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微细胞对于海胆胚胎中正常植物极板的特化是必需的。

Micromeres are required for normal vegetal plate specification in sea urchin embryos.

作者信息

Ransick A, Davidson E H

机构信息

Division of Biology, California Institute of Technology, Pasadena 91125, USA.

出版信息

Development. 1995 Oct;121(10):3215-22. doi: 10.1242/dev.121.10.3215.

Abstract

Vegetal plate specification was assessed in S. purpuratus embryos after micromere deletions at the 4th, 5th and 6th cleavages, by assaying expression of the early vegetal plate marker Endo 16, using whole-mount in situ hybridization. After 4th cleavage micromere deletions, the embryos typically displayed weak Endo16 expression in relatively few cells of the lineages that normally constitute the vegetal plate, while after 5th and 6th cleavage micromere deletions the embryos exhibited strong Endo16 expression in larger fractions of cells belonging to those lineages. When all four micromeres were deleted, the embryos were severely delayed in initiating gastrulation and sometimes failed to complete gastrulation. However, if only one micromere was allowed to remain in situ throughout development, the embryos exhibited strong Endo16 expression and gastrulation occurred normally, on schedule with controls. Additional measurements showed that these microsurgical manipulations do not alter cleavage rates or generally disrupt embryo organization. These results constitute direct evidence that the micromeres provide signals required by the macromere lineages for initiation of vegetal plate specification. The specification of the vegetal plate is completed in a normal manner only if micromere signaling is allowed to continue at least to the 6th cleavage stage.

摘要

在海胆胚胎的第4、5和6次卵裂后进行小分裂球缺失后,通过全胚胎原位杂交检测早期植物极板标记物Endo 16的表达,评估植物极板的特化情况。在第4次卵裂小分裂球缺失后,胚胎通常在正常构成植物极板的细胞谱系中相对较少的细胞中显示出较弱的Endo16表达,而在第5和6次卵裂小分裂球缺失后,胚胎在属于这些细胞谱系的较大部分细胞中表现出较强的Endo16表达。当所有四个小分裂球都被缺失时,胚胎在启动原肠胚形成时严重延迟,有时无法完成原肠胚形成。然而,如果在整个发育过程中只允许一个小分裂球原位保留,胚胎会表现出较强的Endo16表达,并且原肠胚形成正常发生,与对照胚胎同步。额外的测量表明,这些显微手术操作不会改变卵裂速率,也不会普遍破坏胚胎组织。这些结果构成了直接证据,表明小分裂球为大分裂球细胞谱系提供了启动植物极板特化所需的信号。只有当小分裂球信号至少持续到第6次卵裂阶段时,植物极板的特化才能以正常方式完成。

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