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Efficient and stable metabarcoding sequencing data using a DNBSEQ-G400 sequencer validated by comprehensive community analyses

Metabarcoding is a widely used method for fast characterization of microbial communities in complex environmental samples. However, the selction of sequencing platform can have a noticeable effect on the estimated community composition. Here, we evaluated the metabarcoding performance of a DNBSEQ-G4...

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Autores principales: Sun, Xiaohuan, Hu, Yue-Hua, Wang, Jingjing, Fang, Chao, Li, Jiguang, Han, Mo, Wei, Xiaofang, Zheng, Haotian, Luo, Xiaoqing, Jia, Yangyang, Gong, Meihua, Xiao, Liang, Song, Zewei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: GigaScience Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9632034/
https://www.ncbi.nlm.nih.gov/pubmed/36824325
http://dx.doi.org/10.46471/gigabyte.16
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author Sun, Xiaohuan
Hu, Yue-Hua
Wang, Jingjing
Fang, Chao
Li, Jiguang
Han, Mo
Wei, Xiaofang
Zheng, Haotian
Luo, Xiaoqing
Jia, Yangyang
Gong, Meihua
Xiao, Liang
Song, Zewei
author_facet Sun, Xiaohuan
Hu, Yue-Hua
Wang, Jingjing
Fang, Chao
Li, Jiguang
Han, Mo
Wei, Xiaofang
Zheng, Haotian
Luo, Xiaoqing
Jia, Yangyang
Gong, Meihua
Xiao, Liang
Song, Zewei
author_sort Sun, Xiaohuan
collection PubMed
description Metabarcoding is a widely used method for fast characterization of microbial communities in complex environmental samples. However, the selction of sequencing platform can have a noticeable effect on the estimated community composition. Here, we evaluated the metabarcoding performance of a DNBSEQ-G400 sequencer developed by MGI Tech using 16S and internal transcribed spacer (ITS) markers to investigate bacterial and fungal mock communities, as well as the ITS2 marker to investigate the fungal community of 1144 soil samples, with additional technical replicates. We show that highly accurate sequencing of bacterial and fungal communities is achievable using DNBSEQ-G400. Measures of diversity and correlation from soil metabarcoding showed that the results correlated highly with those of different machines of the same model, as well as between different sequencing modes (single-end 400 bp and paired-end 200 bp). Moderate, but significant differences were observed between results produced with different sequencing platforms (DNBSEQ-G400 and MiSeq); however, the highest differences can be caused by selecting different primer pairs for PCR amplification of taxonomic markers. These differences suggested that care is needed while jointly analyzing metabarcoding data from differenet experiments. This study demonstrated the high performance and accuracy of DNBSEQ-G400 for short-read metabarcoding of microbial communities. Our study also produced datasets to allow further investigation of microbial diversity.
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spelling pubmed-96320342023-02-22 Efficient and stable metabarcoding sequencing data using a DNBSEQ-G400 sequencer validated by comprehensive community analyses Sun, Xiaohuan Hu, Yue-Hua Wang, Jingjing Fang, Chao Li, Jiguang Han, Mo Wei, Xiaofang Zheng, Haotian Luo, Xiaoqing Jia, Yangyang Gong, Meihua Xiao, Liang Song, Zewei GigaByte Data Release Metabarcoding is a widely used method for fast characterization of microbial communities in complex environmental samples. However, the selction of sequencing platform can have a noticeable effect on the estimated community composition. Here, we evaluated the metabarcoding performance of a DNBSEQ-G400 sequencer developed by MGI Tech using 16S and internal transcribed spacer (ITS) markers to investigate bacterial and fungal mock communities, as well as the ITS2 marker to investigate the fungal community of 1144 soil samples, with additional technical replicates. We show that highly accurate sequencing of bacterial and fungal communities is achievable using DNBSEQ-G400. Measures of diversity and correlation from soil metabarcoding showed that the results correlated highly with those of different machines of the same model, as well as between different sequencing modes (single-end 400 bp and paired-end 200 bp). Moderate, but significant differences were observed between results produced with different sequencing platforms (DNBSEQ-G400 and MiSeq); however, the highest differences can be caused by selecting different primer pairs for PCR amplification of taxonomic markers. These differences suggested that care is needed while jointly analyzing metabarcoding data from differenet experiments. This study demonstrated the high performance and accuracy of DNBSEQ-G400 for short-read metabarcoding of microbial communities. Our study also produced datasets to allow further investigation of microbial diversity. GigaScience Press 2021-03-23 /pmc/articles/PMC9632034/ /pubmed/36824325 http://dx.doi.org/10.46471/gigabyte.16 Text en © The Author(s) 2021. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Data Release
Sun, Xiaohuan
Hu, Yue-Hua
Wang, Jingjing
Fang, Chao
Li, Jiguang
Han, Mo
Wei, Xiaofang
Zheng, Haotian
Luo, Xiaoqing
Jia, Yangyang
Gong, Meihua
Xiao, Liang
Song, Zewei
Efficient and stable metabarcoding sequencing data using a DNBSEQ-G400 sequencer validated by comprehensive community analyses
title Efficient and stable metabarcoding sequencing data using a DNBSEQ-G400 sequencer validated by comprehensive community analyses
title_full Efficient and stable metabarcoding sequencing data using a DNBSEQ-G400 sequencer validated by comprehensive community analyses
title_fullStr Efficient and stable metabarcoding sequencing data using a DNBSEQ-G400 sequencer validated by comprehensive community analyses
title_full_unstemmed Efficient and stable metabarcoding sequencing data using a DNBSEQ-G400 sequencer validated by comprehensive community analyses
title_short Efficient and stable metabarcoding sequencing data using a DNBSEQ-G400 sequencer validated by comprehensive community analyses
title_sort efficient and stable metabarcoding sequencing data using a dnbseq-g400 sequencer validated by comprehensive community analyses
topic Data Release
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9632034/
https://www.ncbi.nlm.nih.gov/pubmed/36824325
http://dx.doi.org/10.46471/gigabyte.16
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