Integrated Human Skin Bacteria Genome Catalog Reveals Extensive Unexplored Habitat‐Specific Microbiome Diversity and Function

Author:

Li Zhiming1234ORCID,Ju Yanmei125,Xia Jingjing46,Zhang Zhe12,Zhen Hefu123,Tong Xin12,Sun Yuzhe123,Lu Haorong2,Zong Yang12,Chen Peishan12,Cai Kaiye12,Wang Zhen12,Yang Huanming12578,Wang Jiucun49,Wang Jian127,Hou Yong12,Jin Xin12,Zhang Tao121011,Zhang Wenwei12,Xu Xun12,Xiao Liang121213,Guo Ruijin12312,Nie Chao123

Affiliation:

1. BGI Research Shenzhen 518083 China

2. China National GeneBank BGI Research Shenzhen 518120 China

3. Shenzhen Key Laboratory of Neurogenomics BGI Research Shenzhen 518083 China

4. State Key Laboratory of Genetic Engineering, Collaborative Innovation Center for Genetics and Development, and Human Phenome Institute Fudan University Shanghai 200438 China

5. College of Life Sciences University of Chinese Academy of Sciences Beijing 100049 China

6. Greater Bay Area Institute of Precision Medicine (Guangzhou) School of Life Sciences, Fudan University Guangzhou 511458 China

7. James D. Watson Institute of Genome Sciences Hangzhou 310058 China

8. The Cancer Hospital of the University of Chinese Academy of Sciences (Zhejiang Cancer Hospital), Institute of Basic Medicine and Cancer (IBMC) Chinese Academy of Sciences Hangzhou 310022 China

9. Research Unit of Dissecting the Population Genetics and Developing New Technologies for Treatment and Prevention of Skin Phenotypes and Dermatological Diseases (2019RU058) Chinese Academy of Medical Sciences Shanghai 200438 China

10. Shenzhen Key Laboratory of Human commensal microorganisms and Health Research BGI Research Shenzhen 518083 China

11. BGI Research Wuhan 430074 China

12. Shenzhen Engineering Laboratory of Detection and Intervention of human intestinal microbiome BGI Research Shenzhen 518083 China

13. Qingdao‐Europe Advanced Institute for Life Sciences BGI Research Qingdao 266555 China

Abstract

AbstractThe skin is the largest organ in the human body. Various skin environments on its surface constitutes a complex ecosystem. One of the characteristics of the skin micro‐ecosystem is low biomass, which greatly limits a comprehensive identification of the microbial species through sequencing. In this study, deep‐shotgun sequencing (average 21.5 Gigabyte (Gb)) from 450 facial samples and publicly available skin metagenomic datasets of 2069 samples to assemble a Unified Human Skin Genome (UHSG) catalog is integrated. The UHSG encompasses 813 prokaryotic species derived from 5779 metagenome‐assembled genomes, among which 470 are novel species covering 20 phyla with 1385 novel assembled genomes. Based on the UHSG, the core functions of the skin microbiome are described and the differences in amino acid metabolism, carbohydrate metabolism, and drug resistance functions among different phyla are identified. Furthermore, analysis of secondary metabolites of the near‐complete genomes further find 1220 putative novel secondary metabolites, several of which are found in previously unknown genomes. Single nucleotide variant (SNV) reveals a possible skin protection mechanism: the negative selection process of the skin environment to conditional pathogens. UHSG offers a convenient reference database that will facilitate a more in‐depth understanding of the role of skin microorganisms in the skin.

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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