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模拟RNA进化的决定因素。

Determinants of simulated RNA evolution.

作者信息

Kupczok Anne, Dittrich Peter

机构信息

Bio Systems Analysis Group, Jena Centre for Bioinformatics and Department of Mathematics and Computer Science, Friedrich Schiller University Jena, D-07743 Jena, Germany.

出版信息

J Theor Biol. 2006 Feb 7;238(3):726-35. doi: 10.1016/j.jtbi.2005.06.019. Epub 2005 Aug 11.

Abstract

Models of RNA secondary structure folding are widely used to study evolution in theory and simulation. However, systematic studies of the parameters involved are rare. In this paper, we study by simulation how RNA evolution is influenced by three different factors, namely the mutation rate, scaling of the fitness function, and distance measure. We found that for low mutation rates the qualitative evolutionary behavior is robust with respect to the scaling of the fitness function. For efficient mutation rates, which are close to the error threshold, scaling and distance measure have a strong influence on the evolutionary behavior. A global distance measure that takes sequence information additively into account lowers the error threshold. When using a local sequence-structure alignment for the distance, we observed a smoother evolution of the fitness over time. Finally, in addition to the well known error threshold, we identify another threshold of the mutation rate, called divergence threshold, where the qualitative transient behavior changes from a localized to an exploratory search.

摘要

RNA二级结构折叠模型被广泛用于理论和模拟研究进化。然而,对所涉及参数的系统研究却很少。在本文中,我们通过模拟研究了RNA进化如何受到三个不同因素的影响,即突变率、适应度函数的缩放以及距离度量。我们发现,对于低突变率,定性进化行为在适应度函数缩放方面具有鲁棒性。对于接近错误阈值的有效突变率,缩放和距离度量对进化行为有很大影响。一种将序列信息相加考虑在内的全局距离度量降低了错误阈值。当使用局部序列 - 结构比对来计算距离时,我们观察到适应度随时间的进化更加平滑。最后,除了众所周知的错误阈值外,我们还确定了另一个突变率阈值,称为分歧阈值,在该阈值处定性瞬态行为从局部搜索转变为探索性搜索。

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