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首页> 外文期刊>Development Growth and Differentiation >VegT, eFGF and Xbra cause overall posteriorization while Xwnt8 causes eye-level restricted posteriorization in synergy with chordin in early Xenopus development
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VegT, eFGF and Xbra cause overall posteriorization while Xwnt8 causes eye-level restricted posteriorization in synergy with chordin in early Xenopus development

机译:VegT,eFGF和Xbra导致整体后验,而Xwnt8在早期非洲爪蟾发展中与chordin协同作用导致眼睛水平受限的后验

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We examined several candidate posterior/mesodermal inducing molecules using permanent blastula-type embryos (PBEs) as an assay system. Candidate molecules were injected individually or in combination with the organizer factor chordin mRNA. Injection of chordin alone resulted in a white hemispherical neural tissue surrounded by a large circular cement gland, together with anterior neural gene expression and thus the development of the anterior-most parts of the embryo, without mesodermal tissues. When VegT, eFGF or Xbra mRNAs were injected into a different blastomere of the chordin-injected PBEs, the embryos elongated and formed eye, muscle and pigment cells, and expressed mesodermal and posterior neural genes. These embryos formed the full spectrum of the anteroposterior embryonic axis. In contrast, injection of CSKA-Xwnt8 DNA into PBEs injected with chordin resulted in eye formation and expression of En2, a midbrain/hindbrain marker, and Xnot, a notochord marker, but neither elongation, muscle formation nor more posterior gene expression. Injection of chordin and posteriorizing molecules into the same cell did not result in elongation of the embryo. Thus, by using PBEs as the host test system we show that (i) overall anteroposterior neural development, mesoderm (muscle) formation, together with embryo elongation can occur through the synergistic effect(s) of the organizer molecule chordin, and each of the 'overall posteriorizing molecules' eFGF, VegT and Xbra; (ii) Xwnt8-mediated posteriorization is restricted to the eye level and is independent of mesoderm formation; and (iii) proper anteroposterior patterning requires a separation of the dorsalizing and posteriorizing gene expression domains.
机译:我们使用永久性囊胚型胚胎(PBE)作为检测系统检查了几种候选后/中胚层诱导分子。候选分子可以单独注射或与组织因子chordin mRNA组合注射。单独注射chordin会导致一个白色的半球形神经组织,周围是一个大的圆形水泥腺,以及前神经基因表达,从而导致了胚胎最前部分的发育,而没有中胚层组织。当将VegT,eFGF或Xbra mRNA注射到注射了chordin的PBE的另一个卵裂球中时,胚胎会伸长并形成眼,肌肉和色素细胞,并表达中胚层和后神经基因。这些胚胎形成了前后胚轴的全谱。相比之下,将CSKA-Xwnt8 DNA注射入用chordin注射的PBE中会导致眼睛的形成和中脑/后脑标记En2和脊索Xnot的表达,但既没有伸长,没有肌肉形成,也没有后部基因表达。将chordin和后验分子注射到同一细胞中不会导致胚胎伸长。因此,通过使用PBEs作为宿主测试系统,我们表明(i)整个前后神经发育,中胚层(肌肉)形成以及胚胎伸长可以通过组织者分子chordin的协同作用发生,并且每个“整体后验分子” eFGF,VegT和Xbra; (ii)Xwnt8介导的后继性仅限于眼睛水平,并且与中胚层的形成无关; (iii)适当的前后模式需要分开背侧和后侧基因表达域。

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