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Transformation of Natural Genetic Variation into Haemophilus Influenzae Genomes

机译:自然遗传变异转化为流感嗜血杆菌基因组。

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摘要

Many bacteria are able to efficiently bind and take up double-stranded DNA fragments, and the resulting natural transformation shapes bacterial genomes, transmits antibiotic resistance, and allows escape from immune surveillance. The genomes of many competent pathogens show evidence of extensive historical recombination between lineages, but the actual recombination events have not been well characterized. We used DNA from a clinical isolate of Haemophilus influenzae to transform competent cells of a laboratory strain. To identify which of the ∼40,000 polymorphic differences had recombined into the genomes of four transformed clones, their genomes and their donor and recipient parents were deep sequenced to high coverage. Each clone was found to contain ∼1000 donor polymorphisms in 3–6 contiguous runs (8.1±4.5 kb in length) that collectively comprised ∼1–3% of each transformed chromosome. Seven donor-specific insertions and deletions were also acquired as parts of larger donor segments, but the presence of other structural variation flanking 12 of 32 recombination breakpoints suggested that these often disrupt the progress of recombination events. This is the first genome-wide analysis of chromosomes directly transformed with DNA from a divergent genotype, connecting experimental studies of transformation with the high levels of natural genetic variation found in isolates of the same species.
机译:许多细菌能够有效结合并吸收双链DNA片段,而最终的自然转化可塑造细菌基因组,传递抗生素抗性,并使其免于免疫监视。许多能胜任的病原体的基因组显示出谱系之间广泛的历史重组的证据,但实际重组事件尚未得到很好的表征。我们使用了来自流感嗜血杆菌临床分离株的DNA来转化实验室菌株的感受态细胞。为了确定约40,000个多态性差异中的哪一个已重组到四个转化克隆的基因组中,对它们的基因组及其供体和受体亲本进行了深度测序,以确保覆盖率高。发现每个克隆在3至6个连续运行(长度为8.1±4.5 kb)中包含约1000个供体多态性,这些基因多态性占每个转化染色体的约1-3%。作为较大的供体区段的一部分,还获得了七个供体特异性插入和缺失,但是在32个重组断点中的12个侧翼的其他结构变异的存在表明,这些通常会干扰重组事件的进程。这是首次对直接用来自不同基因型的DNA转化的染色体进行全基因组分析,将转化的实验研究与在同一物种的分离物中发现的高水平天然遗传变异联系在一起。

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