首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Reorganization of cytoplasm in the zebrafish oocyte and egg during early steps of ooplasmic segregation.
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Reorganization of cytoplasm in the zebrafish oocyte and egg during early steps of ooplasmic segregation.

机译:卵质分离早期,斑马鱼卵母细胞和卵内的细胞质重组。

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摘要

The aim of this work is to determine when and how ooplasmic segregation is initiated in the zebrafish egg. To this end, the organization of the ooplasm and vitelloplasm were examined in oocytes and eggs shortly after activation. Ooplasmic segregation, initiated in the stage V oocyte, led to the formation of ooplasmic domains rich in organelles, and ribonucleoproteins. A linear array of closely arranged peripheral yolk globules separated an outer domain of ectoplasm from an inner domain of interconnected endoplasmic lacunae. The structure of this yolk array and the distribution of microinjected labeled tracers suggests that it may provide a barrier limiting ooplasm transit. Loosely arranged yolk globules at the animal hemisphere allow wide connections between the endoplasm and a preblastodisc domain. Activation caused further segregation of ooplasm, reorganization of endoplasmic lacunae, and blastodisc growth. The presence of an endoplasmic cytoskeleton suggests that these changes may be driven by microtubules and microfilaments.
机译:这项工作的目的是确定斑马鱼卵中何时以及如何引发卵质分离。为此,在活化后不久,在卵母细胞和卵中检查卵母细胞和卵母细胞的组织。在V期卵母细胞中开始的卵质分离导致形成富含细胞器和核糖核蛋白的卵质结构域。紧密排列的外围卵黄小球的线性阵列将外质的外部区域与相互连接的内质腔的内部区域分隔开。卵黄阵列的结构和显微注射标记示踪剂的分布表明,它可能提供限制卵质转运的障碍。在动物半球处松散排列的卵黄小球允许内质和前胚盘域之间的广泛连接。激活导致卵母细胞进一步分离,内质腔的重组和胚盘生长。内质细胞骨架的存在表明这些变化可能是由微管和微丝驱动的。

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