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Specification of cell fate in the sea urchin embryo: summary and some proposed mechanisms.

机译:海胆胚胎中细胞命运的规格:概述和一些建议的机制。

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An early set of blastomere specifications occurs during cleavage in the sea urchin embryo, the result of both conditional and autonomous processes, as proposed in the model for this embryo set forth in 1989. Recent experimental results have greatly illuminated the mechanisms of specification in some early embryonic territories, though others remain obscure. We review the progressive process of specification within given lineage elements, and with reference to the early axial organization of the embryo. Evidence for the conditional specification of the veg2 lineage subelement of the endoderm and other potential interblastomere signaling interactions in the cleavage-stage embryo are summarized. Definitive boundaries between mesoderm and endoderm territories of the vegetal plate, and between endoderm and overlying ectoderm, are not established until later in development. These processes have been clarified by numerous observations on spatial expression of various genes, and by elegant lineage labeling studies. The early specification events depend on regional mobilization of maternal regulatory factors resulting at once in the zygotic expression of genes encoding transcription factors, as well as downstream genes encoding proteins characteristic of the cell types that will much later arise from the progeny of the specified blastomeres. This embryo displays a maximal form of indirect development. The gene regulatory network underlying the embryonic development reflects the relative simplicity of the completed larva and of the processes required for its formation. The requirements for postembryonic adult body plan formation in the larval rudiment include engagement of a new level of genetic regulatory apparatus, exemplified by the Hox gene complex.
机译:早在1989年提出的海胆胚胎模型中提出的,海胆胚胎在卵裂过程中就发生了早期的卵裂球规格。最近的实验结果极大地阐明了早期的卵裂球规格机理。胚胎领地,尽管其他地方仍然默默无闻。我们回顾了给定谱系元素内规范的进行过程,并参考了胚胎的早期轴向组织。总结了内胚层的veg2谱系亚元件和分裂阶段胚胎中其他潜在的卵裂球间信号传导相互作用的条件规格的证据。直到发育后期,才确定中胚层和植物板的内胚层之间以及内胚层和上覆外胚层之间的界限。通过对各种基因的空间表达的大量观察以及优雅的谱系标记研究,已阐明了这些过程。早期的规范事件取决于母亲调节因子的区域动员,该调节因子立即导致编码转录因子的基因的合子表达,以及编码细胞类型特征蛋白的下游基因,这些基因将在以后由特定卵裂球的后代产生。该胚胎显示出最大程度的间接发育。胚胎发育的基础基因调控网络反映了完整的幼虫及其形成所需过程的相对简单性。在幼体雏形中形成胚胎后成人身体计划的要求包括参与新水平的遗传调节装置,例如Hox基因复合体。

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