禽镰状细胞内胚分别在离体中央区和离体抗镰状区诱导原肠胚形成和神经形成。

M Callebaut, E Van Nueten, H Bortier, E Harrisson
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引用次数: 5

摘要

通过鹌鹑-鸡嵌合体技术,在培养中研究了镰状细胞内皮(通过向心迁移和颅向迁移从劳伯镰刀中提取)对离体劳伯镰刀中心区无镰状细胞的诱导作用,以及对离体劳伯镰刀抗镰状细胞的诱导作用。就像Rauber镰刀一样,扁平的1细胞厚的镰状细胞内胚(阶段2-3,Hamburger & Hamilton, 1951)在中央区域诱导出原始条纹(PS)和神经板。如果在镰状内皮细胞和中央区之间有卵黄膜,则仍会诱导出小的原始条纹,这表明扩散因子对PS的形成有影响。在离体抗镰状区相邻的上层,相对的镰状内皮细胞仅诱导(预)神经板。而在未培养的全胚抗镰状区移植后,这种(预)神经板诱导作用迅速而完全被抑制。这表明主导的位置信息现象来自于整个胚皮的劳伯镰刀。在离体中央区或离体抗镰状细胞上移植镰状内皮细胞后,未形成连接层内皮细胞和血岛。这表明劳贝尔镰状细胞向镰状内皮细胞的分化是不可逆的。我们的研究结果表明,镰状内皮细胞形式下的Rauber镰状物质也影响早期神经形成现象(在空间和时间上的距离)。本研究表明,从具有诱导、抑制和支配作用的主要组织者劳伯镰刀开始,禽胚皮中存在着一个时空结合的原肠形成和神经形成现象级联以及血岛的形成。后者不仅通过分泌信号分子(位置信息)发挥作用,而且还通过其细胞系(连接型内皮细胞和镰状内皮细胞)影响发育。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Avian sickle endoblast induces gastrulation or neurulation in the isolated area centralis or isolated anti-sickle region respectively.

By the quail-chicken chimera technique, we studied, in culture, the inducing effect of sickle endoblast (derived from Rauber's sickle by centripetal and cranial migration) on the isolated Rauber's sickle-free central part of the area centralis or on the isolated Rauber's sickle-free anti-sickle region from unincubated chicken blastoderms. Just as Rauber's sickle, the flat one-cell-thick sickle endoblast (Stage 2-3, Hamburger & Hamilton, 1951) induces a primitive streak (PS) and a neural plate in the area centralis. If a vitelline membrane is interposed between the sickle endoblast and the area centralis, then a small primitive streak is still induced, suggesting the effect of a diffusible factor on PS formation. In the adjacent upper layer of an isolated anti-sickle region the apposed sickle endoblast induces only a (pre)neural plate. By contrast, this (pre)neural plate inducing effect is rapidly and totally suppressed after grafting on the anti-sickle region of whole unincubated blastoderms. This suggests dominating positional information phenomena emanating from Rauber's sickle over the whole blastoderm. After grafting sickle endoblast either on the isolated area centralis or on isolated anti-sickles, no junctional endoblast and no blood islands developed. This suggests that the differentiation of Rauber's sickle material into sickle endoblast is irreversible. Our results indicate that Rauber's sickle material under the form of sickle endoblast also influences early neurulation phenomena (at distance in space and time). The present study indicates the existence of a temporo-spatially bound cascade of gastrulation and neurulation phenomena and blood island formation in the avian blastoderm, starting from Rauber's sickle, the primary major organizer with inducing, inhibiting and dominating potencies. The latter not only plays a role by secretion of signalling molecules (positional information) but it also influences development by its cell lineages (junctional endoblast and sickle endoblast).

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