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Genetic Interaction Network as an Important Determinant of Gene Order in Genome Evolution

机译:遗传相互作用网络是基因组进化中基因顺序的重要决定因素

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摘要

Although it is generally accepted that eukaryotic gene order is not random, the basic principles of gene arrangement on a chromosome remain poorly understood. Here, we extended existing population genetics theories that were based on two-locus models and proposed a hypothesis that genetic interaction networks drive the evolution of eukaryotic gene order. We predicted that genes with positive epistasis would move toward each other in evolution, during which a negative correlation between epistasis and gene distance formed. We tested and confirmed our prediction with computational simulations and empirical data analyses. Importantly, we demonstrated that gene order in the budding yeast could be successfully predicted from the genetic interaction network. Taken together, our study reveals the role of the genetic interaction network in the evolution of gene order, extends our understanding of the encoding principles in genomes, and potentially offers new strategies to improve synthetic biology.
机译:尽管人们普遍认为真核生物的基因顺序不是随机的,但染色体上基因排列的基本原理仍然知之甚少。在这里,我们扩展了现有的基于双位点模型的群体遗传学理论,并提出了一个假设,即遗传相互作用网络驱动真核基因顺序的进化。我们预测,具有阳性上位的基因在进化中会相互移动,在此期间,上位与基因距离之间形成负相关。我们通过计算模拟和实证数据分析来测试并证实了我们的预测。重要的是,我们证明了出芽酵母中的基因顺序可以从遗传相互作用网络中成功预测。综上所述,我们的研究揭示了遗传相互作用网络在基因顺序进化中的作用,扩展了我们对基因组编码原理的理解,并可能为改进合成生物学提供新的策略。

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