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Stochasticity and bistability in horizontal transfer control of a genomic island in Pseudomonas

机译:假单胞菌基因组岛水平转移控制中的随机性和双稳态

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摘要

Genomic islands (GEI) comprise a recently recognized large family of potentially mobile DNA elements and play an important role in the rapid differentiation and adaptation of bacteria. Most importantly, GEIs have been implicated in the acquisition of virulence factors, antibiotic resistances or toxic compound metabolism. Despite detailed information on coding capacities of GEIs, little is known about the regulatory decisions in individual cells controlling GEI transfer. Here, we show how self-transfer of ICEclc, a GEI in Pseudomonas knackmussii B13 is controlled by a series of stochastic processes, the result of which is that only a few percent of cells in a population will excise ICEclc and launch transfer. Stochastic processes have been implicated before in producing bistable phenotypic transitions, such as sporulation and competence development, but never before in horizontal gene transfer (HGT). Bistability is instigated during stationary phase at the level of expression of an activator protein InrR that lays encoded on ICEclc, and then faithfully propagated to a bistable expression of the IntB13 integrase, the enzyme responsible for excision and integration of the ICEclc. Our results demonstrate how GEI of a very widespread family are likely to control their transfer rates. Furthermore, they help to explain why HGT is typically confined to few members within a population of cells. The finding that, despite apparent stochasticity, HGT rates can be modulated by external environmental conditions provides an explanation as to why selective conditions can promote DNA exchange.
机译:基因岛(GEI)包括一个最近被认可的潜在的可移动DNA元素大家族,在细菌的快速分化和适应中起着重要的作用。最重要的是,GEIs涉及毒力因子,抗生素抗性或有毒化合物代谢的获得。尽管有关于GEI编码能力的详细信息,但对于控制GEI转移的单个细胞中的调控决定知之甚少。在这里,我们展示了ICEclc(克氏假单胞菌B13中的GEI)的自我转移如何受到一系列随机过程的控制,其结果是种群中只有百分之几的细胞会切除ICEclc并启动转移。随机过程在产生双稳态表型转变(如孢子形成和能力发展)之前就已涉及,但在水平基因转移(HGT)中从未涉及过。在稳定期,在ICEclc上编码的激活蛋白InrR的表达水平上会增强双稳性,然后如实地传播到IntB13整合酶的双稳态表达,该酶负责ICEclc的切除和整合。我们的结果表明,一个非常广泛的家庭的GEI如何控制他们的转移率。此外,它们有助于解释为什么HGT通常局限于细胞群中的少数成员。尽管具有明显的随机性,但HGT的速率可以被外部环境条件调节的发现为为什么选择条件可以促进DNA交换提供了解释。

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