Scale-invariant patterning by size-dependent inhibition of Nodal signalling

被引:0
|
作者
María Almuedo-Castillo
Alexander Bläßle
David Mörsdorf
Luciano Marcon
Gary H. Soh
Katherine W. Rogers
Alexander F. Schier
Patrick Müller
机构
[1] Friedrich Miescher Laboratory of the Max Planck Society,Department of Molecular and Cellular Biology
[2] Harvard University,Centro Andaluz de Biología del Desarrollo
[3] Universidad Pablo de Olavide,undefined
来源
Nature Cell Biology | 2018年 / 20卷
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摘要
Individuals can vary substantially in size, but the proportions of their body plans are often maintained. We generated smaller zebrafish by removing 30% of their cells at the blastula stages and found that these embryos developed into normally patterned individuals. Strikingly, the proportions of all germ layers adjusted to the new embryo size within 2 hours after cell removal. As Nodal–Lefty signalling controls germ-layer patterning, we performed a computational screen for scale-invariant models of this activator–inhibitor system. This analysis predicted that the concentration of the highly diffusive inhibitor Lefty increases in smaller embryos, leading to a decreased Nodal activity range and contracted germ-layer dimensions. In vivo studies confirmed that Lefty concentration increased in smaller embryos, and embryos with reduced Lefty levels or with diffusion-hindered Lefty failed to scale their tissue proportions. These results reveal that size-dependent inhibition of Nodal signalling allows scale-invariant patterning.
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页码:1032 / 1042
页数:10
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