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SOS 反应对单细胞群体平均适合度的影响:准种方法。

Effect of the SOS response on the mean fitness of unicellular populations: a quasispecies approach.

机构信息

Department of Chemistry, Ben-Gurion University of the Negev, Be'er-Sheva, Israel.

出版信息

PLoS One. 2010 Nov 30;5(11):e14113. doi: 10.1371/journal.pone.0014113.

Abstract

The goal of this paper is to develop a mathematical model that analyzes the selective advantage of the SOS response in unicellular organisms. To this end, this paper develops a quasispecies model that incorporates the SOS response. We consider a unicellular, asexually replicating population of organisms, whose genomes consist of a single, double-stranded DNA molecule, i.e. one chromosome. We assume that repair of post-replication mismatched base-pairs occurs with probability , and that the SOS response is triggered when the total number of mismatched base-pairs is at least . We further assume that the per-mismatch SOS elimination rate is characterized by a first-order rate constant . For a single fitness peak landscape where the master genome can sustain up to mismatches and remain viable, this model is analytically solvable in the limit of infinite sequence length. The results, which are confirmed by stochastic simulations, indicate that the SOS response does indeed confer a fitness advantage to a population, provided that it is only activated when DNA damage is so extensive that a cell will die if it does not attempt to repair its DNA.

摘要

本文旨在建立一个数学模型,分析 SOS 反应在单细胞生物中的选择优势。为此,本文建立了一个包含 SOS 反应的准种模型。我们考虑一个单细胞、无性繁殖的生物种群,其基因组由一个单链、双链 DNA 分子组成,即一条染色体。我们假设复制后错配碱基的修复概率为 ,并且当错配碱基总数至少为 时,SOS 反应就会被触发。我们进一步假设每个错配的 SOS 消除率由一阶速率常数 来描述。对于一个只有一个适合度峰的景观,主基因组可以维持多达 个错配而仍然存活,在序列长度无穷大的极限下,这个模型可以进行解析求解。通过随机模拟得到的结果证实,只要 SOS 反应仅在 DNA 损伤如此广泛以至于如果细胞不试图修复其 DNA 就会死亡时被激活,它确实会赋予种群适应性优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6727/2994707/d3239830e4d6/pone.0014113.g001.jpg

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