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首页> 外文期刊>BMC Developmental Biology >Regionalisation of the mouse visceral endoderm as the blastocyst transforms into the egg cylinder
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Regionalisation of the mouse visceral endoderm as the blastocyst transforms into the egg cylinder

机译:胚泡转化为卵囊时小鼠内脏内胚层的区域化

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Background Reciprocal interactions between two extra-embryonic tissues, the extra-embryonic ectoderm and the visceral endoderm, and the pluripotent epiblast, are required for the establishment of anterior-posterior polarity in the mouse. After implantation, two visceral endoderm cell types can be distinguished, in the embryonic and extra-embryonic regions of the egg cylinder. In the embryonic region, the specification of the anterior visceral endoderm (AVE) is central to the process of anterior-posterior patterning. Despite recent advances in our understanding of the molecular interactions underlying the differentiation of the visceral endoderm, little is known about how cells colonise the three regions of the tissue. Results As a first step, we performed morphological observations to understand how the extra-embryonic region of the egg cylinder forms from the blastocyst. Our analysis suggests a new model for the formation of this region involving cell rearrangements such as folding of the extra-embryonic ectoderm at the early egg cylinder stage. To trace visceral endoderm cells, we microinjected mRNAs encoding fluorescent proteins into single surface cells of the inner cell mass of the blastocyst and analysed the distribution of labelled cells at E5.0, E5.5 and E6.5. We found that at E5.0 the embryonic and extra-embryonic regions of the visceral endoderm do not correspond to distinct cellular compartments. Clusters of labelled cells may span the junction between the two regions even after the appearance of histological and molecular differences at E5.5. We show that in the embryonic region cell dispersion increases after the migration of the AVE. At this time, visceral endoderm cell clusters tend to become oriented parallel to the junction between the embryonic and extra-embryonic regions. Finally we investigated the origin of the AVE and demonstrated that this anterior signalling centre arises from more than a single precursor between E3.5 and E5.5. Conclusion We propose a new model for the formation of the extra-embryonic region of the egg cylinder involving a folding of the extra-embryonic ectoderm. Our analyses of the pattern of labelled visceral endoderm cells indicate that distinct cell behaviour in the embryonic and extra-embryonic regions is most apparent upon AVE migration. We also demonstrate the polyclonal origin of the AVE. Taken together, these studies lead to further insights into the formation of the extra-embryonic tissues as they first develop after implantation.
机译:背景技术为了在小鼠中建立前后极性,需要两个胚外组织,胚外外胚层和内脏内胚层以及多能表皮细胞之间的相互相互作用。植入后,可以在蛋筒的胚胎和胚外区域区分两种内脏内胚层细胞类型。在胚胎区域,前内脏内胚层(AVE)的规格对于前后图案形成过程至关重要。尽管最近我们对内脏内胚层分化的分子相互作用的理解有了新进展,但是关于细胞如何在组织的三个区域定居的知识却鲜为人知。结果作为第一步,我们进行了形态学观察,以了解卵囊的胚外区域如何由胚泡形成。我们的分析表明该区域形成的新模型涉及细胞重排,例如在卵子早期阶段胚外胚层的折叠。为了追踪内脏内胚层细胞,我们将编码荧光蛋白的mRNA微注射到胚泡内部细胞团的单个表面细胞中,并分析了标记的细胞在E5.0,E5.5和E6.5的分布。我们发现在E5.0,内胚层的胚胎和胚外区域不对应于不同的细胞区室。即使在E5.5出现组织学和分子差异后,标记细胞簇也可能跨越两个区域之间的交界处。我们表明,在胚胎区域,AVE迁移后细胞分散性增加。此时,内脏内胚层细胞簇趋向于平行于胚胎和胚外区域之间的连接。最后,我们研究了AVE的起源,并证明了该前信号中心来自E3.5和E5.5之间的多个前体。结论我们提出了一个新的蛋筒胚外区域形成模型,其中涉及胚外外胚层的折叠。我们对标记的内脏内胚层细胞模式的分析表明,在AVE迁移后,在胚胎和胚外区域的不同细胞行为最为明显。我们还证明了AVE的多克隆起源。综上所述,这些研究可为植入后首次发育的胚外组织的形成提供进一步的见识。

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