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非洲爪蟾中视锥和视杆光感受器的顺序发生与决定

Sequential genesis and determination of cone and rod photoreceptors in Xenopus.

作者信息

Chang W S, Harris W A

机构信息

Department of Biology, University of California, San Diego, La Jolla 92093-0366, USA.

出版信息

J Neurobiol. 1998 Jun;35(3):227-44.

PMID:9622007
Abstract

In this study, we addressed the temporal sequence of photoreceptor fate determination in Xenopus laevis by examining a number of key events during early cone and rod development. We compared the relative timing and spatial pattern of cone and rod specification using a number of cell type-specific markers, including probes to a long wavelength-sensitive opsin which is expressed by the major cone subtype. Our results show that cones are initially more numerous, and can arise in less mature regions of the retina than rods, although both types of photoreceptors begin to express their respective opsins at about the same time. We applied these markers to an assay of cellular determination to identify the stages of embryonic development at which the earliest photoreceptor fates are induced in vivo. The relative birth order of the major cone and rod subtypes was revealed by simultaneous labeling with markers of cell proliferation and terminal differentiation. Although there is much temporal overlap between the periods of cone and rod genesis and determination in Xenopus, we could discern that the earliest cones are both born and determined before the first rods. Thus, even in the rapidly developing retina of Xenopus, photoreceptors achieve their identities in a sequential fashion, suggesting that the inductive cues which determine specific photoreceptor fates may also arise sequentially during development.

摘要

在本研究中,我们通过检查爪蟾早期视锥细胞和视杆细胞发育过程中的一些关键事件,探讨了爪蟾光感受器命运决定的时间顺序。我们使用多种细胞类型特异性标记物,包括针对主要视锥细胞亚型所表达的长波长敏感视蛋白的探针,比较了视锥细胞和视杆细胞特化的相对时间和空间模式。我们的结果表明,视锥细胞最初数量更多,并且与视杆细胞相比,能在视网膜较不成熟的区域产生,尽管两种类型的光感受器大约在同一时间开始表达各自的视蛋白。我们将这些标记物应用于细胞命运测定分析,以确定在体内诱导最早光感受器命运的胚胎发育阶段。通过同时用细胞增殖和终末分化标记物进行标记,揭示了主要视锥细胞和视杆细胞亚型的相对产生顺序。尽管在爪蟾中视锥细胞和视杆细胞的发生和命运决定时期在时间上有很多重叠,但我们可以看出最早的视锥细胞在第一批视杆细胞之前就已产生并完成命运决定。因此,即使在爪蟾快速发育的视网膜中,光感受器也是以一种顺序方式获得其身份的,这表明决定特定光感受器命运的诱导信号在发育过程中也可能是顺序出现的。

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