Department of Bioengineering, University of Pennsylvania, Philadelphia, PA 19104-6321, USA.
Development. 2013 Aug;140(16):3385-94. doi: 10.1242/dev.098012. Epub 2013 Jul 17.
Cell differentiation and proliferation are coordinated during animal development, but the link between them remains uncharacterized. To examine this relationship, we combined single-molecule RNA imaging with time-lapse microscopy to generate high-resolution measurements of transcriptional dynamics in Caenorhabditis elegans embryogenesis. We found that globally slowing the overall development rate of the embryo by altering temperature or by mutation resulted in cell proliferation and transcription slowing, but maintaining, their relative timings, suggesting that cell division may directly control transcription. However, using mutants with specific defects in cell cycle pathways that lead to abnormal lineages, we found that the order between cell divisions and expression onset can switch, showing that expression of developmental regulators is not strictly dependent on cell division. Delaying cell divisions resulted in only slight changes in absolute expression time, suggesting that expression and proliferation are independently entrained to a separate clock-like process. These changes in relative timing can change the number of cells expressing a gene at a given time, suggesting that timing may help determine which cells adopt particular transcriptional patterns. Our results place limits on the types of mechanisms that are used during normal development to ensure that division timing and fate specification occur at appropriate times.
在动物发育过程中,细胞分化和增殖是协调进行的,但它们之间的联系尚不清楚。为了研究这种关系,我们结合单分子 RNA 成像和延时显微镜,生成了秀丽隐杆线虫胚胎发生过程中转录动态的高分辨率测量结果。我们发现,通过改变温度或突变全局减缓胚胎的整体发育速度会导致细胞增殖和转录速度减缓,但保持它们的相对时间,表明细胞分裂可能直接控制转录。然而,使用具有导致异常谱系的特定细胞周期途径缺陷的突变体,我们发现细胞分裂和表达起始之间的顺序可以切换,表明发育调节剂的表达并不严格依赖于细胞分裂。延迟细胞分裂仅导致绝对表达时间的微小变化,表明表达和增殖独立于一个单独的类似时钟的过程。这种相对时间的变化可以改变在给定时间表达基因的细胞数量,表明时间可能有助于确定哪些细胞采用特定的转录模式。我们的结果限制了在正常发育过程中使用的机制类型,以确保分裂时间和命运指定在适当的时间发生。