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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Comparative transcriptome analysis explores maternal to zygotic transition during Eriocheir sinensis early embryogenesis
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Comparative transcriptome analysis explores maternal to zygotic transition during Eriocheir sinensis early embryogenesis

机译:比较转录组分析探讨了Eriocheir Sinensis早期胚胎发生期间的母婴转变

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The maternal genome directs almost all aspects of early animal development. As development proceeds, the elimination of maternal gene products and zygotic genome activation (ZGA) occur during the maternal to zygotic transition (MZT). To study the molecular mechanisms regulating this developmental event in Eriocheir sinensis, RNA-Seq technology was applied to generate comprehensive information on transcriptome dynamics during early embryonic stages. In total, 32,088 annotated unigenes were obtained from the transcriptomes of fertilized eggs and embryos at the cleavage (2-4 cell) and blastula stage. A total of 566 maternal genes and 1165 zygotic genes were isolated, among which 103 and 266 genes were predicted conserved maternal transcripts (COMATs) and conserved zygotic transcripts (COZYTs), respectively. The COMATs performed housekeeping gene functions and may be essential for initiating early embryogenesis of the Bilateria. Furthermore, 87, 76 and 117 differentially expressed genes associated with the MZT, morphogenesis and immunity were identified when compared the three transcriptomic datasets. We also unmask that the MZT takes place around the cleavage stage, when the genes involved in the clearance of maternal gene products and the ZGA were significantly up-regulated. Taken together, these datasets provide a valuable resource for understanding the mechanisms of early developmental events in E. sinensis, and facilitate further studies on molecular mechanisms of asynchronous development in crabs.
机译:母体基因组几乎引导了早期动物发育的各个方面。随着开发的进行,消除母体基因产物和Zygotic Genome激活(ZGA)发生在母体到血小阴转变(MZT)期间发生。为研究调节Eriocheir Sinensis中的这种发育事件的分子机制,RNA-SEQ技术被应用于早期胚胎阶段的转录组动力学产生综合信息。总共,从乳化卵和胚胎(2-4个细胞)和Blastula阶段的受精卵和胚胎的转录组中获得了32,088个注释的unigenes。分离了总共566个母体基因和1165个Zygotic基因,其中103和266个基因分别被预测母体转录物(Comats)和保守的受精转录物(Cozyts)。 Comats进行了内务管理基因功能,可能对于启动二种植物的早期胚胎发生至关重要。此外,在比较三个转录组数据集时鉴定了与MZT,与MZT,形态发生和免疫相关的差异表达的基因。我们还揭示了在涉及母体基因产物和ZGA的间隙中的基因围绕切割阶段进行MZT,显着上调。这些数据集合在一起提供了理解E.Inensis早期发育事件的机制的宝贵资源,并促进螃蟹中异步发育的分子机制进一步研究。

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