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Spatiotemporal resolution of the Ntla transcriptome in axial mesoderm development

机译:Ntla转录组在中胚层发育中的时空分辨率

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摘要

Transcription factors have diverse roles during embryonic development, combinatorially controlling cellular states in a spatially and temporally defined manner. Resolving the dynamic transcriptional profiles that underlie these patterning processes is essential for understanding embryogenesis at the molecular level. Here we show how temporal, tissue-specific changes in embryonic transcription factor function can be discerned by integrating caged morpholino oligonucleotides with photoactivatable fluorophores, fluorescence-activated cell sorting and microarray technologies. As a proof of principle, we have dynamically profiled No tail a (Ntla)-dependent genes at different stages of axial mesoderm development in zebrafish, discovering discrete sets of transcripts that are coincident with either notochord cell fate commitment or differentiation. Our studies reveal new regulators of notochord development and the sequential activation of distinct transcriptomes within a cell lineage by a single transcriptional factor and demonstrate how optically controlled chemical tools can dissect developmental processes with spatiotemporal precision.
机译:转录因子在胚胎发育过程中具有多种作用,以空间和时间定义的方式组合控制细胞状态。解决构成这些模式过程基础的动态转录谱对于在分子水平上了解胚胎发生至关重要。在这里,我们展示了如何通过将笼型吗啉代寡核苷酸与可光激活的荧光团,荧光激活的细胞分选和微阵列技术整合在一起,来辨别胚胎转录因子功能的时间,组织特异性变化。作为原理的证明,我们动态地分析了斑马鱼中轴中胚层发育不同阶段的无尾巴(Ntla)依赖性基因,发现了与脊索细胞命运或分化相吻合的离散转录组。我们的研究揭示了线粒体发育的新调节剂以及单个谱系因子在细胞谱系中不同转录组的顺序激活,并证明了光学控制的化学工具如何以时空精度解剖解剖过程。

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