首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Photoreceptor differentiation in Drosophila: from immature neurons to functional photoreceptors.
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Photoreceptor differentiation in Drosophila: from immature neurons to functional photoreceptors.

机译:果蝇中的感光细胞分化:从不成熟的神经元到功能性感光细胞。

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摘要

How a pool of equipotent cells acquires a multitude of distinct fates is a major question in developmental biology. The study of photoreceptor (PR) cell differentiation in Drosophila has been used to address this question. PR differentiation is a process that extends over a period of 5 days: It begins in the larval eye imaginal disc when PRs are recruited and commit to particular PR fates, and it culminates in the pupal eye disc with the morphogenesis of the rhabdomeres and the initiation of rhodopsin expression. Several models for PR specification agree that the Ras and Notch signaling pathways are important for the specification of different PR subtypes (Freeman [1997] Development 124:261-270; Cooper and Bray [2000] Curr. Biol. 10:1507-1510; Tomlinson and Struhl [2001] Mol. Cell. 7:487-495). In the first part of this review, we briefly describe the different signaling pathways and transcription factors required for the specification and differentiation of the different PR subtypes in the larval eye disc. In the second part, we review the roles of several transcription factors, which are required for the terminal photoreceptor differentiation and rhodopsin expression.
机译:等电位细胞池如何获得大量不同的命运是发育生物学中的一个主要问题。果蝇中感光细胞(PR)细胞分化的研究已用于解决此问题。 PR分化是一个持续5天的过程:当PR被募集并参与特定的PR命运时,它始于幼虫眼假想盘,最终随着横纹的形态发生和萌发而在the眼盘中达到顶峰。视紫红质的表达。 PR规范的几种模型都认为,Ras和Notch信号传导途径对于不同PR亚型的规范很重要(Freeman [1997] Development 124:261-270; Cooper and Bray [2000] Curr。Biol。10:1507-1510; Tomlinson和Struhl [2001] Mol。Cell。7:487-495)。在本综述的第一部分中,我们简要描述了幼虫眼盘中不同PR亚型的规格和分化所需的不同信号途径和转录因子。在第二部分中,我们回顾了几种转录因子的作用,这是终末感光细胞分化和视紫红质表达所必需的。

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