization of several developmental events: (a) the duration of the proliferative phase of the neuroepithelium, (b) the relative duration of symmetric (expansive) versus asymmetric (neuronogenic) sub phases, (c) the spatial organization of each kind of cell division, (e) the time of determination and cell cycle exit and (f) the time of onset of the post-mitotic neuronal migration and (g) the time of onset of the neuronal structural and functional differentiation. The first five events depend on molecular mechanisms that perform a fine tuning of the proliferative activity. Changes in any of them significantly influence the cortical size or volume (tangential expansion and radial thickness), morphology, architecture and also impact on neuritogenesis and synaptogenesis affecting the cortical wiring. This paper integrates information, obtained in several species, on the developmental roles of cell proliferation in the development of the optic tectum (OT) cortex, a multilayered associative area of the dorsal (alar) midbrain. The present review (1) compiles relevant information on the temporal and spatial organization of cell proliferation in different species (fish, amphibians, birds, and mammals), (2) revises the main molecular events involved in the isthmic organizer (IsO) determination and localization, (3) describes how the patterning installed by IsO is translated into spatially organized neural stem cell proliferation (i.e., by means of growth factors, receptors, transcription factors, signaling pathways, etc.) and (4) describes the morpho- and histogenetic effect of a spatially organized cell proliferation in the above mentioned species. A brief section on the OT evolution is also included. This section considers how the differential operation of cell proliferation could explain differences among species.
机译:显示最高结构和功能复杂性的中枢神经系统区域对应于所谓的皮质,即同心交替的神经元和纤维层。皮质发生,即皮质组织的发育,取决于几个发育事件的时空组织:(a)神经上皮细胞增殖期的持续时间,(b)对称(扩张)与不对称(相对)的相对持续时间( (n)个子阶段,(c)每种细胞分裂的空间组织,(e)确定和细胞周期退出的时间,(f)有丝分裂后神经元迁移发生的时间,(g)时间神经元结构和功能分化的发作。前五个事件取决于对增殖活性进行微调的分子机制。它们中任何一个的变化都会显着影响皮层的大小或体积(切向膨胀和径向厚度),形态,结构,并影响神经元和突触发生,从而影响皮层布线。本文整合了在几种物种中获得的信息,这些信息涉及细胞增殖在视皮层(OT)皮质(背中脑的多层关联区域)的发育中的作用。本文综述(1)汇编有关不同物种(鱼类,两栖动物,鸟类和哺乳动物)中细胞增殖的时间和空间组织的相关信息,(2)修改了确定地峡组织者(IsO)涉及的主要分子事件,以及定位,(3)描述了由IsO安装的模式如何转化为空间组织的神经干细胞增殖(即,借助生长因子,受体,转录因子,信号传导途径等),而(4)描述了形态和在上述物种中空间组织的细胞增殖的组织遗传学作用。还包括关于旧约发展的简短部分。本节考虑细胞增殖的差异操作如何解释物种之间的差异。

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