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Over 50,000 Metagenomically Assembled Draft Genomes for the Human Oral Microbiome Reveal New Taxa

The oral cavity of each person is home to hundreds of bacterial species. While taxa for oral diseases have been studied using culture-based characterization as well as amplicon sequencing, metagenomic and genomic information remains scarce compared to the fecal microbiome. Here, using metagenomic sh...

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Autores principales: Zhu, Jie, Tian, Liu, Chen, Peishan, Han, Mo, Song, Liju, Tong, Xin, Sun, Xiaohuan, Yang, Fangming, Lin, Zhipeng, Liu, Xing, Liu, Chuan, Wang, Xiaohan, Lin, Yuxiang, Cai, Kaiye, Hou, Yong, Xu, Xun, Yang, Huanming, Wang, Jian, Kristiansen, Karsten, Xiao, Liang, Zhang, Tao, Jia, Huijue, Jie, Zhuye
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9684161/
https://www.ncbi.nlm.nih.gov/pubmed/34492339
http://dx.doi.org/10.1016/j.gpb.2021.05.001
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author Zhu, Jie
Tian, Liu
Chen, Peishan
Han, Mo
Song, Liju
Tong, Xin
Sun, Xiaohuan
Yang, Fangming
Lin, Zhipeng
Liu, Xing
Liu, Chuan
Wang, Xiaohan
Lin, Yuxiang
Cai, Kaiye
Hou, Yong
Xu, Xun
Yang, Huanming
Wang, Jian
Kristiansen, Karsten
Xiao, Liang
Zhang, Tao
Jia, Huijue
Jie, Zhuye
author_facet Zhu, Jie
Tian, Liu
Chen, Peishan
Han, Mo
Song, Liju
Tong, Xin
Sun, Xiaohuan
Yang, Fangming
Lin, Zhipeng
Liu, Xing
Liu, Chuan
Wang, Xiaohan
Lin, Yuxiang
Cai, Kaiye
Hou, Yong
Xu, Xun
Yang, Huanming
Wang, Jian
Kristiansen, Karsten
Xiao, Liang
Zhang, Tao
Jia, Huijue
Jie, Zhuye
author_sort Zhu, Jie
collection PubMed
description The oral cavity of each person is home to hundreds of bacterial species. While taxa for oral diseases have been studied using culture-based characterization as well as amplicon sequencing, metagenomic and genomic information remains scarce compared to the fecal microbiome. Here, using metagenomic shotgun data for 3346 oral metagenomic samples together with 808 published samples, we obtain 56,213 metagenome-assembled genomes (MAGs), and more than 64% of the 3589 species-level genome bins (SGBs) contain no publicly available genomes. The resulting genome collection is representative of samples around the world and contains many genomes from candidate phyla radiation (CPR) that lack monoculture. Also, it enables the discovery of new taxa such as a genus Candidatus Bgiplasma within the family Acholeplasmataceae. Large-scale metagenomic data from massive samples also allow the assembly of strains from important oral taxa such as Porphyromonas and Neisseria. The oral microbes encode genes that could potentially metabolize drugs. Apart from these findings, a strongly male-enriched Campylobacter species was identified. Oral samples would be more user-friendly collected than fecal samples and have the potential for disease diagnosis. Thus, these data lay down a genomic framework for future inquiries of the human oral microbiome.
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spelling pubmed-96841612022-11-25 Over 50,000 Metagenomically Assembled Draft Genomes for the Human Oral Microbiome Reveal New Taxa Zhu, Jie Tian, Liu Chen, Peishan Han, Mo Song, Liju Tong, Xin Sun, Xiaohuan Yang, Fangming Lin, Zhipeng Liu, Xing Liu, Chuan Wang, Xiaohan Lin, Yuxiang Cai, Kaiye Hou, Yong Xu, Xun Yang, Huanming Wang, Jian Kristiansen, Karsten Xiao, Liang Zhang, Tao Jia, Huijue Jie, Zhuye Genomics Proteomics Bioinformatics Original Research The oral cavity of each person is home to hundreds of bacterial species. While taxa for oral diseases have been studied using culture-based characterization as well as amplicon sequencing, metagenomic and genomic information remains scarce compared to the fecal microbiome. Here, using metagenomic shotgun data for 3346 oral metagenomic samples together with 808 published samples, we obtain 56,213 metagenome-assembled genomes (MAGs), and more than 64% of the 3589 species-level genome bins (SGBs) contain no publicly available genomes. The resulting genome collection is representative of samples around the world and contains many genomes from candidate phyla radiation (CPR) that lack monoculture. Also, it enables the discovery of new taxa such as a genus Candidatus Bgiplasma within the family Acholeplasmataceae. Large-scale metagenomic data from massive samples also allow the assembly of strains from important oral taxa such as Porphyromonas and Neisseria. The oral microbes encode genes that could potentially metabolize drugs. Apart from these findings, a strongly male-enriched Campylobacter species was identified. Oral samples would be more user-friendly collected than fecal samples and have the potential for disease diagnosis. Thus, these data lay down a genomic framework for future inquiries of the human oral microbiome. Elsevier 2022-04 2021-09-04 /pmc/articles/PMC9684161/ /pubmed/34492339 http://dx.doi.org/10.1016/j.gpb.2021.05.001 Text en © 2022 The Authors. Published by Elsevier B.V. and Science Press on behalf of Beijing Institute of Genomics, Chinese Academy of Sciences / China National Center for Bioinformation and Genetics Society of China. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Research
Zhu, Jie
Tian, Liu
Chen, Peishan
Han, Mo
Song, Liju
Tong, Xin
Sun, Xiaohuan
Yang, Fangming
Lin, Zhipeng
Liu, Xing
Liu, Chuan
Wang, Xiaohan
Lin, Yuxiang
Cai, Kaiye
Hou, Yong
Xu, Xun
Yang, Huanming
Wang, Jian
Kristiansen, Karsten
Xiao, Liang
Zhang, Tao
Jia, Huijue
Jie, Zhuye
Over 50,000 Metagenomically Assembled Draft Genomes for the Human Oral Microbiome Reveal New Taxa
title Over 50,000 Metagenomically Assembled Draft Genomes for the Human Oral Microbiome Reveal New Taxa
title_full Over 50,000 Metagenomically Assembled Draft Genomes for the Human Oral Microbiome Reveal New Taxa
title_fullStr Over 50,000 Metagenomically Assembled Draft Genomes for the Human Oral Microbiome Reveal New Taxa
title_full_unstemmed Over 50,000 Metagenomically Assembled Draft Genomes for the Human Oral Microbiome Reveal New Taxa
title_short Over 50,000 Metagenomically Assembled Draft Genomes for the Human Oral Microbiome Reveal New Taxa
title_sort over 50,000 metagenomically assembled draft genomes for the human oral microbiome reveal new taxa
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9684161/
https://www.ncbi.nlm.nih.gov/pubmed/34492339
http://dx.doi.org/10.1016/j.gpb.2021.05.001
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