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首页> 外文期刊>PLoS Computational Biology >The Evolution of Collective Restraint: Policing and Obedience among Non-conjugative Plasmids
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The Evolution of Collective Restraint: Policing and Obedience among Non-conjugative Plasmids

机译:集体约束的演变:非共轭质粒之间的警戒和服从

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摘要

The repression of competition by mechanisms of policing is now recognized as a major force in the maintenance of cooperation. General models on the evolution of policing have focused on the interplay between individual competitiveness and mutual policing, demonstrating a positive relationship between within-group diversity and levels of policing. We expand this perspective by investigating what is possibly the simplest example of reproductive policing: copy number control (CNC) among non-conjugative plasmids, a class of extra-chromosomal vertically transmitted molecular symbionts of bacteria. Through the formulation and analysis of a multi-scale dynamical model, we show that the establishment of stable reproductive restraint among plasmids requires the co-evolution of two fundamental plasmid traits: policing, through the production of plasmid-coded trans-acting replication inhibitors, and obedience, expressed as the binding affinity of plasmid-specific targets to those inhibitors. We explain the intrinsic replication instabilities that arise in the absence of policing and we show how these instabilities are resolved by the evolution of copy number control. Increasing levels of policing and obedience lead to improvements in group performance due to tighter control of local population size (plasmid copy number), delivering benefits both to plasmids, by reducing the risk of segregational loss and to the plasmid-host partnership, by increasing the rate of cell reproduction, and therefore plasmid vertical transmission.
机译:通过警务机制压制竞争现已被视为维持合作的主要力量。关于警务演变的一般模型集中于个人竞争力与相互警务之间的相互作用,这表明了群体内部多样性与警务水平之间的积极关系。我们通过研究可能最简单的生殖警务实例来扩展这种观点:非结合质粒中的拷贝数控制(CNC),这是一类垂直于细菌的染色体外垂直传递分子。通过多尺度动力学模型的建立和分析,我们表明在质粒之间建立稳定的生殖抑制作用需要两个基本质粒特性的共同进化:调控,通过产生质粒编码的反式复制抑制剂,和服从性,表示为质粒特异性靶标与那些抑制剂的结合亲和力。我们解释了在没有管制的情况下出现的固有复制不稳定性,并说明了如何通过复制数量控制的演变解决这些不稳定性。由于对局部种群大小(质粒拷贝数)的更严格控制,维持治安和服从水平的提高导致了群体表现的改善,通过降低分离损失的风险以及通过增加宿主与宿主的伙伴关系,为质粒带来了好处。细胞繁殖的速率,因此质粒垂直传播。

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