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在无形态学原条情况下对胚外中胚层结构形成的分析。

Analysis of extraembryonic mesodermal structure formation in the absence of morphological primitive streak.

作者信息

Jin Jiu-Zhen, Zhu Yuanqi, Warner Dennis, Ding Jixiang

机构信息

Department of Molecular, Cellular & Craniofacial Biology and Birth Defects Center, University of Louisville, Louisville, Kentucky, USA.

出版信息

Dev Growth Differ. 2016 Aug;58(6):522-9. doi: 10.1111/dgd.12294. Epub 2016 Jun 8.

Abstract

During mouse gastrulation, the primitive streak is formed on the posterior side of the embryo. Cells migrate out of the primitive streak to form the future mesoderm and endoderm. Fate mapping studies revealed a group of cell migrate through the proximal end of the primitive streak and give rise to the extraembryonic mesoderm tissues such as the yolk sac blood islands and allantois. However, it is not clear whether the formation of a morphological primitive streak is required for the development of these extraembryonic mesodermal tissues. Loss of the Cripto gene in mice dramatically reduces, but does not completely abolish, Nodal activity leading to the absence of a morphological primitive streak. However, embryonic erythrocytes are still formed and assembled into the blood islands. In addition, Cripto mutant embryos form allantoic buds. However, Drap1 mutant embryos have excessive Nodal activity in the epiblast cells before gastrulation and form an expanded primitive streak, but no yolk sac blood islands or allantoic bud formation. Lefty2 embryos also have elevated levels of Nodal activity in the primitive streak during gastrulation, and undergo normal blood island and allantois formation. We therefore speculate that low level of Nodal activity disrupts the formation of morphological primitive streak on the posterior side, but still allows the formation of primitive streak cells on the proximal side, which give rise to the extraembryonic mesodermal tissues formation. Excessive Nodal activity in the epiblast at pre-gastrulation stage, but not in the primitive streak cells during gastrulation, disrupts extraembryonic mesoderm development.

摘要

在小鼠原肠胚形成过程中,原条在胚胎后侧形成。细胞从原条迁出,形成未来的中胚层和内胚层。命运图谱研究表明,一群细胞穿过原条近端,产生胚外中胚层组织,如卵黄囊血岛和尿囊。然而,尚不清楚这些胚外中胚层组织的发育是否需要形态学原条的形成。小鼠中Cripto基因的缺失显著降低但并未完全消除Nodal活性,导致形态学原条缺失。然而,胚胎红细胞仍能形成并组装成血岛。此外,Cripto突变胚胎形成尿囊芽。但是,Drap1突变胚胎在原肠胚形成前的上胚层细胞中具有过度的Nodal活性,并形成扩大的原条,但没有卵黄囊血岛或尿囊芽形成。Lefty2胚胎在原肠胚形成过程中原条中的Nodal活性水平也升高,并且经历正常的血岛和尿囊形成。因此,我们推测低水平的Nodal活性会破坏后侧形态学原条的形成,但仍允许近端原条细胞的形成,这些细胞会导致胚外中胚层组织的形成。原肠胚形成前上胚层中而非原肠胚形成过程中原条细胞中的过度Nodal活性会破坏胚外中胚层发育。

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