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Adult mouse brain gene expression patterns bear an embryologic imprint

机译:成年小鼠大脑基因表达模式具有胚胎学印记

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The current model to explain the organization of the mammalian nervous system is based on studies of anatomy, embryology, and evolution. To further investigate the molecular organization of the adult mammalian brain, we have built a gene expression-based brain map. We measured gene expression patterns for 24 neural tissues covering the mouse central nervous system and found, surprisingly, that the adult brain bears a transcriptional "imprint" consistent with both embryological origins and classic evolutionary relationships. Embryonic cellular position along the anterior-posterior axis of the neural tube was shown to be closely associated with, and possibly a determinant of, the gene expression patterns in adult structures. We also observed a significant number of embryonic patterning and homeobox genes with region-specific expression in the adult nervous system. The relationships between global expression patterns for different anatomical regions and the nature of the observed region-specific genes suggest that the adult brain retains a degree of overall gene expression established during embryogenesis that is important for regional specificity and the functional relationships between regions in the adult. The complete collection of extensively annotated gene expression data along with data mining and visualization tools have been made available on a publicly accessible web site (www.barlow-lockhart-brainmapnimhgrant.org).
机译:当前解释哺乳动物神经系统组织的模型是基于解剖学,胚胎学和进化的研究。为了进一步研究成年哺乳动物脑的分子组织,我们建立了基于基因表达的脑图。我们测量了覆盖小鼠中枢神经系统的24个神经组织的基因表达模式,令人惊讶地发现,成年大脑具有与胚胎起源和经典进化关系一致的转录“烙印”。沿神经管前后轴的胚胎细胞位置显示出与成人结构中的基因表达模式密切相关,并可能决定了该结构。我们还观察到了成年神经系统中大量具有特定区域表达的胚胎模式和同源框基因。不同解剖区域的整体表达模式与观察到的区域特异性基因的性质之间的关系表明,成年大脑保留了在胚胎发生过程中建立的一定程度的整体基因表达,这对于区域特异性和成年区域之间的功能关系很重要。在公共可访问的网站(www.barlow-lockhart-brainmapnimhgrant.org)上提供了完整注释的基因表达数据以及数据挖掘和可视化工具的完整集合。

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