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Natural selection infectious transfer and the existence conditions for bacterial plasmids.

机译:细菌质粒的自然选择传染性转移和存在条件。

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摘要

Despite the near-ubiquity of plasmids in bacterial populations and the profound contribution of infectious gene transfer to the adaptation and evolution of bacteria, the mechanisms responsible for the maintenance of plasmids in bacterial populations are poorly understood. In this article, we address the question of how plasmids manage to persist over evolutionary time. Empirical studies suggest that plasmids are not infectiously transmitted at a rate high enough to be maintained as genetic parasites. In part i, we present a general mathematical proof that if this is the case, then plasmids will not be able to persist indefinitely solely by carrying genes that are beneficial or sometimes beneficial to their host bacteria. Instead, such genes should, in the long run, be incorporated into the bacterial chromosome. If the mobility of host-adaptive genes imposes a cost, that mobility will eventually be lost. In part ii, we illustrate a pair of mechanisms by which plasmids can be maintained indefinitely even when their rates of transmission are too low for them to be genetic parasites. First, plasmids may persist because they can transfer locally adapted genes to newly arriving strains bearing evolutionary innovations, and thereby preserve the local adaptations in the face of background selective sweeps. Second, plasmids may persist because of their ability to shuttle intermittently favored genes back and forth between various (noncompeting) bacterial strains, ecotypes, or even species.
机译:尽管质粒在细菌种群中几乎是普遍存在的,并且传染性基因转移对细菌的适应和进化有深远的贡献,但对于细菌种群中维持质粒的机制却知之甚少。在本文中,我们解决了质粒如何在进化时间内持续存在的问题。经验研究表明,质粒不能以足够高的速率被传染性传播,以至于不能作为遗传寄生虫来维持。在第i部分中,我们提供了一个一般的数学证明,如果是这种情况,那么质粒将不能仅通过携带对宿主细菌有益或有时对其有益的基因而无限期地持久。相反,从长远来看,这些基因应该整合到细菌染色体中。如果宿主适应性基因的迁移性带来成本,那么该迁移性最终将丧失。在第二部分中,我们说明了一对机制,通过这些机制可以无限期地维持质粒,即使它们的传播速率太低而无法成为遗传寄生虫。首先,质粒可能会持续存在,因为它们可以将局部适应的基因转移到具有进化创新的新到达菌株中,从而在面对背景选择性扫描时保留局部适应性。其次,质粒可能会持续存在,因为它们能够在各种(非竞争性)细菌菌株,生态型甚至物种之间来回穿梭间歇性有利的基因。

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