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Autonomous and non-autonomous differentiation of ectoderm in different sea urchin species.

作者信息

Wikramanayake A H, Brandhorst B P, Klein W H

机构信息

Department of Biochemistry and Molecular Biology, University of Texas, Houston 77030, USA.

出版信息

Development. 1995 May;121(5):1497-505. doi: 10.1242/dev.121.5.1497.

DOI:10.1242/dev.121.5.1497
PMID:7789279
Abstract

During early embryogenesis, the highly regulative sea urchin embryo relies extensively on cell-cell interactions for cellular specification. Here, the role of cellular interactions in the temporal and spatial expression of markers for oral and aboral ectoderm in Strongylocentrotus purpuratus and Lytechinus pictus was investigated. When pairs of mesomeres or animal caps, which are fated to give rise to ectoderm, were isolated and cultured they developed into ciliated embryoids that were morphologically polarized. In animal explants from S. purpuratus, the aboral ectoderm-specific Spec1 gene was activated at the same time as in control embryos and at relatively high levels. The Spec1 protein was restricted to the squamous epithelial cells in the embryoids suggesting that an oral-aboral axis formed and aboral ectoderm differentiation occurred correctly. However, the Ecto V protein, a marker for oral ectoderm differentiation, was detected throughout the embryoid and no stomodeum or ciliary band formed. These results indicated that animal explants from S. purpuratus were autonomous in their ability to form an oral-aboral axis and to differentiate aboral ectoderm, but other aspects of ectoderm differentiation require interaction with vegetal blastomeres. In contrast to S. purpuratus, aboral ectoderm-specific genes were not expressed in animal explants from L. pictus even though the resulting embryoids were morphologically very similar to those of S. purpuratus. Recombination of the explants with vegetal blastomeres or exposure to the vegetalizing agent LiCl restored activity of aboral ectoderm-specific genes, suggesting the requirement of a vegetal induction for differentiation of aboral ectoderm cells.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

相似文献

1
Autonomous and non-autonomous differentiation of ectoderm in different sea urchin species.
Development. 1995 May;121(5):1497-505. doi: 10.1242/dev.121.5.1497.
2
Multiple signaling events specify ectoderm and pattern the oral-aboral axis in the sea urchin embryo.多种信号传导事件决定了海胆胚胎中外胚层的形成并确定了口-反口轴的模式。
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Range and stability of cell fate determination in isolated sea urchin blastomeres.分离的海胆卵裂球中细胞命运决定的范围和稳定性
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Regulatory elements from the related spec genes of Strongylocentrotus purpuratus yield different spatial patterns with a lacZ reporter gene.来自紫海胆相关spec基因的调控元件与一个lacZ报告基因产生不同的空间模式。
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Segregation of oral from aboral ectoderm precursors is completed at fifth cleavage in the embryogenesis of Strongylocentrotus purpuratus.在紫海胆胚胎发育过程中,口侧外胚层前体与反口侧外胚层前体的分离在第五次卵裂时完成。
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Oral/aboral ectoderm differentiation of the sea urchin embryo depends on a planar or secretory signal from the vegetal hemisphere.
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Restricted expression of the Lytechinus pictus Spec1 gene homologue in reciprocal hybrid embryos with Strongylocentrotus purpuratus.在与紫球海胆的正反交杂种胚胎中,加州紫海胆Spec1基因同源物的表达受限。
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Development. 1997 Jun;124(12):2355-64. doi: 10.1242/dev.124.12.2355.

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