Schimmang Thomas
Institute for Molecular Biology and Genetics, University of Valladolid and Spanish Research Council (CSIC), Valladolid, Spain.
Int J Dev Biol. 2007;51(6-7):473-81. doi: 10.1387/ijdb.072334ts.
Classical studies have postulated the action of an endomesodermal signal initiating inner ear induction, subsequently followed by a neural tube-derived signal to complete the process of otic placode formation in the surface ectoderm. Members of the Fibroblast growth factor (FGF) gene family have been implicated in these processes. In this review, expression analysis and recent experimental evidence for candidate inner ear FGF ligands during inner ear induction is discussed. Careful examination of the spatiotemporal expression patterns of different FGFs during inner ear induction reveals that the sequential appearance of FGF members in the endoderm and/or mesoderm is followed by expression in the posterior hindbrain in all vertebrate species analysed to date. Experimental manipulations have demonstrated the sufficiency and/or necessity of some FGFs during different steps of inner ear induction in vitro and in vivo. Combining the advantages of the molecular tools and approaches available in different experimental systems such as zebrafish, chicken or mouse will eventually lead to a complete understanding of how FGFs control inner ear induction in vertebrates.
经典研究推测,内胚层中胚层信号启动内耳诱导作用,随后神经管衍生信号完成表面外胚层耳板形成过程。成纤维细胞生长因子(FGF)基因家族成员与这些过程有关。在本综述中,我们讨论了内耳诱导过程中候选内耳FGF配体的表达分析和最新实验证据。仔细研究内耳诱导过程中不同FGF的时空表达模式发现,在内胚层和/或中胚层中FGF成员依次出现后,在迄今为止分析的所有脊椎动物物种的后脑后部均有表达。实验操作已经证明了一些FGF在体内外内耳诱导不同步骤中的充分性和/或必要性。结合斑马鱼、鸡或小鼠等不同实验系统中可用的分子工具和方法的优势,最终将全面了解FGF如何控制脊椎动物的内耳诱导。