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首页> 外文期刊>Scientific reports. >Single blastomere expression profiling of Xenopus laevis embryos of 8 to 32-cells reveals developmental asymmetry
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Single blastomere expression profiling of Xenopus laevis embryos of 8 to 32-cells reveals developmental asymmetry

机译:Xenopus Laevis的单一Blastomere表达分析8至32个细胞的胚胎显示出发育不对称性

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We have measured the expression of 41 maternal mRNAs in individual blastomeres collected from the 8 to 32-cell Xenopus laevis embryos to determine when and how asymmetry in the body plan is introduced. We demonstrate that the asymmetry along the animal-vegetal axis in the oocyte is transferred to the daughter cells during early cell divisions. All studied mRNAs are distributed evenly among the set of animal as well as vegetal blastomeres. We find no asymmetry in mRNA levels that might be ascribed to the dorso-ventral specification or the left-right axis formation. We hypothesize that while the animal-vegetal asymmetry is a consequence of mRNA gradients, the dorso-ventral and left-right axes specifications are induced by asymmetric distribution of other biomolecules, probably proteins.
机译:我们已经测量了从8至32个细胞Xenopus Laevis胚胎收集的单个底肌中41个母体mRNA的表达,以确定何时以及如何介绍身体计划中的不对称性。我们证明卵母细胞中的动物 - 植物轴的不对称性在早期细胞分裂期间转移到子细胞。所有研究的MRNA都均匀地分布在一组动物以及植物卵菜中。我们发现可能归因于多叶腹腹板或左右轴形成的mRNA水平的不对称性。我们假设虽然动物 - 植物不对称是mRNA梯度的结果,但通过其他生物分子的不对称分布诱导了背腹和左右轴规格,可能是蛋白质的。

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