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首页> 外文期刊>MBio >The Integrative Conjugative Element (ICE) of Mycoplasma agalactiae: Key Elements Involved in Horizontal Dissemination and Influence of Coresident ICEs
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The Integrative Conjugative Element (ICE) of Mycoplasma agalactiae: Key Elements Involved in Horizontal Dissemination and Influence of Coresident ICEs

机译:无乳支原体的整合共轭元件(ICE):涉及水平传播和共居ICEs影响的关键因素

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ABSTRACT The discovery of integrative conjugative elements (ICEs) in wall-less mycoplasmas and the demonstration of their role in massive gene flows within and across species have shed new light on the evolution of these minimal bacteria. Of these, the ICE of the ruminant pathogen Mycoplasma agalactiae (ICEA) represents a prototype and belongs to a new clade of the Mutator-like superfamily that has no preferential insertion site and often occurs as multiple chromosomal copies. Here, functional genomics and mating experiments were combined to address ICEA functions and define the minimal ICEA chassis conferring conjugative properties to M.?agalactiae . Data further indicated a complex interaction among coresident ICEAs, since the minimal ICEA structure was influenced by the occurrence of additional ICEA copies that can trans -complement conjugation-deficient ICEAs. However, this cooperative behavior was limited to the CDS14 surface lipoprotein, which is constitutively expressed by coresident ICEAs, and did not extend to other ICEA proteins, including the cis -acting DDE recombinase and components of the mating channel whose expression was detected only sporadically. Remarkably, conjugation-deficient mutants containing a single ICEA copy knocked out in cds14 can be complemented by neighboring cells expressing CDS14. This result, together with those revealing the conservation of CDS14 functions in closely related species, may suggest a way for mycoplasma ICEs to extend their interaction outside their chromosomal environment. Overall, this report provides a first model of conjugative transfer in mycoplasmas and offers valuable insights into understanding horizontal gene transfer in this highly adaptive and diverse group of minimal bacteria. IMPORTANCE Integrative conjugative elements (ICEs) are self-transmissible mobile genetic elements that are key mediators of horizontal gene flow in bacteria. Recently, a new category of ICEs was identified that confer conjugative properties to mycoplasmas, a highly adaptive and diverse group of wall-less bacteria with reduced genomes. Unlike classical ICEs, these mobile elements have no preferential insertion specificity, and multiple mycoplasma ICE copies can be found randomly integrated into the host chromosome. Here, the prototype ICE of Mycoplasma agalactiae was used to define the minimal conjugative machinery and to propose the first model of ICE transfer in mycoplasmas. This model unveils the complex interactions taking place among coresident ICEs and suggests a way for these elements to extend their influence outside their chromosomal environment. These data pave the way for future studies aiming at deciphering chromosomal transfer, an unconventional mechanism of DNA swapping that has been recently associated with mycoplasma ICEs.
机译:摘要在无壁型支原体中发现整合共轭元件(ICE),并证明了它们在物种内部和物种间大量基因流动中的作用,为这些最小细菌的进化提供了新的思路。其中,反刍动物病原体无乳支原体(ICEA)的ICE代表原型,属于Mutator样超家族的新进化枝,该家族没有优先插入位点,通常以多个染色体拷贝的形式出现。在这里,功能基因组学和交配实验相结合,以解决ICEA的功能,并定义了最小的ICEA底盘,赋予agalactiae共轭特性。数据进一步表明,共存ICEA之间存在复杂的相互作用,因为最小的ICEA结构受到可反补缀合缺陷ICEA的其他ICEA拷贝的影响。但是,这种合作行为仅限于CDS14表面脂蛋白,其由共同驻留的ICEA组成性表达,并且没有扩展至其他ICEA蛋白,包括顺式作用的DDE重组酶和仅偶尔检测到表达的交配通道成分。值得注意的是,在cds14中敲除的包含单个ICEA拷贝的结合缺陷型突变体可以与表达CDS14的相邻细胞互补。该结果以及揭示紧密相关物种中CDS14功能保守性的结果,可能为支原体ICEs扩展其相互作用超出其染色体环境提供了一种途径。总体而言,本报告提供了支原体共轭转移的第一个模型,并为了解这种高度适应性多样的最小细菌群体中水平基因转移提供了宝贵的见识。重要信息整合共轭元件(ICE)是可自我传播的移动遗传元件,是细菌水平基因流动的关键介体。最近,鉴定出一种新的ICEs,它们赋予支原体一种共轭特性,支原体是一种高度适应性多样的无壁细菌,具有减少的基因组。与经典ICE不同,这些移动元件没有优先的插入特异性,并且可以发现多个支原体ICE拷贝随机整合到宿主染色体中。在这里,无乳支原体的ICE原型被用来定义最小的结合机制,并提出了支原体中ICE转移的第一个模型。该模型揭示了共存ICE之间发生的复杂相互作用,并为这些元素提供了一种将其影响扩展到其染色体环境之外的方法。这些数据为将来旨在解密染色体转移的研究铺平了道路,染色体转移是一种与支原体ICEs最近相关的非常规DNA交换机制。

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