首页> 外文期刊>Russian Journal of Developmental Biology >Morphogenetic consequences of partial removal of blastomere cytoplasm during early embryonic development of the loach, L.
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Morphogenetic consequences of partial removal of blastomere cytoplasm during early embryonic development of the loach, L.

机译:泥achL早期胚胎发育过程中部分去除卵裂球细胞质的形态发生后果。

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摘要

The development of loach embryos is successfully regulated (normalized) after partial removal of the cytoplasm from one blastomere at the two- or four-cell stage or complete removal of one or two blastomeres at the stage of 8-16 cells. Using time-lapse video imaging and morphometric analysis, it has been shown that this regulation is a two-stage process. At the first stage, the ratio between the volumes of the blastodisk and yolk sac is rapidly (within one or two cell cycles) restored almost to the initial level; at the second stage, morphogenesis of the embryo is modified according to its new structural features acquired after the operation. After several rounds of cytokinesis, the cytoplasm remaining in the operated blastomere fuses with the marginal yolk syncytium (periblast), which at the blastula stage forms a distinct extension at the operation site. This extension marks the site of embryonic shield formation. The results of morphometric analysis show that restoration of the initial blastoderm volume in operated embryos leads to a reduction of active tension at the blastoderm-yolk boundary and an increase in the ratio of blastoderm surface to its volume at the moment of epiboly initiation. As a result, the convergence of blastoderm cells to the operation site and the embryonic shield formation begin at a lesser degree of epiboly, compared to the control.
机译:在两细胞或四细胞阶段从一个卵裂球部分去除细胞质或在8-16细胞阶段完全去除一或两个卵裂球之后,泥ach胚胎的发育被成功地调节(标准化)。使用延时视频成像和形态计量学分析,已表明该调节是两个阶段的过程。在第一阶段,胚盘和卵黄囊体积之比迅速(在一两个细胞周期内)几乎恢复到初始水平。在第二阶段,根据手术后获得的新结构特征修饰胚胎的形态发生。经过几轮胞质分裂后,保留在手术卵裂球中的细胞质与边缘卵黄合胞融合(周生),卵黄合胞在囊胚阶段在手术部位形成明显的延伸。该延伸标记了胚胎盾形成的部位。形态计量学分析的结果表明,手术胚中初始胚盘体积的恢复导致胚盘-蛋黄边界处的主动张力降低,并且外胚层开始时胚盘表面与其体积之比增加。结果,与对照相比,胚盘细胞向手术部位的收敛和胚盾的形成开始于较小的外生度。

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