...
首页> 外文期刊>Development Growth and Differentiation >Change in the adhesive properties of blastomeres during early cleavagestages in sea urchin embryo
【24h】

Change in the adhesive properties of blastomeres during early cleavagestages in sea urchin embryo

机译:海胆胚胎早期Cleavageage期间卵囊粘接性能的变化

获取原文
获取原文并翻译 | 示例
           

摘要

Blastomeres of sea urchin embryo change their shape from spherical to columnar during the early cleavage stage. It is suspected that this cell shape change might be caused by the increase in the adhesiveness between blastomeres. By cell electrophoresis. it was found that the amount of negative cell surface charges decreased during the early cleavage stages, especially from the 32-cell stage. It was also found that blastomeres formed lobopodium-like protrusions if the embryos were dissociated in the presence of Ca2+. Interestingly, a decrease in negative cell surface charges and pseudopodia formation first occurred in the descendants of micromeres and then in mesomeres, and last in macromeres, By examining the morphology of cell aggregates derived from the isolated blastomeres of the 8-cell stage embryo, it was found that blastomeres derived from the animal hemisphere (mesomere lineage) increased their adhesiveness one cell cycle earlier than those of the vegetal hemisphere (macromere lineage). The timing of the initiation of close cell contact in the descendants of micro-, meso- and macromeres was estimated to be 16-, 32- and 60-cell stage, respectively Conversely, the nucleus-to-cell-volume ratios, which are calculated from the diameters of the nucleus and cell, were about 0.1 when blastomeres became adhesive, irrespective of the lineage.
机译:海胆胚胎的胚胎在早期切割阶段期间将它们的形状从球形上变为柱状。怀疑该细胞形状变化可能是由卵泡之间的粘合性的增加引起的。通过细胞电泳。发现在早期的裂解阶段期间,负细胞表面电荷的量减少,尤其是32细胞阶段。还发现,如果在Ca 2+存在下胚胎解离胚胎,则卵囊形成脱脂型突起。有趣的是,在微麦的后代和伪体形成的阴性细胞表面电荷和假偶数形成的减少,然后在胚胎中,并通过检查衍生自8细胞阶段胚胎的孤立的胚根的细胞聚集体的形态发现衍生自动物半球(Mesomere Lineage)的卵囊比植物半球(大分子谱系)的粘合性增加了一种细胞周期。估计微型,中,和大分子体的后代在微型,中,和大分子体的后代接触的定时分别是16-,32-和60细胞阶段,相反,核 - 细胞体积比根据谱系,根据核和细胞的直径计算,约为0.1,无论谱系如何,纤维素都是粘合剂。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号