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发育中的脊髓中的 Notch 调节性增殖干细胞区是祖先脊椎动物的特征。

A Notch-regulated proliferative stem cell zone in the developing spinal cord is an ancestral vertebrate trait.

机构信息

Department of Zoology, University of Oxford, 11a Mansfield Road, Oxford OX1 3SZ, UK.

Department of Zoology, University of Oxford, 11a Mansfield Road, Oxford OX1 3SZ, UK

出版信息

Development. 2019 Jan 9;146(1):dev166595. doi: 10.1242/dev.166595.

Abstract

Vertebrates have evolved the most sophisticated nervous systems we know. These differ from the nervous systems of invertebrates in several ways, including the evolution of new cell types, and the emergence and elaboration of patterning mechanisms to organise cells in time and space. Vertebrates also generally have many more cells in their central nervous systems than invertebrates, and an increase in neural cell number may have contributed to the sophisticated anatomy of the brain and spinal cord. Here, we study how increased cell number evolved in the vertebrate central nervous system, investigating the regulation of cell proliferation in the lamprey spinal cord. Markers of proliferation show that a ventricular progenitor zone is found throughout the lamprey spinal cord. We show that inhibition of Notch signalling disrupts the maintenance of this zone. When Notch is blocked, progenitor cells differentiate precociously, the proliferative ventricular zone is lost and differentiation markers become expressed throughout the spinal cord. Comparison with other chordates suggests that the emergence of a persistent Notch-regulated proliferative progenitor zone was a crucial step for the evolution of vertebrate spinal cord complexity.

摘要

脊椎动物进化出了我们所知道的最复杂的神经系统。这些神经系统与无脊椎动物的神经系统在几个方面存在差异,包括新细胞类型的进化,以及组织细胞在时间和空间上的模式形成机制的出现和细化。脊椎动物的中枢神经系统中的细胞数量通常也比无脊椎动物多得多,而神经细胞数量的增加可能促成了大脑和脊髓的复杂解剖结构。在这里,我们研究了脊椎动物中枢神经系统中细胞数量的增加是如何进化的,调查了文昌鱼脊髓中细胞增殖的调控。增殖标记物表明,文昌鱼脊髓中有一个脑室祖细胞区。我们表明,Notch 信号的抑制会破坏这个区域的维持。当 Notch 被阻断时,祖细胞过早分化,增殖的脑室区消失,分化标记物在整个脊髓中表达。与其他脊索动物的比较表明,持续的 Notch 调控的增殖祖细胞区的出现是脊椎动物脊髓复杂性进化的关键步骤。

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