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Evolutionarily conserved requirement of Cdx for post-occipital tissue emergence

机译:Cdx对枕后组织出现的进化保守要求

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Mouse Cdx genes are involved in axial patterning and partial Cdx mutants exhibit posterior embryonic defects. We found that mouse embryos in which all three Cdx genes are inactivated fail to generate any axial tissue beyond the cephalic and occipital primordia. Anterior axial tissues are laid down and well patterned in Cdx null embryos, and a 3' Hox gene is initially transcribed and expressed in the hindbrain normally. Axial elongation stops abruptly at the post-occipital level in the absence of Cdx, as the posterior growth zone loses its progenitor activity. Exogenous Fgf8 rescues the posterior truncation of Cdx mutants, and the spectrum of defects of Cdx null embryos matches that resulting from loss of posterior Fgfr1 signaling. Our data argue for a main function of Cdx in enforcing trunk emergence beyond the Cdx-independent cephalo-occipital region, and for a downstream role of Fgfr1 signaling in this function. Cdx requirement for the post-head section of the axis is ancestral as it takes place in arthropods as well.
机译:小鼠Cdx基因参与轴向模式和部分Cdx突变体表现出后胚胎缺陷。我们发现,所有三个Cdx基因均失活的小鼠胚胎无法产生除头枕和枕后原基之外的任何轴向组织。放置前轴组织并在Cdx空胚中很好地构图,并且通常在后脑中正常转录和表达3'Hox基因。在没有Cdx的情况下,在枕后水平轴伸长突然停止,因为后生长区失去了其祖细胞活性。外源Fgf8挽救了Cdx突变体的后截断,而Cdx空胚的缺陷谱与后Fgfr1信号缺失导致的缺陷谱匹配。我们的数据证明了Cdx可以在不依赖于Cdx的头枕区域以外的躯干中强制执行主干功能,并认为Fgfr1信号在该功能中具有下游作用。轴的头部后部的Cdx要求是祖先的,因为它也发生在节肢动物中。

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