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In Silico Predicted Robustness of Viroid RNA Secondary Structures. II. Interaction between Mutation Pairs

机译:In Silico预测的RNA二级结构的稳健性。二。突变对之间的相互作用

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Viroids are plant subviral pathogens whose genomes are constituted by a single-stranded and covalently closed small RNA molecule that does not encode for any protein. Most of the 29 described viroid species fold into a rodlike or quasi-rodlike structure, whereas a few of them fold as highly branched structures. In a previous study, we used RNA thermodynamic secondary structure prediction algorithms to compare the mutational robustness of all viroid species. Here we used the same approach to explore the sign and strength of epistasis among pairs of random mutations. We found that antagonistic interactions were more abundant than synergistic ones. However, despite their lower frequency, synergistic interactions tended to be more intense. Mutational robustness and the intensity of epistasis were correlated such that viroid species with large average mutational effects showed stronger antagonistic epistasis, whereas viroids with mild average mutational effects showed weaker antagonistic interactions. The strength of antagonistic epistasis decreased with genome complexity as a consequence of the gained robustness of duplicated genomes. In good agreement with our previous finding of an evolutionary trend toward increased robustness, we now found a trend toward reduced antagonistic epistasis.
机译:类病毒是植物亚病毒病原体,其基因组由不编码任何蛋白质的单链共价封闭的小RNA分子组成。所描述的29种类病毒中的大多数折叠成杆状或准杆状结构,而少数折叠成高度分支的结构。在先前的研究中,我们使用RNA热力学二级结构预测算法来比较所有类病毒的突变稳健性。在这里,我们使用相同的方法来探索成对的随机突变之间的上位性的迹象和强度。我们发现拮抗作用比协同作用更丰富。然而,尽管它们的频率较低,但协同相互作用往往更强烈。突变的鲁棒性和上位的强度是相关的,具有较大平均突变作用的类病毒表现出较强的拮抗作用,而具有中等平均突变作用的类病毒表现出较弱的拮抗作用。拮抗上位性的强度随着基因组复杂性的降低而降低,这是由于获得了重复的基因组的鲁棒性。与我们先前发现的增强鲁棒性的进化趋势非常一致,我们现在发现了降低拮抗上位性的趋势。

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