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影响青鳉(Oryzias latipes)视网膜-脑顶盖轴突寻路的突变。

Mutations affecting retinotectal axonal pathfinding in Medaka, Oryzias latipes.

作者信息

Yoda Hiroki, Hirose Yukihiro, Yasuoka Akihito, Sasado Takao, Morinaga Chikako, Deguchi Tomonori, Henrich Thorsten, Iwanami Norimasa, Watanabe Tomomi, Osakada Masakazu, Kunimatsu Sanae, Wittbrodt Joachim, Suwa Hiroshi, Niwa Katsutoshi, Okamoto Yasuko, Yamanaka Toshiyuki, Kondoh Hisato, Furutani-Seiki Makoto

机构信息

Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo 113-8657, Japan.

出版信息

Mech Dev. 2004 Jul;121(7-8):715-28. doi: 10.1016/j.mod.2004.03.021.

Abstract

We screened for mutations affecting retinotectal axonal projection in Medaka, Oryzias latipes. In wild-type Medaka embryos, all the axons of retinal ganglion cells (RGCs) project to the contralateral tectum, such that the topological relationship of the retinal field is maintained. We labeled RGC axons using DiI/DiO at the nasodorsal and temporoventral positions of the retina, and screened for mutations affecting the pattern of stereotypic projections to the tectum. By screening 184 mutagenized haploid genomes, seven mutations in five genes causing defects in axonal pathfinding were identified, whereas mutations affecting the topographic projection of RGC axons were not found. The mutants were grouped into two classes according to their phenotypes. In mutants of Class I, a subpopulation of the RGC axons branched out either immediately after leaving the eye or after reaching the midline, and this axonal subpopulation projected to the ipsilateral tectum. In mutants of Class II, subpopulations of RGC axons branched out after crossing the midline and projected aberrantly. These mutants will provide clues to understanding the functions of genes essential for axonal pathfinding, which may be conserved or partly divergent among vertebrates.

摘要

我们在青鳉(Oryzias latipes)中筛选影响视网膜 - 脑顶盖轴突投射的突变。在野生型青鳉胚胎中,视网膜神经节细胞(RGCs)的所有轴突都投射到对侧脑顶盖,从而维持视网膜区域的拓扑关系。我们在视网膜的鼻背侧和颞腹侧位置使用DiI/DiO标记RGC轴突,并筛选影响向脑顶盖的刻板投射模式的突变。通过筛选184个诱变的单倍体基因组,鉴定出五个基因中的七个突变导致轴突寻路缺陷,而未发现影响RGC轴突拓扑投射的突变。根据其表型,这些突变体分为两类。在I类突变体中,一部分RGC轴突在离开眼睛后或到达中线后立即分支,并且这部分轴突投射到同侧脑顶盖。在II类突变体中,RGC轴突的亚群在穿过中线后分支并异常投射。这些突变体将为理解轴突寻路所必需的基因功能提供线索,这些基因在脊椎动物中可能是保守的或部分不同的。

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