Wagner Roger A, Tabibiazar Raymond, Liao Arnold, Quertermous Thomas
Division of Cardiovascular Medicine, Stanford University School of Medicine, Falk CVRC, 300 Pasteur Drive, Stanford, CA 94305, USA.
Dev Biol. 2005 Dec 15;288(2):595-611. doi: 10.1016/j.ydbio.2005.09.036. Epub 2005 Nov 28.
Gene transcription mediates many vital aspects of mammalian embryonic development. A comprehensive characterization and analysis of the dynamics of gene transcription in the embryo is therefore likely to provide significant insights into the basic mechanisms of this process. We used microarrays to map transcription in the mouse embryo in the important period from embryonic day 8 (e8.0) to postnatal day 1 (p1) during which the bulk of the differentiation and development of organ systems takes place. Analysis of these expression profiles revealed distinct patterns of gene expression which correlate with the differentiation of organs including the nervous system, liver, skin, lungs, and digestive system, among others. Statistical analysis of the data based on Gene Ontology (GO) group annotation showed that specific temporal sequence patterns in gene class utilization across development are very similar to patterns seen during the embryonic development of Drosophila, suggesting conservation of the temporal progression of these processes across 550 million years of evolution. The temporal profiles of gene expression and activation of processes revealed here provide intriguing insights into the mechanisms of mammalian development, embryogenesis, and organogenesis, as well as into the evolution of developmental processes.
基因转录介导了哺乳动物胚胎发育的许多重要方面。因此,对胚胎中基因转录动态进行全面的表征和分析,可能会为这一过程的基本机制提供重要见解。我们使用微阵列来绘制小鼠胚胎在从胚胎第8天(e8.0)到出生后第1天(p1)这一重要时期的转录图谱,在此期间,大部分器官系统的分化和发育发生。对这些表达谱的分析揭示了与包括神经系统、肝脏、皮肤、肺和消化系统等在内的器官分化相关的独特基因表达模式。基于基因本体(GO)组注释对数据进行的统计分析表明,整个发育过程中基因类别利用的特定时间序列模式与果蝇胚胎发育期间观察到的模式非常相似,这表明这些过程的时间进程在5.5亿年的进化过程中具有保守性。这里揭示的基因表达和过程激活的时间概况,为哺乳动物发育、胚胎发生和器官发生的机制以及发育过程的进化提供了有趣的见解。