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合成回路揭示了基因调控网络的机制如何限制进化。

Synthetic circuits reveal how mechanisms of gene regulatory networks constrain evolution.

机构信息

Department of Fundamental Microbiology, University of Lausanne, Lausanne, Switzerland

Department of Evolutionary Biology and Environmental Studies, University of Zurich, Zürich, Switzerland.

出版信息

Mol Syst Biol. 2018 Sep 10;14(9):e8102. doi: 10.15252/msb.20178102.

Abstract

Phenotypic variation is the raw material of adaptive Darwinian evolution. The phenotypic variation found in organismal development is biased towards certain phenotypes, but the molecular mechanisms behind such biases are still poorly understood. Gene regulatory networks have been proposed as one cause of constrained phenotypic variation. However, most pertinent evidence is theoretical rather than experimental. Here, we study evolutionary biases in two synthetic gene regulatory circuits expressed in that produce a gene expression stripe-a pivotal pattern in embryonic development. The two parental circuits produce the same phenotype, but create it through different regulatory mechanisms. We show that mutations cause distinct novel phenotypes in the two networks and use a combination of experimental measurements, mathematical modelling and DNA sequencing to understand why mutations bring forth only some but not other novel gene expression phenotypes. Our results reveal that the regulatory mechanisms of networks restrict the possible phenotypic variation upon mutation. Consequently, seemingly equivalent networks can indeed be distinct in how they constrain the outcome of further evolution.

摘要

表型变异是适应达尔文进化的原材料。在生物发育过程中发现的表型变异偏向于某些表型,但这种偏差的分子机制仍知之甚少。基因调控网络被认为是限制表型变异的一个原因。然而,大多数相关证据都是理论上的,而不是实验性的。在这里,我们研究了在 中表达的两种合成基因调控回路中的进化偏差,这些回路产生了一个关键的基因表达条纹——胚胎发育中的一个重要模式。这两个亲本回路产生相同的表型,但通过不同的调控机制来实现。我们表明,突变会导致两个网络中出现不同的新表型,并结合实验测量、数学建模和 DNA 测序来理解为什么突变只能带来部分而不是其他新的基因表达表型。我们的结果表明,网络的调控机制限制了突变后可能出现的表型变异。因此,看似等效的网络在进一步进化的结果上确实可能存在差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fa9/6129954/3932c3f56865/MSB-14-e8102-g002.jpg

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