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Exploring timing activation of functional pathway based on differential co-expression analysis in preimplantation embryogenesis

机译:基于差异共表达分析的功能途径的时序激活在植入前胚胎发生中的作用

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摘要

Recent genome-wide omics studies have confirmed the early embryogenesis strictly dependent on the rigorous spatiotemporal activation and multilevel regulation. However, the full effect of functional pathway was not considered. To obtain complete understanding of the gene activation during early development, we performed systematic comparisons based on differential co-expression analysis for bovine preimplantation embryo development (PED). The results confirmed that the functional pathways actively transcribes as early as the 2-cell and 4-cell waves, which Basal transcription factor, Endocytosis and Spliceosome pathway can represent first signs of embryonic activity. Endocytosis act as one of master activators for uncovering a series of successive waves of maternal pioneer signal regulator with the help of Spliceosome complex. Furthermore, the results showed that pattern recognition receptors began to perform its essential function at 4-cell stage, which might be needed to coordinate the later major activation. And finally, our work presented a probable dynamic landscape of key functional pathways for embryogenesis. A clearer understanding of early embryo development will be helpful for Assisted Reproductive Technology (ART) and Regenerative Medicine (RM).
机译:最近的全基因组组学研究已证实,早期胚胎发生严格依赖于严格的时空激活和多级调控。但是,没有考虑功能途径的全部作用。为了完全了解早期发育过程中的基因激活,我们基于差异共表达分析对牛植入前胚胎发育(PED)进行了系统比较。结果证实,功能途径早于2-细胞和4-细胞波就主动转录,其中基础转录因子,内吞作用和剪接体途径可以代表胚胎活性的第一个迹象。内吞作用作为主要激活剂之一,借助Spliceosome复合物帮助揭示了一系列母体先驱信号调节剂的连续波。此外,结果表明模式识别受体开始在4细胞阶段执行其基本功能,可能需要协调以后的主要激活。最后,我们的工作提出了胚胎发生关键功能途径的可能动态格局。对早期胚胎发育的更清晰的了解将对辅助生殖技术(ART)和再生医学(RM)有所帮助。

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