Neural induction and neurogenesis in amphibian embryos.

A Chitnis, C Kintner
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Abstract

Neural induction has long been known as the process by which the ectoderm of vertebrate embryos initiates neural development. During this inductive interaction, a region of the embryo called the organizer is a source of inducing signals that directs ectoderm away from an epidermal into a neural fate, thereby forming the neural plate and tube. In this review, we will discuss recent progress in characterizing two molecules in Xenopus embryos, noggin and follistatin, which appear to have many of the properties expected of neural inducers produced by the organizer. In addition, we will discuss progress that has been made in characterizing Xenopus homologs of the neurogenic and proneural genes that control the decision between a neural and epidermal fate in the Drosophila embryos. A model is presented in which these genes act downstream of neural induction in vertebrates to control the generation of neural precursor cells during neurogenesis.

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两栖动物胚胎的神经诱导和神经发生。
神经诱导一直被认为是脊椎动物胚胎外胚层启动神经发育的过程。在这种诱导相互作用中,胚胎的一个被称为组织者的区域是诱导信号的来源,该信号引导外胚层从表皮进入神经命运,从而形成神经板和神经管。在这篇综述中,我们将讨论在爪蟾胚胎中表征两个分子的最新进展,noggin和follistatin,它们似乎具有许多由组织者产生的神经诱导剂的特性。此外,我们将讨论在表征控制果蝇胚胎中神经和表皮命运决定的神经源性和前神经基因的爪蟾同源物方面取得的进展。本文提出了一个模型,其中这些基因在脊椎动物神经诱导的下游作用,以控制神经发生过程中神经前体细胞的产生。
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