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Species-Level Taxonomic Characterization of Uncultured Core Gut Microbiota of Plateau Pika

Rarely has the vast diversity of bacteria on Earth been profiled, particularly on inaccessible plateaus. These uncultured microbes, which are also known as “microbial dark matter,” may play crucial roles in maintaining the ecosystem and are linked to human health, regarding pathogenicity and prebiot...

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Autores principales: Pu, Ji, Yang, Jing, Lu, Shan, Jin, Dong, Luo, Xuelian, Xiong, Yanwen, Bai, Xiangning, Zhu, Wentao, Huang, Yuyuan, Wu, Shusheng, Niu, Lina, Liu, Liyun, Xu, Jianguo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10269723/
https://www.ncbi.nlm.nih.gov/pubmed/37067438
http://dx.doi.org/10.1128/spectrum.03495-22
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author Pu, Ji
Yang, Jing
Lu, Shan
Jin, Dong
Luo, Xuelian
Xiong, Yanwen
Bai, Xiangning
Zhu, Wentao
Huang, Yuyuan
Wu, Shusheng
Niu, Lina
Liu, Liyun
Xu, Jianguo
author_facet Pu, Ji
Yang, Jing
Lu, Shan
Jin, Dong
Luo, Xuelian
Xiong, Yanwen
Bai, Xiangning
Zhu, Wentao
Huang, Yuyuan
Wu, Shusheng
Niu, Lina
Liu, Liyun
Xu, Jianguo
author_sort Pu, Ji
collection PubMed
description Rarely has the vast diversity of bacteria on Earth been profiled, particularly on inaccessible plateaus. These uncultured microbes, which are also known as “microbial dark matter,” may play crucial roles in maintaining the ecosystem and are linked to human health, regarding pathogenicity and prebioticity. The plateau pika (Ochotona curzoniae) is a small burrowing steppe lagomorph that is endemic to the Qinghai-Tibetan Plateau and is a keystone species in the maintenance of ecological balance. We used a combination of full-length 16S rRNA amplicon sequencing, shotgun metagenomics, and metabolomics to elucidate the species-level community structure and the metabolic potential of the gut microbiota of the plateau pika. Using a full-length 16S rRNA metataxonomic approach, we clustered 618 (166 ± 35 per sample) operational phylogenetic units (OPUs) from 105 plateau pika samples and assigned them to 215 known species, 226 potentially new species, and 177 higher hierarchical taxa. Notably, 39 abundant OPUs (over 60% total relative abundance) are found in over 90% of the samples, thereby representing a “core microbiota.” They are all classified as novel microbial lineages, from the class to the species level. Using metagenomic reads, we independently assembled and binned 109 high-quality, species-level genome bins (SGBs). Then, a precise taxonomic assignment was performed to clarify the phylogenetic consistency of the SGBs and the 16S rRNA amplicons. Thus, the majority of the core microbes possess their genomes. SGBs belonging to the genus Treponema, the families Muribaculaceae, Lachnospiraceae, and Oscillospiraceae, and the order Eubacteriales are abundant in the metagenomic samples. In addition, multiple CAZymes are detected in these SGBs, indicating their efficient utilization of plant biomass. As the most widely connected metabolite with the core microbiota, tryptophan may relate to host environmental adaptation. Our investigation allows for a greater comprehension of the composition and functional capacity of the gut microbiota of the plateau pika. IMPORTANCE The great majority of microbial species remain uncultured, severely limiting their taxonomic characterization and biological understanding. The plateau pika (Ochotona curzoniae) is a small burrowing steppe lagomorph that is endemic to the Qinghai-Tibetan Plateau and is considered to be the keystone species in the maintenance of ecological stability. We comprehensively investigated the gut microbiota of the plateau pika via a multiomics endeavor. Combining full-length 16S rRNA metataxonomics, shotgun metagenomics, and metabolomics, we elucidated the species-level taxonomic assignment of the core uncultured intestinal microbiota of the plateau pika and revealed their correlation to host nutritional metabolism and adaptation. Our findings provide insights into the microbial diversity and biological significance of alpine animals.
