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Foxg specifies sensory neurons in the anterior neural plate border of the ascidian embryo

机译:Foxg在海鞘胚胎的前神经板边界指定了感觉神经元

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摘要

Foxg constitutes a regulatory loop with Fgf8 and plays an important role in the development of anterior placodes and the telencephalon in vertebrate embryos. Ascidians, which belong to Tunicata, the sister group of vertebrates, develop a primitive placode-like structure at the anterior boundary of the neural plate, but lack a clear counterpart of the telencephalon. In this animal, Foxg is expressed in larval palps, which are adhesive organs with sensory neurons. Here, we show that Foxg begins to be expressed in two separate rows of cells within the neural plate boundary region under the control of the MAPK pathway to pattern this region. However, Foxg is not expressed in the brain, and we find no evidence that knockdown of Foxg affects brain formation. Our data suggest that recruitment of Fgf to the downstream of Foxg might have been a critical evolutionary event for the telencephalon in the vertebrate lineage.
机译:Foxg与Fgf8构成一个调节环,在脊椎动物胚胎的前斑和端脑发育中起重要作用。属于姐妹姐妹群Tunicata的海豚在神经板的前边界处形成原始的placode状结构,但缺乏与远脑的对应物。在这种动物中,Foxg在幼虫的掌中表达,幼虫的掌是具有感觉神经元的粘附器官。在这里,我们显示Foxg在MAPK路径的控制下开始在神经板边界区域内的两个单独的细胞行中表达,以图案化该区域。但是,Foxg在大脑中不表达,我们找不到证据表明Foxg的敲低会影响大脑的形成。我们的数据表明,将Fgf募集到Foxg的下游可能是脊椎动物谱系中端脑的关键进化事件。

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