Lawson K A, Pedersen R A
Hubrecht Laboratory, Netherlands Institute for Developmental Biology, Utrecht.
Ciba Found Symp. 1992;165:3-21; discussion 21-6. doi: 10.1002/9780470514221.ch2.
The foundation of the germ layers and the extraembryonic mesoderm from the epiblast between 6.5 and 7.5 days post coitum (p.c.) is accompanied by substantial cell proliferation. It is followed during the next 24 hours by the organization of major systems of the embryo such as the central nervous system, somites, heart and vascular system. Injection in situ of a short-term lineage label (horse radish peroxidase) into single epiblast cells at 6.7 days p.c. and analysis of the descendant clones in cultured embryos have been used to trace these processes and led to the following conclusions: (1) There is extensive but not indiscriminate cell mixing at the onset of gastrulation; epiblast cells spread towards the primitive streak and descendants are there progressively incorporated into mesoderm. (2) The fate map of the mouse epiblast at the early primitive streak stage is topologically similar to those of other vertebrates. (3) Germ layers and the extraembryonic mesoderm are not clonally distinct before gastrulation, the region of overlapping boundaries in the fate map being occupied by cells that will have descendants in more than one layer. (4) Cranial neurectoderm is mainly derived from axial epiblast immediately anterior to the primitive streak of the early streak stage embryo, clonal descendants being spread rostrocaudally in the developing neural tube. Contribution to the putative floor plate is made by progenitors some of which also contribute to notochord and mesoderm.
在交配后6.5至7.5天,胚外中胚层和胚层由上胚层形成,这一过程伴随着大量细胞增殖。在接下来的24小时内,胚胎的主要系统如中枢神经系统、体节、心脏和血管系统开始形成。在交配后6.7天,将短期谱系标记物(辣根过氧化物酶)原位注射到单个上胚层细胞中,并对培养胚胎中的后代克隆进行分析,以追踪这些过程,得出以下结论:(1)原肠胚形成开始时存在广泛但并非随意的细胞混合;上胚层细胞向原条扩散,其后代逐渐融入中胚层。(2)小鼠上胚层在早期原条阶段的命运图谱在拓扑结构上与其他脊椎动物相似。(3)在原肠胚形成之前,胚层和胚外中胚层并非克隆性不同,命运图谱中边界重叠的区域被那些将在不止一层中有后代的细胞占据。(4)颅神经外胚层主要来自早期原条阶段胚胎原条前方紧邻的轴向上胚层,克隆后代在发育中的神经管中向头尾方向扩散。对假定的底板的贡献由祖细胞做出,其中一些祖细胞也对脊索和中胚层有贡献。