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Fgf3 and Fgf10 are required for mouse otic placode induction.

机译:Fgf3和Fgf10是诱导小鼠耳斑所需的。

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The inner ear, which contains the sensory organs specialised for audition and balance, develops from an ectodermal placode adjacent to the developing hindbrain. Tissue grafting and recombination experiments suggest that placodal development is directed by signals arising from the underlying mesoderm and adjacent neurectoderm. In mice, Fgf3 is expressed in the neurectoderm prior to and concomitant with placode induction and otic vesicle formation, but its absence affects only the later stages of otic vesicle morphogenesis. We show here that mouse Fgf10 is expressed in the mesenchyme underlying the prospective otic placode. Embryos lacking both Fgf3 and Fgf10 fail to form otic vesicles and have aberrant patterns of otic marker gene expression, suggesting that FGF signals are required for otic placode induction and that these signals emanate from both the hindbrain and mesenchyme. These signals are likely to act directly on the ectoderm, as double mutant embryos showed normal patterns of gene expression in the hindbrain. Cell proliferation and survival were not markedly affected in double mutant embryos, suggesting that the major role of FGF signals in otic induction is to establish normal patterns of gene expression in the prospective placode. Finally, examination of embryos carrying three out of the four mutant Fgf alleles revealed intermediate phenotypes, suggesting a quantitative requirement for FGF signalling in otic vesicle formation.
机译:内耳包含专门用于听觉和平衡的感觉器官,它是从与发育中的后脑相邻的外胚层发育而来的。组织移植和重组实验表明,层状发育是由下层中胚层和邻近的中胚层所产生的信号指导的。在小鼠中,Fgf3在斑块诱导和耳囊形成之前并伴随在神经胚层中表达,但它的缺失仅影响耳囊形态发生的后期。我们在这里显示,小鼠Fgf10在前瞻性耳语基础的间充质中表达。同时缺少Fgf3和Fgf10的胚胎无法形成耳囊,并具有异常的耳标志基因表达模式,这表明FGF信号是耳斑诱导的信号,并且这些信号均来自后脑和间充质。这些信号可能直接作用于外胚层,因为双突变体胚胎在后脑中显示出正常的基因表达模式。在双突变体胚胎中,细胞增殖和存活没有受到明显影响,这表明FGF信号在耳部感应中的主要作用是在预期的前庭中建立正常的基因表达模式。最后,检查携带四个突变Fgf等位基因中的三个的胚胎揭示了中间表型,表明在耳小泡形成过程中FGF信号传导的定量要求。

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