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Transcriptional landscape and essential genes of Neisseria gonorrhoeae

机译:淋病奈瑟菌的转录景观和必需基因

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The WHO has recently classified Neisseria gonorrhoeae as a super-bacterium due to the rapid spread of antibiotic resistant derivatives and an overall dramatic increase in infection incidences. Genome sequencing has identified potential genes, however, little is known about the transcriptional organization and the presence of non-coding RNAs in gonococci. We performed RNA sequencing to define the transcriptome and the transcriptional start sites of all gonococcal genes and operons. Numerous new transcripts including 253 potentially non-coding RNAs transcribed from intergenic regions or antisense to coding genes were identified. Strikingly, strong antisense transcription was detected for the phasevariable opa genes coding for a family of adhesins and invasins in pathogenic Neisseria, that may have regulatory functions. Based on the defined transcriptional start sites, promoter motifs were identified. We further generated and sequenced a high density Tn5 transposon library to predict a core of 827 gonococcal essential genes, 133 of which have no known function. Our combined RNA-Seq and Tn-Seq approach establishes a detailed map of gonococcal genes and defines the first core set of essential gonococcal genes
机译:由于抗生素抗性衍生物的迅速传播以及感染发生率的总体急剧上升,世界卫生组织最近将淋病奈瑟氏球菌归类为超级细菌。基因组测序已鉴定出潜在的基因,但是,对于淋球菌的转录组织和非编码RNA的存在知之甚少。我们进行了RNA测序,以定义所有淋球菌基因和操纵子的转录组和转录起始位点。鉴定了许多新的转录本,包括从基因间区域转录或对编码基因反义的253个潜在的非编码RNA。令人惊讶的是,在致病性奈瑟氏球菌中编码一个粘附素和入侵素家族的相变opa基因中检测到了强反义转录,这可能具有调节功能。基于定义的转录起始位点,鉴定了启动子基序。我们进一步生成并测序了高密度Tn5转座子文库,以预测827个淋球菌必需基因的核心,其中133个未知功能。我们结合的RNA-Seq和Tn-Seq方法建立了淋球菌基因的详细图谱,并定义了第一个核心淋球菌基因

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