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Experimental single-strain mobilomics reveals events that shape pathogen emergence

机译:实验性单株细胞束分析揭示了影响病原体出现的事件

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Virulence genes on mobile DNAs such as genomic islands (GIs) and plasmids promote bacterial pathogen emergence. Excision is an early step in GI mobilization, producing a circular GI and a deletion site in the chromosome; circular forms are also known for some bacterial insertion sequences (ISs). The recombinant sequence at the junctions of such circles and deletions can be detected sensitively in high-throughput sequencing data, using new computational methods that enable empirical discovery of mobile DNAs. For the rich mobilome of a hospital Klebsiella pneumo-niae strain, circularization junctions (CJs) were detected for six GIs and seven IS types. Our methods revealed differential biology of multiple mobile DNAs, imprecision of integrases and transposases, and differential activity among identical IS copies for IS26, ISKpn18 and ISKpn21. Using the resistance of circular dsDNA molecules to exonuclease, internally calibrated with the native plasmids, showed that not all molecules bearing GI CJs were circular. Transpositions were also detected, revealing replicon preference (ISKpn18 prefers a conjugative IncA/C2 plasmid), local action (IS26), regional preferences, selection (against capsule synthesis) and IS polarity inversion. Efficient discovery and global characterization of numerous mobile elements per experiment improves accounting for the new gene combinations that arise in emerging pathogens.
机译:诸如基因组岛(GIs)和质粒之类的可移动DNA上的毒力基因促进细菌病原体的出现。切除是胃肠道动员的第一步,在染色体中产生环状胃肠道和缺失位点。对于某些细菌插入序列(IS),圆形形式也是已知的。使用新的计算方法,可以对移动DNA进行经验性发现,可以在高通量测序数据中灵敏地检测到此类圆圈和缺失交界处的重组序列。对于医院肺炎克雷伯菌(Klebsiella pnemo-niae)菌株丰富的运动罩,检测到六个GI和七个IS类型的环化连接点(CJ)。我们的方法揭示了多种移动DNA的差异生物学,整合和转座酶的不精确性以及IS26,ISKpn18和ISKpn21的相同IS拷贝之间的差异活性。使用天然质粒内部校准的环状dsDNA分子对核酸外切酶的抗性,表明并非所有带有GI CJ的分子都是环状的。还检测到转座,揭示复制子偏好(ISKpn18更喜欢结合型IncA / C2质粒),局部作用(IS26),区域偏好,选择(针对胶囊合成)和IS极性反转。每个实验中对大量可移动元素的高效发现和全面表征,可以改善对新兴病原体中出现的新基因组合的解释。

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