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比较 16S rRNA 基因全长序列和亚区在皮肤微生物组分析中的应用。

Comparison of the full-length sequence and sub-regions of 16S rRNA gene for skin microbiome profiling.

机构信息

Institute of Forensic Science, Fudan University, Shanghai, China.

Department of Forensic Medicine, Guizhou Medical University, Guiyang, Guizhou, China.

出版信息

mSystems. 2024 Jul 23;9(7):e0039924. doi: 10.1128/msystems.00399-24. Epub 2024 Jun 27.

Abstract

The skin microbiome plays a pivotal role in human health by providing protective and functional benefits. Furthermore, its inherent stability and individual specificity present novel forensic applications. These aspects have sparked considerable research enthusiasm among scholars across various fields. However, the selection of specific 16S rRNA hypervariable regions for skin microbiome studies is not standardized and should be validated through extensive research tailored to different research objectives and targeted bacterial taxa. Notably, third-generation sequencing (TGS) technology leverages the full discriminatory power of the 16S gene and enables more detailed and accurate microbial community analyses. Here, we conducted full-length 16S sequencing of 141 skin microbiota samples from multiple human anatomical sites using the PacBio platform. Based on this data, we generated derived 16S sub-region data through an experiment. Comparisons between the 16S full-length and the derived variable region data revealed that the former can provide superior taxonomic resolution. However, even with full 16S gene sequencing, limitations arise in achieving 100% taxonomic resolution at the species level for skin samples. Additionally, the capability to resolve high-abundance bacteria (TOP30) at the genus level remains generally consistent across different 16S variable regions. Furthermore, the V1-V3 region offers a resolution comparable with that of full-length 16S sequences, in comparison to other hypervariable regions studied. In summary, while acknowledging the benefits of full-length 16S gene analysis, we propose the targeting of specific sub-regions as a practical choice for skin microbial research, especially when balancing the accuracy of taxonomic classification with limited sequencing resources, such as the availability of only short-read sequencing or insufficient DNA.IMPORTANCESkin acts as the primary barrier to human health. Considering the different microenvironments, microbial research should be conducted separately for different skin regions. Third-generation sequencing (TGS) technology can make full use of the discriminatory power of the full-length 16S gene. However, 16S sub-regions are widely used, particularly when faced with limited sequencing resources including the availability of only short-read sequencing and insufficient DNA. Comparing the 16S full-length and the derived variable region data from five different human skin sites, we confirmed the superiority of the V1-V3 region in skin microbiota analysis. We propose the targeting of specific sub-regions as a practical choice for microbial research.

摘要

皮肤微生物组通过提供保护和功能益处,在人类健康中发挥着关键作用。此外,其内在的稳定性和个体特异性为新的法医应用提供了可能。这些方面激发了各个领域学者的极大研究热情。然而,针对皮肤微生物组研究选择特定的 16S rRNA 高变区并未标准化,并且应该通过针对不同研究目标和靶向细菌分类群的广泛研究进行验证。值得注意的是,第三代测序(TGS)技术利用了 16S 基因的全部鉴别能力,并能够进行更详细和准确的微生物群落分析。在这里,我们使用 PacBio 平台对来自多个人体解剖部位的 141 个皮肤微生物组样本进行了全长 16S 测序。基于这些数据,我们通过实验生成了衍生的 16S 亚区数据。将 16S 全长和衍生可变区数据进行比较,结果表明前者可以提供更好的分类分辨率。然而,即使进行了全长 16S 基因测序,对于皮肤样本,在物种水平上达到 100%分类分辨率仍存在局限性。此外,在不同的 16S 可变区中,解析高丰度细菌(TOP30)的能力在属水平上基本保持一致。此外,与研究的其他高变区相比,V1-V3 区提供的分辨率可与全长 16S 序列相媲美。总之,虽然我们承认全长 16S 基因分析的好处,但我们建议针对特定的亚区进行靶向研究,这是皮肤微生物研究的一种实用选择,尤其是在平衡分类学分类的准确性与有限的测序资源(例如仅可进行短读测序或 DNA 不足)时。重要的是,皮肤是人体健康的第一道防线。考虑到不同的微环境,应该分别对不同的皮肤区域进行微生物研究。第三代测序(TGS)技术可以充分利用全长 16S 基因的鉴别能力。然而,16S 亚区被广泛使用,尤其是在面临有限的测序资源(包括仅可进行短读测序和 DNA 不足)时。我们比较了来自五个不同人体皮肤部位的 16S 全长和衍生可变区数据,证实了 V1-V3 区在皮肤微生物组分析中的优势。我们建议针对特定的亚区进行靶向研究,这是微生物研究的一种实用选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f56/11264597/3f7387cee279/msystems.00399-24.f001.jpg

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