Evolution of regional identity in the vertebrate nervous system.

P W Holland, A Graham
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Abstract

When and how did the mechanisms controlling regional identity in the vertebrate neural tube arise during evolution? The anatomy and embryology of the major deuterostome phyla (echinoderms, hemichordates, chordates) suggest that a true neural tube with dorsoventral and mediolateral regionalization arose with the chordates. We suggest that this was intimately associated with the origin of the notochord; this leads us to propose a modification of Garstang's century-old scenario for origins of the chordate neural tube. Differences along the rostrocaudal axis are seen in all chordates, but became particularly pronounced with the origin of a brain in craniates. Recent molecular data are starting to give insights into these evolutionary transitions. Here we review how Hox gene expression patterns are giving clues to brain origins and we examine the role of molecular phylogenetics in these analyses. We also ask whether the molecular evolution of genes such as noggin, Brachyury, Sonic hedgehog, Wnt, and En may have played direct or permissive roles in the origins of the neural plate, notochord, floor plate, and brain.

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脊椎动物神经系统区域认同的进化。
在进化过程中,控制脊椎动物神经管区域身份的机制是何时以及如何出现的?主要后口动物门(棘皮动物、半足动物、脊索动物)的解剖学和胚胎学表明,脊索动物出现了一个真正的神经管,具有背腹侧和中外侧的区域。我们认为这与脊索的起源密切相关;这让我们提出了对Garstang关于脊索神经管起源的百年假设的修正。在所有脊索动物中都可以看到沿背尾轴的差异,但在颅脑的起源中变得特别明显。最近的分子数据开始为这些进化转变提供见解。在这里,我们回顾了Hox基因表达模式如何为大脑起源提供线索,并研究了分子系统发育在这些分析中的作用。我们还询问noggin、Brachyury、Sonic hedgehog、Wnt和En等基因的分子进化是否在神经板、脊索、底板和大脑的起源中发挥了直接或间接的作用。
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