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下胚层形成过程中鸡胚盘内细胞器的分化

Organelle differentiation in the chick blastoderm during hypoblast formation.

作者信息

Raveh Dina, Friedländer Michael, Eyal-Giladi Hefzibah

机构信息

Department of Zoology, Hebrew University of Jerusalem, Israel.

Laboratory of Genetics, Hebrew University of Jerusalem, Israel.

出版信息

Wilhelm Roux Arch Entwickl Mech Org. 1971 Sep;166(3):287-299. doi: 10.1007/BF00650035.

Abstract

The ultrastructure of the chick blastoderm was examined at three developmental stages, from an unincubated single-layered system through hypoblast advancement to full hypoblast formation.With the onset of incubation the nucleolus changes from a loose network of intermingled pars fibrosa and pars granulosa into a compact body with a definite matrix material.The endoplasmic reticulum, mitochondria, and Golgi complex increase in complexity and volume. In blastoderms with a fully developed hypoblast a special asymmetrical endoplasmic reticulum becomes abundant. These data are analysed in relation to similar structural differentiation of the nucleolus, endoplasmic reticulum, Golgi complex and mitochondria in the embryonic development of other vertebrate groups.The above changes in organelle structure are noted in both the epi- and the hypoblast, although these organelles become more abundant in the former. In the intermediate stage no differences are noted between epiblast cells underlined by hypoblast and those of the anterior single-layered region. The above changes in the epiblast must therefore be related to age and not to contact with the advancing hypoblast.Previous studies mentioned in the text seem to indicate that the inducing effect of the hypoblast on the epiblast is exerted after its complete formation and not during its advancement. Our results in the organelle differentiation during hypoblast formation are in accordance with this hypothesis.

摘要

在三个发育阶段对鸡胚盘的超微结构进行了检查,从未孵化的单层系统到下胚层推进直至完全形成下胚层。随着孵化开始,核仁从纤维区和颗粒区相互交织的松散网络转变为具有确定基质材料的致密体。内质网、线粒体和高尔基体在复杂性和体积上增加。在具有完全发育的下胚层的胚盘中,一种特殊的不对称内质网变得丰富。结合其他脊椎动物类群胚胎发育中核仁、内质网、高尔基体和线粒体的类似结构分化对这些数据进行了分析。上述细胞器结构的变化在上胚层和下胚层中均有记录,尽管这些细胞器在上胚层中更为丰富。在中间阶段,下胚层下方的上胚层细胞与前部单层区域的上胚层细胞之间未发现差异。因此,上胚层的上述变化一定与年龄有关,而不是与推进的下胚层接触有关。文中提到的先前研究似乎表明,下胚层对上胚层的诱导作用是在其完全形成后而非推进过程中发挥的。我们在下胚层形成过程中细胞器分化的结果与这一假设一致。

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