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Asymmetric distribution of biomolecules of maternal origin in the Xenopus laevis egg and their impact on the developmental plan

机译:非洲爪蟾卵中母源生物分子的不对称分布及其对发育计划的影响

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摘要

Asymmetric cell division is a ubiquitous feature during the development of higher organisms. Asymmetry is achieved by differential localization or activities of biological molecules such as proteins, and coding and non-coding RNAs. Here, we present subcellular transcriptomic and proteomic analyses along the animal-vegetal axis of Xenopus laevis eggs. More than 98% of the maternal mRNAs could be categorized into four localization profile groups: animal, vegetal, extremely vegetal, and a newly described group of mRNAs that we call extremely animal, which are mRNAs enriched in the animal cortex region. 3′UTRs of localized mRNAs were analyzed for localization motifs. Several putative motifs were discovered for vegetal and extremely vegetal mRNAs, while no distinct conserved motifs for the extremely animal mRNAs were identified, suggesting different localization mechanisms. Asymmetric profiles were also found for proteins, with correlation to those of corresponding mRNAs. Based on unexpected observation of the profiles of the homoeologous genes exd2 we propose a possible mechanism of genetic evolution.
机译:细胞不对称分裂是高等生物发展过程中普遍存在的特征。不对称性是通过生物分子(例如蛋白质)以及编码和非编码RNA的差异定位或活性来实现的。在这里,我们介绍了非洲爪蟾卵沿动物-植物轴的亚细胞转录组学和蛋白质组学分析。超过98%的母体mRNA可以分为四个定位模式组:动物,植物,极度植物,以及一组新近描述的mRNA,我们称为极度动物,即富含动物皮层区域的mRNA。分析了定位mRNA的3'UTR的定位基序。发现了几种假定的植物和极端植物mRNA的基序,而没有发现极端动物mRNA的独特保守基序,表明了不同的定位机制。还发现蛋白质的不对称图谱,与相应的mRNA的图谱相关。基于对同源基因exd2谱的意外观察,我们提出了遗传进化的可能机制。

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