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海胆囊胚中细胞分裂的异步性与纤毛发生同时相关:(分裂同步性/纤毛发生/卵裂间期/转变概率/海胆囊胚)

Asynchronization of Cell Division is Concurrently Related with Ciliogenesis in Sea Urchin Blastulae: (division synchrony/ciliogenesis/intercleavage time/transition probability/ sea urchin blastula).

作者信息

Masuda Michitaka, Sato Hidemi

机构信息

Sugashima Marine Biological Laboratory, Nagoya University, Sugashima, Toba-shi, Mie-ken 517.

出版信息

Dev Growth Differ. 1984;26(3):281-294. doi: 10.1111/j.1440-169X.1984.00281.x.

Abstract

During the early development of the sea urchins, Temnopleurus toreumaticus, Temnopleurus hardwickii and Hemicentrotus pulcherrimus, the division synchrony in all blastomeres lasted only until the 4th cleavage and a regional synchrony or a graded activity of cell division appeared. In the midblastula stage prior to hatching, the regional synchrony vanished simultaneously with the formation of cilia, then the division proceeded asynchronously. The analysis of cell pedigrees confirmed that a variable extension of intercleavage times occurred after the ciliogenesis. In blastomeres derived from mesomeres of T. toreumaticus embryos, the mean intercleavage time extended from 48 min of the 8th cycle (pre-ciliated) to 115 min of the 9th cycle (ciliated), and the coefficient of variation increased from 15% to 39%. We attempted a kinetic analysis of cell proliferation on the basis of the transition probability model of cell cycle control. We concluded that the minimum time required for the completion of the cell cycle was the decisive factor in the cell cycle succession of pre-ciliated blastomeres, and that a sudden and sharp decrease in the transition probability of the ciliated blastomeres probably interpreted the abrupt slowing and asynchronization of the cleavage cycle at the time of ciliogenesis.

摘要

在海胆白棘三列海胆、哈氏刻肋海胆和光棘球海胆的早期发育过程中,所有卵裂球的分裂同步性仅持续到第4次卵裂,之后出现区域同步性或细胞分裂的分级活动。在孵化前的囊胚中期,区域同步性随着纤毛的形成而同时消失,随后分裂以异步方式进行。细胞谱系分析证实,在纤毛发生后,卵裂间隔时间出现了可变延长。在白棘三列海胆胚胎中胚层来源的卵裂球中,平均卵裂间隔时间从第8个周期(纤毛形成前)的48分钟延长到第9个周期(有纤毛)的115分钟,变异系数从15%增加到39%。我们基于细胞周期调控的转移概率模型对细胞增殖进行了动力学分析。我们得出结论,完成细胞周期所需的最短时间是纤毛形成前卵裂球细胞周期连续的决定性因素,而有纤毛卵裂球转移概率的突然急剧下降可能解释了纤毛发生时卵裂周期的突然减慢和不同步。

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