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The Human Skin Double-Stranded DNA Virome: Topographical and Temporal Diversity, Genetic Enrichment, and Dynamic Associations with the Host Microbiome

机译:人类皮肤双链DNA病毒:地形和时间多样性,遗传丰富和与宿主微生物组的动态关联。

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ABSTRACT Viruses make up a major component of the human microbiota but are poorly understood in the skin, our primary barrier to the external environment. Viral communities have the potential to modulate states of cutaneous health and disease. Bacteriophages are known to influence the structure and function of microbial communities through predation and genetic exchange. Human viruses are associated with skin cancers and a multitude of cutaneous manifestations. Despite these important roles, little is known regarding the human skin virome and its interactions with the host microbiome. Here we evaluated the human cutaneous double-stranded DNA virome by metagenomic sequencing of DNA from purified virus-like particles (VLPs). In parallel, we employed metagenomic sequencing of the total skin microbiome to assess covariation and infer interactions with the virome. Samples were collected from 16 subjects at eight body sites over 1?month. In addition to the microenviroment, which is known to partition the bacterial and fungal microbiota, natural skin occlusion was strongly associated with skin virome community composition. Viral contigs were enriched for genes indicative of a temperate phage replication style and also maintained genes encoding potential antibiotic resistance and virulence factors. CRISPR spacers identified in the bacterial DNA sequences provided a record of phage predation and suggest a mechanism to explain spatial partitioning of skin phage communities. Finally, we modeled the structure of bacterial and phage communities together to reveal a complex microbial environment with a Corynebacterium hub. These results reveal the previously underappreciated diversity, encoded functions, and viral-microbial dynamic unique to the human skin virome. IMPORTANCE To date, most cutaneous microbiome studies have focused on bacterial and fungal communities. Skin viral communities and their relationships with their hosts remain poorly understood despite their potential to modulate states of cutaneous health and disease. Previous studies employing whole-metagenome sequencing without purification for virus-like particles (VLPs) have provided some insight into the viral component of the skin microbiome but have not completely characterized these communities or analyzed interactions with the host microbiome. Here we present an optimized virus purification technique and corresponding analysis tools for gaining novel insights into the skin virome, including viral “dark matter,” and its potential interactions with the host microbiome. The work presented here establishes a baseline of the healthy human skin virome and is a necessary foundation for future studies examining viral perturbations in skin health and disease.
机译:摘要病毒是人类微生物群的主要组成部分,但在皮肤上却知之甚少,而皮肤是我们对外部环境的主要屏障。病毒群落具有调节皮肤健康和疾病状态的潜力。已知噬菌体通过捕食和遗传交换影响微生物群落的结构和功能。人类病毒与皮肤癌和多种皮肤表现有关。尽管有这些重要的作用,关于人类皮肤病毒及其与宿主微生物组的相互作用知之甚少。在这里,我们通过从纯化的病毒样颗粒(VLP)提取DNA的宏基因组测序,评估了人的皮肤双链DNA病毒。同时,我们采用了总皮肤微生物组的宏基因组测序来评估协变并推断与病毒的相互作用。在1个月内从八个身体部位的1​​6位受试者收集了样本。除了已知可以分隔细菌和真菌微生物群的微环境外,自然的皮肤阻塞与皮肤病毒群落组成也有很强的联系。病毒重叠群富集了指示温和噬菌体复制方式的基因,还保留了编码潜在抗生素抗性和毒力因子的基因。细菌DNA序列中鉴定的CRISPR间隔区提供了噬菌体捕食的记录,并提出了解释皮肤噬菌体群落空间分配的机制。最后,我们对细菌和噬菌体群落的结构进行了建模,以揭示带有棒状杆菌集线器的复杂微生物环境。这些结果揭示了人类皮肤病毒特有的先前未被充分认识的多样性,编码功能和病毒-微生物动力学。重要迄今为止,大多数皮肤微生物组研究都集中在细菌和真菌群落上。尽管皮肤病毒群落及其可能调节皮肤健康和疾病的状态,但对其皮肤宿主的关系仍然知之甚少。以前使用全元基因组测序而不纯化病毒样颗粒(VLP)的研究为皮肤微生物组的病毒成分提供了一些见识,但尚未完全表征这些群落或分析了与宿主微生物组的相互作用。在这里,我们介绍一种优化的病毒纯化技术和相应的分析工具,以获取有关皮肤病毒的新见解,包括病毒“暗物质”及其与宿主微生物组的潜在相互作用。此处介绍的工作为健康的人类皮肤病毒建立了基线,并且是将来研究皮肤健康和疾病中的病毒扰动的必要基础。

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