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Tradeoff between horizontal and vertical modes of transmission in bacterial plasmids

机译:细菌质粒水平和垂直传播方式之间的权衡

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It has been hypothesized that there is a fundamental conflict between horizontal (infectious) and vertical (intergenerational) modes of parasite transmission. Activities of a parasite that increase its rate of infectious transmission are presumed to reduce its host's fitness. This reduction in host fitness impedes vertical transmission of the parasite and causes a tradeoff between horizontal and vertical transmission. Given this tradeoff, and assuming no multiple infections (no within-host competition among parasites), a simple model predicts that the density of uninfected hosts in the environment should determine the optimum balance between modes of parasite transmission. When susceptible hosts are abundant, selection should favor increased rates of horizontal transfer, even at the expense of reduced vertical transmission. Conversely, when hosts are rare, selection should favor increased vertical transmission even at the expense of lower horizontal transfer. We tested the tradeoff hypothesis and these evolutionary predictions using conjugative plasmids and the bacteria that they infect. Plasmids were allowed to evolve for 500 generations in environments with different densities of susceptible hosts. The plasmid's rate of horizontal transfer by conjugation increased at the expense of host fitness, indicating a tradeoff between horizontal and vertical transmission. Also, reductions in conjugation rate repeatedly coincided with the loss of a particular plasmid-encoded antibiotic resistance gene. However, susceptible host density had no significant effect on the evolution of horizontal versus vertical modes of plasmid transmission. We consider several possible explanations for the failure to observe such an effect. [References: 48]
机译:假设寄生虫传播的水平(传染性)和垂直(世代)模式之间存在根本冲突。假定寄生虫的活动会增加其传染传播率,从而降低其宿主的适应能力。宿主适应性的降低阻止了寄生虫的垂直传播,并导致了水平传播和垂直传播之间的权衡。考虑到这种权衡,并假设没有多重感染(寄生虫之间没有宿主内部竞争),一个简单的模型预测环境中未感染宿主的密度应该决定寄生虫传播方式之间的最佳平衡。当易感宿主丰富时,选择时应选择提高水平传输速率,即使以降低垂直传输为代价。相反,当主机很少时,即使以较低的水平传输为代价,选择也应支持增加垂直传输。我们使用结合质粒及其感染的细菌测试了权衡假设和这些进化预测。使质粒在具有不同密度的易感宿主的环境中进化500代。通过缀合,质粒的水平转移速率增加,但以宿主适应性为代价,这表明在水平和垂直传播之间进行权衡。同样,结合率的降低反复地与特定质粒编码的抗生素抗性基因的丧失相吻合。但是,敏感的宿主密度对质粒传输的水平模式和垂直模式的进化没有显着影响。对于未能观察到这种效果,我们考虑了几种可能的解释。 [参考:48]

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