Laboratory of Bacterial Pathogenesis and Immunology, The Rockefeller University, New York, New York, United States of America.
Henry M. Jackson Foundation, Bethesda, Maryland, United States of America; Naval Medical Research Center-Frederick, Fort Detrick, Maryland, United States of America.
PLoS One. 2014 Jun 25;9(6):e100502. doi: 10.1371/journal.pone.0100502. eCollection 2014.
In Staphylococcus aureus, the disease impact of chromosomally integrated prophages on virulence is well described. However, the existence of extra-chromosomal prophages, both plasmidial and episomal, remains obscure. Despite the recent explosion in bacterial and bacteriophage genomic sequencing, studies have failed to specifically focus on extra-chromosomal elements. We selectively enriched and sequenced extra-chromosomal DNA from S. aureus isolates using Roche-454 technology and uncovered evidence for the widespread distribution of multiple extra-chromosomal prophages (ExPΦs) throughout both antibiotic-sensitive and -resistant strains. We completely sequenced one such element comprised of a 43.8 kbp, circular ExPΦ (designated ФBU01) from a vancomycin-intermediate S. aureus (VISA) strain. Assembly and annotation of ФBU01 revealed a number of putative virulence determinants encoded within a bacteriophage immune evasion cluster (IEC). Our identification of several potential ExPΦs and mobile genetic elements (MGEs) also revealed numerous putative virulence factors and antibiotic resistance genes. We describe here a previously unidentified level of genetic diversity of stealth extra-chromosomal elements in S. aureus, including phages with a larger presence outside the chromosome that likely play a prominent role in pathogenesis and strain diversity driven by horizontal gene transfer (HGT).
在金黄色葡萄球菌中,染色体整合的前噬菌体对毒力的疾病影响已有很好的描述。然而,染色体外的前噬菌体,包括质粒和附加体,仍然不清楚。尽管最近细菌和噬菌体基因组测序的爆发式增长,但研究未能专门关注染色体外元件。我们使用罗氏 454 技术选择性地从金黄色葡萄球菌分离物中富集和测序染色体外 DNA,并发现了广泛分布的多种染色体外噬菌体(ExPΦs)的证据,这些噬菌体存在于抗生素敏感和耐药菌株中。我们从一株万古霉素中介金黄色葡萄球菌(VISA)中完全测序了一个这样的元件,该元件由一个 43.8 kbp 的环状 ExPΦ(命名为 ФBU01)组成。ФBU01 的组装和注释揭示了一个噬菌体免疫逃避簇(IEC)中编码的许多潜在的毒力决定因素。我们鉴定的几个潜在的 ExPΦs 和移动遗传元件(MGEs)也揭示了许多潜在的毒力因子和抗生素耐药基因。我们在这里描述了金黄色葡萄球菌中以前未被识别的隐匿性染色体外元件的遗传多样性水平,包括在染色体外存在更多的噬菌体,这些噬菌体可能通过水平基因转移(HGT)在发病机制和菌株多样性中发挥重要作用。