Psychoyos D, Stern C D
Department of Genetics and Development, College of Physicians and Surgeons of Columbia University, New York, NY 10032, USA.
Development. 1996 May;122(5):1523-34. doi: 10.1242/dev.122.5.1523.
We have used carbocyanine dyes to fate map the primitive streak in the early chick embryo, from stages 3+ (mid-primitive streak) to 9 (8 somites). We show that presumptive notochord, foregut and medial somite do not originate solely from Hensen's node, but also from the anterior primitive streak. At early stages (4- and 4), there is no correlation between specific anteroposterior levels of the primitive streak and the final position of their descendants in the notochord. We describe in detail the contribution of specific levels of the primitive streak to the medial and lateral halves of the somites. To understand how the descendants of labelled cells reach their destinations in different tissues, we have followed the movement of labelled cells during their emigration from the primitive streak in living embryos, and find that cells destined to different structures follow defined pathways of movement, even if they arise from similar positions in the streak. Somite and notochord precursors migrate anteriorly within the streak and pass through different portions of the node; this provides an explanation for the segregation of notochord and somite territories in the node.
我们运用碳菁染料对早期鸡胚中的原条进行了命运图谱绘制,涵盖了从3+期(原条中期)到9期(8体节)的阶段。我们发现,预定的脊索、前肠和内侧体节并非仅起源于亨氏结,还源自原条前部。在早期阶段(4期和4期),原条特定的前后水平与其后代在脊索中的最终位置之间并无关联。我们详细描述了原条特定水平对体节内侧和外侧半部分的贡献。为了理解标记细胞的后代如何在不同组织中到达其目的地,我们追踪了活体胚胎中标记细胞从原条迁出时的运动,发现注定要形成不同结构的细胞遵循特定的运动路径,即便它们在原条中起源于相似位置。体节和脊索前体在原条内向前迁移并穿过结的不同部分;这为结中脊索和体节区域的分离提供了解释。