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斑马鱼中后脑边界在中脑极化、视网膜顶盖投射的映射和限制中的作用

Requirement for the zebrafish mid-hindbrain boundary in midbrain polarisation, mapping and confinement of the retinotectal projection.

作者信息

Picker A, Brennan C, Reifers F, Clarke J D, Holder N, Brand M

机构信息

Department of Neurobiology, University of Heidelberg, Im Neuenheimer Feld 364, D-69120 Heidelberg, Germany.

出版信息

Development. 1999 Jul;126(13):2967-78. doi: 10.1242/dev.126.13.2967.

DOI:10.1242/dev.126.13.2967
PMID:10357940
Abstract

The organizer at the midbrain-hindbrain boundary (MHB organizer) has been proposed to induce and polarize the midbrain during development. We investigate the requirement for the MHB organizer in acerebellar mutants, which lack a MHB and cerebellum, but retain a tectum, and are mutant for fgf8, a candidate inducer and polarizer. We examine the retinotectal projection in the mutants to assay polarity in the tectum. In mutant tecta, retinal ganglion cell (RGC) axons form overlapping termination fields, especially in the ventral tectum, and along both the anterior-posterior and dorsal-ventral axis of the tectum, consistent with a MHB requirement in generating midbrain polarity. However, polarity is not completely lost in the mutant tecta, in spite of the absence of the MHB. Moreover, graded expression of the ephrin family ligand Ephrin-A5b is eliminated, whereas Ephrin-A2 and Ephrin-A5a expression is leveled in acerebellar mutant tecta, showing that ephrins are differentially affected by the absence of the MHB. Some RGC axons overshoot beyond the mutant tectum, suggesting that the MHB also serves a barrier function for axonal growth. By transplanting whole eye primordia, we show that mapping defects and overshooting largely, but not exclusively, depend on tectal, but not retinal genotype, and thus demonstrate an independent function for Fgf8 in retinal development. The MHB organizer, possibly via Fgf8 itself, is thus required for midbrain polarisation and for restricting axonal growth, but other cell populations may also influence midbrain polarity.

摘要

中脑-后脑边界组织者(中脑-后脑边界组织者)被认为在发育过程中诱导并极化中脑。我们研究了小脑缺失突变体中脑-后脑边界组织者的需求,这些突变体缺乏中脑-后脑边界和小脑,但保留了顶盖,并且是候选诱导剂和极化剂fgf8的突变体。我们检查了突变体中的视网膜-顶盖投射,以分析顶盖中的极性。在突变体顶盖中,视网膜神经节细胞(RGC)轴突形成重叠的终末场,特别是在腹侧顶盖,并且沿着顶盖的前后轴和背腹轴,这与产生中脑极性时对中脑-后脑边界的需求一致。然而,尽管没有中脑-后脑边界,突变体顶盖中的极性并未完全丧失。此外,ephrin家族配体Ephrin-A5b的分级表达被消除,而Ephrin-A2和Ephrin-A5a的表达在小脑缺失突变体顶盖中趋于平稳,表明ephrin受到中脑-后脑边界缺失的不同影响。一些RGC轴突越过突变体顶盖,表明中脑-后脑边界也对轴突生长起到屏障作用。通过移植整个眼原基,我们表明映射缺陷和越过现象在很大程度上但并非完全取决于顶盖而非视网膜的基因型,从而证明Fgf8在视网膜发育中具有独立功能。因此,中脑-后脑边界组织者可能通过Fgf8本身,对于中脑极化和限制轴突生长是必需的,但其他细胞群体也可能影响中脑极性。

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