Cardiovascular Research Institute, University of California San Francisco, San Francisco, California, United States of America.
PLoS Genet. 2013 Apr;9(4):e1003428. doi: 10.1371/journal.pgen.1003428. Epub 2013 Apr 4.
The Drosophila embryo proceeds through thirteen mitotic divisions as a syncytium. Its nuclei distribute in the embryo's interior during the first six divisions, dividing synchronously with a cycle time of less than ten minutes. After seven divisions (nuclear cycle 8), the syncytial blastoderm forms as the nuclei approach the embryo surface and slow their cycle time; subsequent divisions proceed in waves that initiate at the poles. Because genetic studies have not identified zygotic mutants that affect the early divisions and because transcription has not been detected before cycle 8, the early, pre-blastoderm embryo has been considered to rely entirely on maternal contributions and to be transcriptionally silent. Our studies identified several abnormal phenotypes in live engrailed (en) mutant embryos prior to cycle 8, as well as a small group of genes that are transcribed in embryos prior to cycle 7. Nuclei in en embryos divide asynchronously, an abnormality that was detected as early as nuclear cycle 2-3. Anti-En antibody detected nuclear En protein in embryos at cycle 2, and expression of an En:GFP fusion protein encoded in the paternal genome was also detected in cycle 2 nuclei. These findings demonstrate that the Drosophila embryo is functionally competent for gene expression prior to the onset of its rapid nuclear divisions and that the embryo requires functions that are expressed in the zygote in order to faithfully prosecute its early, pre-cellularization mitotic cycles.
果蝇胚胎通过合胞体经历十三个有丝分裂分裂。在前六个分裂中,其核分布在胚胎内部,以不到十分钟的周期时间同步分裂。在第七次分裂(核周期 8)之后,合胞胚层形成,核接近胚胎表面并减缓其周期时间;随后的分裂以起始于极的波的形式进行。由于遗传研究尚未鉴定出影响早期分裂的合子突变体,并且在周期 8 之前未检测到转录,因此早期的前胚层胚胎被认为完全依赖于母体贡献并且转录沉默。我们的研究在周期 8 之前在活体 engrailed(en)突变体胚胎中发现了几种异常表型,以及在周期 7 之前在胚胎中转录的一小部分基因。en 胚胎中的核异步分裂,这种异常早在核周期 2-3 就被检测到。抗 En 抗体在周期 2 的胚胎中检测到核 En 蛋白,并且在周期 2 核中也检测到编码在父本基因组中的 En:GFP 融合蛋白的表达。这些发现表明,果蝇胚胎在其快速核分裂开始之前就具有功能上有能力进行基因表达,并且胚胎需要在合子中表达的功能才能忠实地进行其早期的、无细胞化的有丝分裂周期。