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首页> 外文期刊>Development >Zebrafish Foxi1 provides a neuronal ground state during inner ear induction preceding the Dlx3b/4b-regulated sensory lineage
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Zebrafish Foxi1 provides a neuronal ground state during inner ear induction preceding the Dlx3b/4b-regulated sensory lineage

机译:斑马鱼Foxi1内耳诱导Dlx3b / 4b调节的感觉谱系之前提供神经元的基态。

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摘要

Vertebrate inner ear development is a complex process that involves the induction of a common territory for otic and epibranchial precursors and their subsequent segregation into otic and epibranchial cell fates. In zebrafish, the otic-epibranchial progenitor domain (OEPD) is induced by Fgf signaling in a Foxi1- and Dlx3b/4b-dependent manner, but the functional differences of Foxi1 and Dlx3b/4b in subsequent cell fate specifications within the developing inner ear are poorly understood. Based on pioneer tracking (PioTrack), a novel Cre-dependent genetic lineage tracing method, and genetic data, we show that the competence to embark on a neuronal or sensory fate is provided sequentially and very early during otic placode induction. Loss of Foxi1 prevents neuronal precursor formation without affecting hair cell specification, whereas loss of Dlx3b/4b inhibits hair cell but not neuronal precursor formation. Consistently, in Dlx3b/4b- and Sox9a-deficient b380 mutants almost all otic epithelial fates are absent, including sensory hair cells, and the remaining otic cells adopt a neuronal fate. Furthermore, the progenitors of the anterior lateral line ganglia also arise from the OEPD in a Foxi1-dependent manner but are unaffected in the absence of Dlx3b/4b or in b380 mutants. Thus, in addition to otic fate Foxi1 provides neuronal competence during OEPD induction prior to and independently of the Dlx3b/4b-mediated sensory fate of the developing inner ear.
机译:脊椎动物内耳发育是一个复杂的过程,涉及诱导耳道和支气管前体的共同区域,然后将它们分离成耳道和支气管细胞的命运。在斑马鱼中,Fgf信号以Foxi1和Dlx3b / 4b依赖性方式诱导耳上支前体结构域(OEPD),但是在发育中的内耳中,Foxi1和Dlx3b / 4b在后续细胞命运规格中的功能差异是知之甚少。基于先驱者跟踪(PioTrack),一种新颖的Cre依赖性遗传谱系跟踪方法和遗传数据,我们表明在耳部斑块诱导期间依序提供了进入神经元或感觉命运的能力。 Foxi1的丢失阻止了神经元前体的形成而不会影响毛细胞的规格,而Dlx3b / 4b的丢失则抑制了毛细胞但不抑制神经元前体的形成。一致地,在缺乏Dlx3b / 4b和Sox9a的b380突变体中,几乎没有所有耳上皮命运,包括感觉毛细胞,其余的耳上皮细胞则具有神经元的命运。此外,前侧神经节的祖细胞也以Foxi1依赖的方式从OEPD产生,但在缺少Dlx3b / 4b或b380突变体的情况下不受影响。因此,除了耳部命运外,Foxi1还提供了在OEPD诱导过程中神经元的能力,该作用独立于Dlx3b / 4b介导的发育中内耳的感觉命运。

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