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首页> 外文期刊>The Journal of Reproduction and Development >Relationship Between the Length of Cell Cycles, Cleavage Pattern and Developmental Competence in Bovine Embryos Generated by In Vitro Fertilization or Parthenogenesis
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Relationship Between the Length of Cell Cycles, Cleavage Pattern and Developmental Competence in Bovine Embryos Generated by In Vitro Fertilization or Parthenogenesis

机译:体外受精或孤雌生殖产生的牛胚胎细胞周期长度,分裂模式与发育能力之间的关系

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摘要

This study was conducted to study the kinetics of initial cell divisions in relation with the cleavage patterns in viable (with the ability to develop to the blastocyst stage) and non-viable bovine embryos and parthenotes. The kinetics of in vitro development and cleavage patterns were observed by time lapse cinematography. The length of the first and second but not third cell cycle differed significantly between the viable and non-viable embryos after IVF or parthenogenesis. Viable embryos had significantly shorter first and second cell cycles than non-viable ones. The presence of fragments, protrusions and unequally-sized blastomeres was associated with an extended one-cell stage and reduced ability to develop to the blastocyst stage; however, the lengths of the second and third cell cycles were not altered. Oocytes showing direct division from one cell to 3 or 4 blastomeres showed similar developmental ability and embryonic cell numbers to those showing normal division, although, with a high frequency of chromosomal abnormalities. Our results suggest that the differences in the first cell cycles between viable and non-viable embryos were not sperm-related, whereas direct cleavage of 1-cell embryos to 3 or more blastomeres and protrusion formation are related to sperm-driven factors. The length of the first and second cell cycles and the cleavage pattern should be examined simultaneously to predict developmental competence of embryos at early cleavage stages.
机译:进行该研究以研究与存活的(具有发育到胚泡阶段的能力)和非存活的牛胚胎和单性生殖的卵裂模式有关的初始细胞分裂的动力学。通过定时摄影观察了体外发育和分裂模式的动力学。 IVF或孤雌生殖后,有活力和无活力胚胎的第一个和第二个而非第三个细胞周期的长度差异显着。有生命的胚胎的第一个和第二个细胞周期明显比无生命的胚胎短。碎片,突起和不等大小的卵裂球的存在与延长的单细胞阶段和发育为胚泡阶段的能力降低有关;但是,第二个和第三个细胞周期的长度没有改变。卵母细胞显示从一个细胞直接分裂成3或4个卵裂球,与正常分裂的卵母细胞相比,显示出相似的发育能力和胚胎细胞数量,尽管染色体异常的发生频率很高。我们的研究结果表明,有生命和无生命的胚胎在第一个细胞周期中的差异与精子无关,而将1个细胞的胚胎直接裂解为3个或更多的卵裂球和突起形成与精子驱动因子有关。应该同时检查第一个和第二个细胞周期的长度以及卵裂模式,以预测卵裂早期的胚胎发育能力。

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