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首页> 外文期刊>Development >The dissociation of the Fgf-feedback loop controls the limbless state of the neck.
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The dissociation of the Fgf-feedback loop controls the limbless state of the neck.

机译:Fgf-反馈回路的解离控制了颈部的无肢状态。

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摘要

In tetrapods, limbs develop at two specific positions along the anteroposterior axis of the embryo, whereas other regions of the embryo, most prominently the neck and the flank, are limbless. However, the flank can generate an ectopic limb when the Fgf-feedback loop crucial for the initiation of limb budding is activated. Thus, despite its limblessness, the flank is a limb-competent area. Using the chick embryo as model, we investigated whether the neck, as the flank, has the competence to form a limb, and what mechanism may regulate its limblessness. We show that forelimb lateral mesoderm plus ectoderm grafted into the neck can continue limb development, suggesting that the neck does not actively inhibit this process. However, neck tissues themselves do not support or take part in limb formation. Hence, the neck is limb-incompetent. This is due to the dismantling of Fgf signalling at distinct points of the MAPK signalling cascade in the neck lateral mesoderm and ectoderm.
机译:在四足动物中,四肢沿着胚胎的前后轴在两个特定的位置发育,而胚胎的其他区域(最主要是颈部和侧面)没有肢体。但是,当激活对于启动肢体萌芽至关重要的Fgf-反馈回路时,侧面可能会产生异位肢体。因此,尽管没有肢体,但侧面还是适合肢体的区域。以雏鸡胚胎为模型,我们研究了作为侧翼的颈部是否具有形成肢体的能力,以及调节其无肢性的机制。我们表明,前肢外侧中胚层和外胚层移植到颈部可以继续肢体发育,这表明颈部并没有积极抑制这一过程。但是,颈部组织本身不支持或不参与肢体形成。因此,颈部无肢。这是由于在颈外侧中胚层和外胚层中MAPK信号传导级联的不同点处的Fgf信号被拆除。

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