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A globally distributed mobile genetic element inhibits natural transformation of Vibrio cholerae

机译:全球分布的移动遗传元件抑制霍乱弧菌的自然转化

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摘要

Natural transformation is one mechanism of horizontal gene transfer (HGT) in Vibrio cholerae, the causative agent of cholera. Recently, it was found that V. cholerae isolates from the Haiti outbreak were poorly transformed by this mechanism. Here, we show that an integrating conjugative element (ICE)-encoded DNase, which we name IdeA, is necessary and sufficient for inhibiting natural transformation of Haiti outbreak strains. We demonstrate that IdeA inhibits this mechanism of HGT in cis via DNA endonuclease activity that is localized to the periplasm. Furthermore, we show that natural transformation between cholera strains in a relevant environmental context is inhibited by IdeA. The ICE encoding IdeA is globally distributed. Therefore, we analyzed the prevalence and role for this ICE in limiting natural transformation of isolates from Bangladesh collected between 2001 and 2011. We found that IdeA+ ICEs were nearly ubiquitous in isolates from 2001 to 2005; however, their prevalence decreased to ∼40% from 2006 to 2011. Thus, IdeA+ ICEs may have limited the role of natural transformation in V. cholerae. However, the rise in prevalence of strains lacking IdeA may now increase the role of this conserved mechanism of HGT in the evolution of this pathogen.
机译:自然转化是霍乱弧菌(霍乱的病原体)水平基因转移(HGT)的一种机制。最近,发现从海地爆发的霍乱弧菌分离株很难通过这种机制转化。在这里,我们表明,整合共轭元件(ICE)编码的DNase,我们称为IdeA,对于抑制海地暴发菌株的自然转化是必要且充分的。我们证明Idea通过DNA内切核酸酶活性抑制HGT在顺式中的这种机制,定位于周质。此外,我们表明IdeA可以抑制相关环境中霍乱菌株之间的自然转化。 ICE编码IdeA是全局分布的。因此,我们分析了这种ICE在限制2001年至2011年孟加拉国分离株自然转化中的流行性和作用。我们发现,从2001年至2005年,IdeA + ICEs在分离株中几乎无处不在。然而,从2006年到2011年,它们的患病率下降到约40%。因此,IdeA + ICEs可能限制了霍乱弧菌中自然转化的作用。但是,缺乏IdeA的菌株的流行率上升现在可能增加了HGT保守机制在该病原体进化中的作用。

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