Davidson Phillip L, Koch Bernard J, Schnitzler Christine E, Henry Jonathan Q, Martindale Mark Q, Baxevanis Andreas D, Browne William E
Department of Biology, University of Miami, Coral Gables, Florida.
Computational and Statistical Genomics Branch, National Human Genome Research Institute, National Institutes of Health, Bethesda, Maryland.
Mol Reprod Dev. 2017 Nov;84(11):1218-1229. doi: 10.1002/mrd.22926. Epub 2017 Nov 10.
The maternal-zygotic transition (MZT) describes the developmental reprogramming of gene expression marked by the degradation of maternally supplied gene products and activation of the zygotic genome. While the timing and duration of the MZT vary among taxa, little is known about early-stage transcriptional dynamics in the non-bilaterian phylum Ctenophora. We sought to better understand the extent of maternal mRNA loading and subsequent differential transcript abundance during the earliest stages of development by performing comprehensive RNA-sequencing-based analyses of mRNA abundance in single- and eight-cell stage embryos in the lobate ctenophore Mnemiopsis leidyi. We found 1,908 contigs with significant differential abundance between single- and eight-cell stages, of which 1,208 contigs were more abundant at the single-cell stage and 700 contigs were more abundant at the eight-cell stage. Of the differentially abundant contigs, 267 were exclusively present in the eight-cell samples, providing strong evidence that both the MZT and zygotic genome activation (ZGA) have commenced by the eight-cell stage. Many highly abundant transcripts encode genes involved in molecular mechanisms critical to the MZT, such as maternal transcript degradation, serine/threonine kinase activity, and chromatin remodeling. Our results suggest that chromosomal restructuring, which is critical to ZGA and the initiation of transcriptional regulation necessary for normal development, begins by the third cleavage within 1.5 hr post-fertilization in M. leidyi.
母源 - 合子转变(MZT)描述了基因表达的发育重编程,其特征是母源提供的基因产物降解以及合子基因组激活。虽然MZT的时间和持续时间在不同分类群中有所不同,但对于非两侧对称动物栉水母门早期转录动态知之甚少。我们试图通过对叶状栉水母莱氏拟尾突单细胞和八细胞期胚胎的mRNA丰度进行基于RNA测序的综合分析,来更好地了解发育最早阶段母源mRNA装载程度以及随后的转录本丰度差异。我们发现1908个重叠群在单细胞期和八细胞期之间存在显著的丰度差异,其中1208个重叠群在单细胞期更为丰富,700个重叠群在八细胞期更为丰富。在差异丰度的重叠群中,267个仅存在于八细胞样本中,这有力地证明了MZT和合子基因组激活(ZGA)在八细胞期就已开始。许多高丰度转录本编码参与MZT关键分子机制的基因,如母源转录本降解、丝氨酸/苏氨酸激酶活性和染色质重塑。我们的结果表明,对于ZGA以及正常发育所需转录调控起始至关重要的染色体重组,在莱氏拟尾突受精后1.5小时内的第三次卵裂时就已开始。