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Deep genome annotation of the opportunistic human pathogen Streptococcus pneumoniae D39

机译:机会人体病原体链球菌肺炎链球菌D39的深度基因组注释

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摘要

A precise understanding of the genomic organization into transcriptional units and their regulation is essential for our comprehension of opportunistic human pathogens and how they cause disease. Using single-molecule real-time (PacBio) sequencing we unambiguously determined the genome sequence of Streptococcus pneumoniae strain D39 and revealed several inversions previously undetected by short-read sequencing. Significantly, a chromosomal inversion results in antigenic variation of PhtD, an important surface-exposed virulence factor. We generated a new genome annotation using automated tools, followed by manual curation, reflecting the current knowledge in the field. By combining sequence driven terminator prediction, deep paired-end transcriptome sequencing and enrichment of primary transcripts by Cappable-Seq, we mapped 1015 transcriptional start sites and 748 termination sites. We show that the pneumococcal transcriptional landscape is complex and includes many secondary, antisense and internal promoters. Using this new genomic map, we identified several new small RNAs (sRNAs), RNA switches (including sixteen previously misidentified as sRNAs), and antisense RNAs. In total, we annotated 89 new protein-encoding genes, 34 sRNAs and 165 pseudogenes, bringing the S. pneumoniae D39 repertoire to 2146 genetic elements. We report operon structures and observed that 9% of operons are leaderless. The genome data are accessible in an online resource called PneumoBrowse (https://veeninglab.com/pneumobrowse) providing one of the most complete inventories of a bacterial genome to date. PneumoBrowse will accelerate pneumococcal research and the development of new prevention and treatment strategies.
机译:基因组组织成转录单位及其调控的一个准确的理解是我们的机会人类病原体的理解至关重要,它们是如何引起疾病。使用单分子实时(PacBio)测序我们明确地确定肺炎链球菌菌株D39的基因组序列,并揭示了以前由短读测序未被发现几个反转。显著,染色体反演结果中的PhtD,一个重要的表面暴露的毒力因子的抗原变异。我们产生了使用自动化工具的一个新的基因组注释,其次是人工管理,反映了该领域的现有知识。由Cappable-Seq的结合序列驱动终止预测,深配对末端转录组测序和初级转录富集,我们映射1015转录起始位点和748个终止位点。我们表明,肺炎球菌转录景观是复杂的,包括许多次要的,反义和内部推动者。使用这种新的基因组图谱,我们确定了几个新的小RNA(的sRNA)RNA开关(含有16个以前误认为的sRNA)和反义RNA。总之,我们注释89新的蛋白质编码基因,34门的sRNA和165个假基因,使肺炎链球菌D39剧目2146个遗传元件。我们报告操纵子结构,并指出,操纵子的9%,是群龙无首。基因组数据是(https://veeninglab.com/pneumobrowse)称为PneumoBrowse的在线资源提供了一个细菌基因组迄今为止最完整的清单中的一个访问。 PneumoBrowse将加快肺炎球菌研发新的预防和治疗策略的发展。

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  • 来源
    《Nucleic Acids Research》 |2018年第19期|共19页
  • 作者单位

    Univ Groningen Ctr Synthet Biol Groningen Biomol Sci &

    Biotechnol Inst Mol Genet Grp Nijenborgh 7 NL-9747 AG Groningen Netherlands;

    Univ Groningen Ctr Synthet Biol Groningen Biomol Sci &

    Biotechnol Inst Mol Genet Grp Nijenborgh 7 NL-9747 AG Groningen Netherlands;

    Univ Groningen Ctr Synthet Biol Groningen Biomol Sci &

    Biotechnol Inst Mol Genet Grp Nijenborgh 7 NL-9747 AG Groningen Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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