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Pan-Genome and Comparative Genome Analyses of Propionibacterium acnes Reveal Its Genomic Diversity in the Healthy and Diseased Human Skin Microbiome

机译:痤疮丙酸杆菌的全基因组和比较基因组分析揭示了健康和患病人类皮肤微生物组中的基因组多样性。

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Propionibacterium acnes constitutes a major part of the skin microbiome and contributes to human health. However, it has also been implicated as a pathogenic factor in several diseases, including acne, one of the most common skin diseases. Its pathogenic role, however, remains elusive. To better understand the genetic landscape and diversity of the organism and its role in human health and disease, we performed a comparative genome analysis of 82 P.?acnes strains, 69 of which were sequenced by our group. This collection covers all known P.?acnes lineages, including types IA, IB, II, and III. Our analysis demonstrated that although the P.?acnes pan-genome is open, it is relatively small and expands slowly. The core regions, shared by all the sequenced genomes, accounted for 88% of the average genome. Comparative genome analysis showed that within each lineage, the strains isolated from the same individuals were more closely related than the ones isolated from different individuals, suggesting that clonal expansions occurred within each individual microbiome. We also identified the genetic elements specific to each lineage. Differences in harboring these elements may explain the phenotypic and functional differences of P.?acnes in functioning as a commensal in healthy skin and as a pathogen in diseases. Our findings of the differences among P.?acnes strains at the genome level underscore the importance of identifying the human microbiome variations at the strain level in understanding its association with diseases and provide insight into novel and personalized therapeutic approaches for P.?acnes-related diseases. >IMPORTANCE Propionibacterium acnes is a major human skin bacterium. It plays an important role in maintaining skin health. However, it has also been hypothesized to be a pathogenic factor in several diseases, including acne, a common skin disease affecting 85% of teenagers. To understand whether different strains have different virulent properties and thus play different roles in health and diseases, we compared the genomes of 82 P.?acnes strains, most of which were isolated from acne or healthy skin. We identified lineage-specific genetic elements that may explain the phenotypic and functional differences of P.?acnes as a commensal in health and as a pathogen in diseases. By analyzing a large number of sequenced strains, we provided an improved understanding of the genetic landscape and diversity of the organism at the strain level and at the molecular level that can be further applied in the development of new and personalized therapies.
机译:痤疮丙酸杆菌构成皮肤微生物组的主要部分,并有助于人类健康。但是,它也被认为是多种疾病的致病因素,包括痤疮(一种最常见的皮肤疾病)。但是,其致病作用仍然难以捉摸。为了更好地了解该生物的遗传景观和多样性及其在人类健康和疾病中的作用,我们对82个 P.acnes 菌株进行了比较基因组分析,其中69个菌株由我们小组进行了测序。此集合涵盖所有已知的 P.acnes 世系,包括IA,IB,II和III型。我们的分析表明,尽管 P.?acnes 泛基因组是开放的,但它相对较小并且扩展缓慢。所有测序基因组共有的核心区域占平均基因组的88%。比较基因组分析表明,在每个谱系中,从同一个体中分离出的菌株比从不同个体中分离出的菌株更紧密相关,这表明克隆扩展发生在每个个体微生物组中。我们还确定了每个谱系特有的遗传因素。含有这些元素的差异可能解释了 P.acnes 在健康皮肤中作为常见功能和在疾病中作为病原体的表型和功能上的差异。我们在基因组水平上的 P.acnes 菌株之间差异的发现强调了识别菌株水平上的人类微生物组变异的重要性,以了解其与疾病的关系并提供新颖和个性化治疗方法的见解与痤疮丙酸杆菌相关的疾病。 >重要 痤疮丙酸杆菌是一种主要的人类皮肤细菌。它在维持皮肤健康中起重要作用。但是,也被认为是多种疾病的致病因素,包括痤疮,一种常见的皮肤病,影响了85%的青少年。为了了解不同的菌株是否具有不同的毒性特性,从而在健康和疾病中发挥不同的作用,我们比较了82个 P.acnes 菌株的基因组,其中大多数是从痤疮或健康皮肤中分离出来的。我们确定了特定于谱系的遗传因素,可以解释 P.acnes 的表型和功能差异,这是健康方面的常见病,也是疾病中的病原体。通过分析大量测序菌株,我们对菌株级别和分子级别的生物的遗传景观和多样性有了更好的了解,可以进一步应用于开发新的个性化疗法。

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