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首页> 外文期刊>Developmental biology >Meis transcription factor maintains the neurogenic ectoderm and regulates the anterior-posterior patterning in embryos of a sea urchin, Hemicentrotus pulcherrimus
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Meis transcription factor maintains the neurogenic ectoderm and regulates the anterior-posterior patterning in embryos of a sea urchin, Hemicentrotus pulcherrimus

机译:Meis转录因子维持神经源性外胚层,并调节海胆胚胎的前后图案化,Hemicentrootus pulcherrimus

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摘要

Precise body axis formation is an essential step in the development of multicellular organisms, for most of which the molecular gradient and/or specifically biased localization of cell-fate determinants in eggs play important roles. In sea urchins, however, any biased proteins and mRNAs have not yet been identified in the egg except for vegetal cortex molecules, suggesting that sea urchin development is mostly regulated by uniformly distributed maternal molecules with contributions to axis formation that are not well characterized. Here, we describe that the maternal Meis transcription factor regulates anterior-posterior axis formation through maintenance of the most anterior territory in embryos of a sea urchin, Hemicentrotus pulcherrimus. Loss-of-function experiments revealed that Meis is intrinsically required for maintenance of the anterior neuroectoderm specifier foxQ2 after hatching and, consequently, the morphant lost anterior neuroectoderm characteristics. In addition, the expression patterns of univin and VEGF, the lateral ectoderm markers, and the mesenchyme-cell pattern shifted toward the anterior side in Meis morphants more than they did in control embryos, indicating that Meis contributes to the precise anteroposterior patterning by regulating the anterior neuroectodermal fate.
机译:精确的体轴形成是多细胞生物发展的重要步骤,大部分的分子梯度和/或细胞 - 命运决定簇中的分子梯度和/或特异性偏置定位在卵中起重要作用。然而,在海胆中,除了植物皮质分子外,尚未在卵中尚未发现任何偏置的蛋白质和mRNA,表明海胆发育主要由均匀分布的母体分子对轴形成的均匀分布的母体分子进行调节。在这里,我们描述了母体甲型转录因子通过维护海胆胚胎的胚胎中最前沿的前后轴形成,从而进行Hemicentrotus pulchermus。功能丧失实验表明,Meis在孵化后维持前神经外胚层的寄生虫福氏菌属福氏菌属福氏菌属,并且因此,Mecphant失去了前神经分区的特征。此外,非程序和VEGF,横向外胚层标记的表达模式和间本 - 细胞图案比在对照胚胎中朝向梅斯蒙特的前侧移位,表明MEIS通过调节梅斯通过调节来贡献精确的前后女性图案前神经分区命运。

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