首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >The identification of transcription factors expressed in the notochord of Ciona intestinalis adds new potential players to the brachyury gene regulatory network.
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The identification of transcription factors expressed in the notochord of Ciona intestinalis adds new potential players to the brachyury gene regulatory network.

机译:鉴定了在短肠Ci的脊索中表达的转录因子,为近距离基因调控网络增加了新的潜在参与者。

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摘要

The notochord is the distinctive characteristic of chordates; however, the knowledge of the complement of transcription factors governing the development of this structure is still incomplete. Here we present the expression patterns of seven transcription factor genes detected in the notochord of the ascidian Ciona intestinalis at various stages of embryonic development. Four of these transcription factors, Fos-a, NFAT5, AFF and Klf15, have not been directly associated with the notochord in previous studies, while the others, including Spalt-like-a, Lmx-like, and STAT5/6-b, display evolutionarily conserved expression in this structure as well as in other domains. We examined the hierarchical relationships between these genes and the transcription factor Brachyury, which is necessary for notochord development in all chordates. We found that Ciona Brachyury regulates the expression of most, although not all, of these genes. These results shed light on the genetic regulatory program underlying notochord formation in Ciona and possibly other chordates.
机译:脊索是弦乐的独特特征。但是,有关控制该结构发展的转录因子补体的知识仍然不完整。在这里,我们介绍了在胚胎发育的各个阶段在海鞘Ciona intestinalis的脊索中检测到的七个转录因子基因的表达模式。这些转录因子中的四个,即Fos-a,NFAT5,AFF和Klf15,在先前的研究中并未与脊索直接相关,而其他转录因子,包括Spalt-a-,Lmx-like和STAT5 / 6-b,在此结构以及其他域中显示进化保守的表达。我们检查了这些基因与转录因子Brachyury之间的等级关系,这对于所有和弦中的脊索发育都是必需的。我们发现Ciona Brachyury调节大多数(尽管不是全部)这些基因的表达。这些结果揭示了Ciona和可能其他脊索动物脊索形成的遗传调控程序。

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