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Polarity and reorganization of the endoplasmic reticulum during fertilization and ooplasmic segregation in the ascidian egg

机译:卵子受精和卵质分离过程中内质网的极性和重组

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摘要

During the first cell cycle of the ascidian egg, two phases of ooplasmic segregation create distinct cytoplasmic domains that are crucial for later development. We recently defined a domain enriched in ER in the vegetal region of Phallusia mammillata eggs. To explore the possible physiological and developmental function of this ER domain, we here investigate its organization and fate by labeling the ER network in vivo with DiIC16(3), and observing its distribution before and after fertilization in the living egg. In unfertilized eggs, the ER-rich vegetal cortex is overlaid by the ER-poor but mitochondria-rich subcortical myoplasm. Fertilization results in striking rearrangements of the ER network. First, ER accumulates at the vegetal-contraction pole as a thick layer between the plasma membrane and the myoplasm. This accompanies the relocation of the myoplasm toward that region during the first phase of ooplasmic segregation. In other parts of the cytoplasm, ER becomes progressively redistributed into ER-rich and ER- poor microdomains. As the sperm aster grows, ER accumulates in its centrosomal area and along its astral rays. During the second phase of ooplasmic segregation, which takes place once meiosis is completed, the concentrated ER domain at the vegetal-contraction pole moves with the sperm aster and the bulk of the myoplasm toward the future posterior side of the embryo. These results show that after fertilization, ER first accumulates in the vegetal area from which repetitive calcium waves are known to originate (Speksnijder, J. E. 1992. Dev. Biol. 153:259-271). This ER domain subsequently colocalizes with the myoplasm to the presumptive primary muscle cell region.
机译:在海鞘卵的第一个细胞周期中,卵质分离的两个阶段产生了不同的胞质结构域,这对于以后的发育至关重要。我们最近定义了一个富含内质网的阴茎卵植物卵内质网域。为了探索这个ER域的可能的生理和发育功能,我们在这里通过用DiIC16(3)在体内标记ER网络并观察其在活卵中受精前后的分布来研究其结构和命运。在未受精卵中,富含ER的植物皮层被缺乏ER的但富含线粒体的皮层下肌质所覆盖。施肥导致ER网络发生明显的重排。首先,ER在质膜和肌浆之间的厚层堆积在植物收缩极。这伴随着卵质分离的第一阶段中肌质向该区域的重新定位。在细胞质的其他部分,ER逐渐被重新分配到富含ER和缺乏ER的微域中。随着精子数量的增长,ER会在其中心体区域和沿星体射线积累。在减数分裂完成后发生的卵质分离的第二阶段,植物收缩极处的浓缩ER域随精子和大部分肌质向着胚胎的后侧移动。这些结果表明,在施肥后,ER首先在已知产生重复钙波的植物区域中累积(Speksnijder,J.E.1992.Dev.Biol.153:259-271)。该ER结构域随后与肌质共定位于推测的原代肌肉细胞区域。

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