首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Diffusion and scaling during early embryonic pattern formation.
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Diffusion and scaling during early embryonic pattern formation.

机译:早期胚胎形成过程中的扩散和结垢。

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Development of spatial patterns in multicellular organisms depends on gradients in the concentration of signaling molecules that control gene expression. In the Drosophila embryo, Bicoid (Bcd) morphogen controls cell fate along 70% of the anteroposterior axis but is translated from mRNA localized at the anterior pole. Gradients of Bcd and other morphogens are thought to arise through diffusion, but this basic assumption has never been rigorously tested in living embryos. Furthermore, because diffusion sets a relationship between length and time scales, it is hard to see how patterns of gene expression established by diffusion would scale proportionately as egg size changes during evolution. Here, we show that the motion of inert molecules through the embryo is well described by the diffusion equation on the relevant length and time scales, and that effective diffusion constants are essentially the same in closely related dipteran species with embryos of very different size. Nonetheless, patterns of gene expression in these different species scale with egg length. We show that this scaling can be traced back to scaling of the Bcd gradient itself. Our results, together with constraints imposed by the time scales of development, suggest that the mechanism for scaling is a species-specific adaptation of the Bcd lifetime.
机译:多细胞生物中空间模式的发展取决于控制基因表达的信号分子浓度的梯度。在果蝇胚胎中,Bicoid(Bcd)形态发生子控制着沿后​​轴70%的细胞命运,但从位于前极的mRNA进行翻译。 Bcd和其他形态发生子的梯度被认为是通过扩散产生的,但是这一基本假设从未在活体胚胎中经过严格测试。此外,由于扩散会在长度和时间尺度之间建立关系,因此很难理解随着卵大小在进化过程中的变化,通过扩散建立的基因表达模式将如何成比例地增长。在这里,我们显示了惰性分子通过胚胎的运动在相关的长度和时间尺度上很好地由扩散方程描述,并且有效的扩散常数在密切相关的二倍体物种中具有相同的大小,而这些物种在本质上是相同的。然而,这些不同物种中基因表达的模式随卵长而变化。我们表明,这种缩放比例可以追溯到Bcd渐变本身的缩放比例。我们的研究结果以及开发时间尺度所施加的约束条件表明,尺度扩展的机制是Bcd寿命的特定物种适应性。

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