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发育中的脊椎动物内耳的轴向模式形成。

Axial patterning in the developing vertebrate inner ear.

作者信息

Whitfield Tanya T, Hammond Katherine L

机构信息

Centre for Developmental and Biomedical Genetics, Department of Biomedical Science, University of Sheffield, UK.

出版信息

Int J Dev Biol. 2007;51(6-7):507-20. doi: 10.1387/ijdb.072380tw.

Abstract

Axial patterning in the vertebrate inner ear has been studied for over eighty years, and recent work has made great progress towards an understanding of the molecular mechanisms responsible for establishing asymmetries about the otic axes. Tissues extrinsic to the ear provide sources of signalling molecules that are active early in development, at or before otic placode stages, while intrinsic factors interpret these signals to establish and maintain axial pattern. Key features of dorsoventral otic patterning in amniote embryos involve Wnt and Fgf signalling from the hindbrain and Hh signalling from midline tissues (notochord and floorplate). Mutual antagonism between these pathways and their downstream targets within the otic epithelium help to refine and maintain dorsoventral axial patterning in the ear. In the zebrafish ear, the same tissues and signals are implicated, but appear to play a role in anteroposterior, rather than dorsoventral, otic patterning. Despite this paradox, conservation of mechanisms may be higher than is at first apparent.

摘要

脊椎动物内耳的轴向模式已经研究了八十多年,最近的研究在理解负责建立耳轴不对称性的分子机制方面取得了很大进展。耳外组织提供在发育早期、耳基板阶段或之前就活跃的信号分子来源,而内在因素则解读这些信号以建立和维持轴向模式。羊膜动物胚胎背腹侧耳模式的关键特征涉及来自后脑的Wnt和Fgf信号以及来自中线组织(脊索和底板)的Hh信号。这些途径及其在内耳上皮细胞中的下游靶点之间的相互拮抗作用有助于优化和维持耳内的背腹侧轴向模式。在斑马鱼的内耳中,涉及相同的组织和信号,但似乎在前后轴而非背腹轴的耳模式形成中发挥作用。尽管存在这种矛盾,但机制的保守性可能比最初看起来的要高。

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