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海胆胚胎第三次卵裂时的不均等分裂增加了初级间充质细胞的数量。

Unequal divisions at the third cleavage increase the number of primary mesenchyme cells in sea urchin embryos.

作者信息

Kominami T, Takaichi M

机构信息

Department of Biology, Faculty of Science, Ehime University, Matsuyama, Japan.

出版信息

Dev Growth Differ. 1998 Oct;40(5):545-53. doi: 10.1046/j.1440-169x.1998.t01-3-00009.x.

Abstract

To clarify the distribution and behavior of the maternal factors that direct the differentiation of primary mesenchyme cells (PMC) in sea urchin embryos, unequal division was induced at the third cleavage with the treatment of dinitro-phenol (DNP), and the numbers of differentiated PMC were examined. The most surprising finding was that the number of PMC was considerably increased in some of the DNP-treated embryos. This increase n the number of PMC was suggested to be closely related to the size of the precocious micromeres formed at the 8-cell stage. By measuring both the size of the precocious micromeres and the number of PMC in individual embryos, it was suggested that almost all the descendants of the precocious micromeres differentiated into PMC, if the volume was less than 26 pL (about three times the volume of normal micromeres). Cell tracing experiments ascertained that precocious micromeres with small volumes behave just like micromeres formed at the fourth cleavage in normal embryos. The obtained results indicated that the maternal factors present in sea urchin embryos can direct, at least, more than three times the number of PMC, and that the number of cell divisions of the PMC lineage is not strictly regulated.

摘要

为了阐明指导海胆胚胎中初级间充质细胞(PMC)分化的母体因子的分布和行为,在第三次卵裂时用二硝基苯酚(DNP)处理诱导不均等分裂,并检查分化的PMC数量。最令人惊讶的发现是,在一些经DNP处理的胚胎中,PMC的数量显著增加。PMC数量的这种增加被认为与8细胞期形成的早熟小分裂球的大小密切相关。通过测量单个胚胎中早熟小分裂球的大小和PMC的数量,结果表明,如果早熟小分裂球的体积小于26皮升(约为正常小分裂球体积的三倍),几乎所有早熟小分裂球的后代都会分化为PMC。细胞追踪实验确定,小体积的早熟小分裂球的行为与正常胚胎第四次卵裂时形成的小分裂球相同。所得结果表明,海胆胚胎中存在的母体因子至少可以指导三倍以上数量的PMC,并且PMC谱系的细胞分裂次数没有受到严格调控。

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