Hashimshony Tamar, Yanai Itai
Department of Biology; Technion-Israel Institute of Technology; Haifa, Israel.
Transcription. 2010 Nov;1(3):154-158. doi: 10.4161/trns.1.3.13190. Epub 2010 Jul 27.
Metazoan development relies upon the precise control of the genome's expression. This enables different cells in the animal to have different properties, despite having the same genetic material, and different animals to have different morphologies despite sharing developmental genes. However, near-identical organisms may have different overall genomic content, suggesting that the mechanisms by which evolution of the phenotype proceeds on a global level are not well understood. We review here recent works that have discovered a tremendous amount of variation between the developmental transcriptomes of both closely and distantly related organisms. It is evident that the evolution of regulatory programs occurs at a rapid rate comparable to that of other genomic processes. Distinguishing the selective pressures on each regulatory element will thus be crucial towards understanding its functional relevance. We propose that such a comparative approach is most suited to the identification of unifying principles in cell fate specification and differentiation in the animal embryo.
后生动物的发育依赖于基因组表达的精确调控。这使得动物体内不同的细胞尽管拥有相同的遗传物质却具有不同的特性,不同的动物尽管共享发育基因却具有不同的形态。然而,近乎相同的生物体可能具有不同的整体基因组内容,这表明在全球范围内,表型进化所依赖的机制尚未得到充分理解。我们在此回顾了近期的研究成果,这些研究发现了亲缘关系远近不同的生物体在发育转录组之间存在大量差异。显然,调控程序的进化速度与其他基因组过程相当之快。因此,区分每个调控元件上的选择压力对于理解其功能相关性至关重要。我们认为,这种比较方法最适合用于识别动物胚胎细胞命运决定和分化中的统一原则。