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Role of transcriptional regulation in the evolution of plant phenotype: A dynamic systems approach

机译:转录调控在植物表型进化中的作用:动态系统方法

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摘要

© 2015 Wiley Periodicals, Inc. A growing body of evidence suggests that alterations in transcriptional regulation of genes involved in modulating development are an important part of phenotypic evolution, and this can be documented among species and within populations. While the effects of differential transcriptional regulation in organismal development have been preferentially studied in animal systems, this phenomenon has also been addressed in plants. In this review, we summarize evidence for cis-regulatory mutations, trans-regulatory changes and epigenetic modifications as molecular events underlying important phenotypic alterations, and thus shaping the evolution of plant development. We postulate that a mechanistic understanding of why such molecular alterations have a key role in development, morphology and evolution will have to rely on dynamic models of complex regulatory networks that consider the concerted action of genetic and nongenetic components, and that also incorporate the restrictions underlying the genotype to phenotype mapping process.
机译:©2015 Wiley Periodicals,Inc.越来越多的证据表明,参与调节发育的基因的转录调控改变是表型进化的重要组成部分,可以在物种之间和种群中得到证明。虽然已经在动物系统中优先研究了差异转录调控对生物体发育的影响,但这种现象也已在植物中得到解决。在这篇综述中,我们总结了顺式调控突变,反式调控变化和表观遗传修饰的证据,这些分子作为重要表型改变的分子事件,从而塑造了植物发育的进化过程。我们假设对此类分子改变为何在发育,形态和进化中起关键作用的机理的理解将必须依赖复杂的调控网络的动态模型,该模型考虑遗传和非遗传成分的协同作用,并且还包含潜在的限制基因型到表型的映射过程。

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