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Mycoplasma genitalium: an efficient strategy to generate genetic variation from a minimal genome.

机译:生殖支原体:从最小基因组产生遗传变异的有效策略。

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Mycoplasma genitalium, a human pathogen associated with sexually transmitted diseases, is unique in that it has smallest genome of any known free-living organism. The goal of this study was to investigate if and how M. genitalium uses a minimal genome to generate genetic variations. We analysed the sequence variability of the third gene (MG192 or mgpC) of the M. genitalium MgPa adhesion operon, demonstrated that the MG192 gene is highly variable among and within M. genitalium strains in vitro and in vivo, and identified MG192 sequence shifts in the course of in vitro passage of the G37 type strain and in sequential specimens from an M. genitalium-infected patient. In order to establish the origin of the MG192 variants, we examined nine genomic loci containing partial copies of the MgPa operon, known as MgPar sequences. Our analysis suggests that the MG192 sequence variation is achieved by recombination between the MG192 expression site and MgPar sequences via gene cross-over and, possibly, also by geneconversion. It appears plausible that M. genitalium has the ability to generate unlimited variants from its minimized genome, which presumably allows the organism to adapt to diverse environments and/or to evade host defences by antigenic variation.
机译:生殖道支原体是一种与性传播疾病有关的人类病原体,其独特之处在于它具有任何已知的自由生物的最小基因组。这项研究的目的是调查生殖器支原体是否以及如何使用最小的基因组来产生遗传变异。我们分析了生殖器支原体MgPa粘附操纵子的第三个基因(MG192或mgpC)的序列变异性,证明MG192基因在生殖器支原体菌株之间和体内和体内具有高度可变性,并确定了MG192序列在G37型菌株的体外传代过程以及生殖器支原体感染患者的连续样本中的过程。为了确定MG192变体的起源,我们检查了9个基因组基因座,其中含有MgPa操纵子的部分拷贝,称为MgPar序列。我们的分析表明,MG192序列的变异是通过MG192表达位点与MgPar序列之间的重组,通过基因交换以及基因转换实现的。生殖器支原体似乎有能力从其最小化的基因组中产生无限的变异,这大概使生物体能够适应多种环境和/或通过抗原变异逃避宿主的防御。

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