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spelling pubmed-102697232023-06-16 Species-Level Taxonomic Characterization of Uncultured Core Gut Microbiota of Plateau Pika Pu, Ji Yang, Jing Lu, Shan Jin, Dong Luo, Xuelian Xiong, Yanwen Bai, Xiangning Zhu, Wentao Huang, Yuyuan Wu, Shusheng Niu, Lina Liu, Liyun Xu, Jianguo Microbiol Spectr Research Article Rarely has the vast diversity of bacteria on Earth been profiled, particularly on inaccessible plateaus. These uncultured microbes, which are also known as “microbial dark matter,” may play crucial roles in maintaining the ecosystem and are linked to human health, regarding pathogenicity and prebioticity. The plateau pika (Ochotona curzoniae) is a small burrowing steppe lagomorph that is endemic to the Qinghai-Tibetan Plateau and is a keystone species in the maintenance of ecological balance. We used a combination of full-length 16S rRNA amplicon sequencing, shotgun metagenomics, and metabolomics to elucidate the species-level community structure and the metabolic potential of the gut microbiota of the plateau pika. Using a full-length 16S rRNA metataxonomic approach, we clustered 618 (166 ± 35 per sample) operational phylogenetic units (OPUs) from 105 plateau pika samples and assigned them to 215 known species, 226 potentially new species, and 177 higher hierarchical taxa. Notably, 39 abundant OPUs (over 60% total relative abundance) are found in over 90% of the samples, thereby representing a “core microbiota.” They are all classified as novel microbial lineages, from the class to the species level. Using metagenomic reads, we independently assembled and binned 109 high-quality, species-level genome bins (SGBs). Then, a precise taxonomic assignment was performed to clarify the phylogenetic consistency of the SGBs and the 16S rRNA amplicons. Thus, the majority of the core microbes possess their genomes. SGBs belonging to the genus Treponema, the families Muribaculaceae, Lachnospiraceae, and Oscillospiraceae, and the order Eubacteriales are abundant in the metagenomic samples. In addition, multiple CAZymes are detected in these SGBs, indicating their efficient utilization of plant biomass. As the most widely connected metabolite with the core microbiota, tryptophan may relate to host environmental adaptation. Our investigation allows for a greater comprehension of the composition and functional capacity of the gut microbiota of the plateau pika. IMPORTANCE The great majority of microbial species remain uncultured, severely limiting their taxonomic characterization and biological understanding. The plateau pika (Ochotona curzoniae) is a small burrowing steppe lagomorph that is endemic to the Qinghai-Tibetan Plateau and is considered to be the keystone species in the maintenance of ecological stability. We comprehensively investigated the gut microbiota of the plateau pika via a multiomics endeavor. Combining full-length 16S rRNA metataxonomics, shotgun metagenomics, and metabolomics, we elucidated the species-level taxonomic assignment of the core uncultured intestinal microbiota of the plateau pika and revealed their correlation to host nutritional metabolism and adaptation. Our findings provide insights into the microbial diversity and biological significance of alpine animals. American Society for Microbiology 2023-04-17 /pmc/articles/PMC10269723/ /pubmed/37067438 http://dx.doi.org/10.1128/spectrum.03495-22 Text en Copyright © 2023 Pu et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Pu, Ji
Yang, Jing
Lu, Shan
Jin, Dong
Luo, Xuelian
Xiong, Yanwen
Bai, Xiangning
Zhu, Wentao
Huang, Yuyuan
Wu, Shusheng
Niu, Lina
Liu, Liyun
Xu, Jianguo
Species-Level Taxonomic Characterization of Uncultured Core Gut Microbiota of Plateau Pika
title Species-Level Taxonomic Characterization of Uncultured Core Gut Microbiota of Plateau Pika
title_full Species-Level Taxonomic Characterization of Uncultured Core Gut Microbiota of Plateau Pika
title_fullStr Species-Level Taxonomic Characterization of Uncultured Core Gut Microbiota of Plateau Pika
title_full_unstemmed Species-Level Taxonomic Characterization of Uncultured Core Gut Microbiota of Plateau Pika
title_short Species-Level Taxonomic Characterization of Uncultured Core Gut Microbiota of Plateau Pika
title_sort species-level taxonomic characterization of uncultured core gut microbiota of plateau pika
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10269723/
https://www.ncbi.nlm.nih.gov/pubmed/37067438
http://dx.doi.org/10.1128/spectrum.03495-22
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