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Analysis of 16S rRNA Amplicon Sequencing Options on the Roche/454 Next-Generation Titanium Sequencing Platform

BACKGROUND: 16S rRNA gene pyrosequencing approach has revolutionized studies in microbial ecology. While primer selection and short read length can affect the resulting microbial community profile, little is known about the influence of pyrosequencing methods on the sequencing throughput and the out...

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Autores principales: Tamaki, Hideyuki, Wright, Chris L., Li, Xiangzhen, Lin, Qiaoyan, Hwang, Chiachi, Wang, Shiping, Thimmapuram, Jyothi, Kamagata, Yoichi, Liu, Wen-Tso
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3179495/
https://www.ncbi.nlm.nih.gov/pubmed/21966473
http://dx.doi.org/10.1371/journal.pone.0025263
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author Tamaki, Hideyuki
Wright, Chris L.
Li, Xiangzhen
Lin, Qiaoyan
Hwang, Chiachi
Wang, Shiping
Thimmapuram, Jyothi
Kamagata, Yoichi
Liu, Wen-Tso
author_facet Tamaki, Hideyuki
Wright, Chris L.
Li, Xiangzhen
Lin, Qiaoyan
Hwang, Chiachi
Wang, Shiping
Thimmapuram, Jyothi
Kamagata, Yoichi
Liu, Wen-Tso
author_sort Tamaki, Hideyuki
collection PubMed
description BACKGROUND: 16S rRNA gene pyrosequencing approach has revolutionized studies in microbial ecology. While primer selection and short read length can affect the resulting microbial community profile, little is known about the influence of pyrosequencing methods on the sequencing throughput and the outcome of microbial community analyses. The aim of this study is to compare differences in output, ease, and cost among three different amplicon pyrosequencing methods for the Roche/454 Titanium platform METHODOLOGY/PRINCIPAL FINDINGS: The following three pyrosequencing methods for 16S rRNA genes were selected in this study: Method-1 (standard method) is the recommended method for bi-directional sequencing using the LIB-A kit; Method-2 is a new option designed in this study for unidirectional sequencing with the LIB-A kit; and Method-3 uses the LIB-L kit for unidirectional sequencing. In our comparison among these three methods using 10 different environmental samples, Method-2 and Method-3 produced 1.5–1.6 times more useable reads than the standard method (Method-1), after quality-based trimming, and did not compromise the outcome of microbial community analyses. Specifically, Method-3 is the most cost-effective unidirectional amplicon sequencing method as it provided the most reads and required the least effort in consumables management. CONCLUSIONS: Our findings clearly demonstrated that alternative pyrosequencing methods for 16S rRNA genes could drastically affect sequencing output (e.g. number of reads before and after trimming) but have little effect on the outcomes of microbial community analysis. This finding is important for both researchers and sequencing facilities utilizing 16S rRNA gene pyrosequencing for microbial ecological studies.
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spelling pubmed-31794952011-09-30 Analysis of 16S rRNA Amplicon Sequencing Options on the Roche/454 Next-Generation Titanium Sequencing Platform Tamaki, Hideyuki Wright, Chris L. Li, Xiangzhen Lin, Qiaoyan Hwang, Chiachi Wang, Shiping Thimmapuram, Jyothi Kamagata, Yoichi Liu, Wen-Tso PLoS One Research Article BACKGROUND: 16S rRNA gene pyrosequencing approach has revolutionized studies in microbial ecology. While primer selection and short read length can affect the resulting microbial community profile, little is known about the influence of pyrosequencing methods on the sequencing throughput and the outcome of microbial community analyses. The aim of this study is to compare differences in output, ease, and cost among three different amplicon pyrosequencing methods for the Roche/454 Titanium platform METHODOLOGY/PRINCIPAL FINDINGS: The following three pyrosequencing methods for 16S rRNA genes were selected in this study: Method-1 (standard method) is the recommended method for bi-directional sequencing using the LIB-A kit; Method-2 is a new option designed in this study for unidirectional sequencing with the LIB-A kit; and Method-3 uses the LIB-L kit for unidirectional sequencing. In our comparison among these three methods using 10 different environmental samples, Method-2 and Method-3 produced 1.5–1.6 times more useable reads than the standard method (Method-1), after quality-based trimming, and did not compromise the outcome of microbial community analyses. Specifically, Method-3 is the most cost-effective unidirectional amplicon sequencing method as it provided the most reads and required the least effort in consumables management. CONCLUSIONS: Our findings clearly demonstrated that alternative pyrosequencing methods for 16S rRNA genes could drastically affect sequencing output (e.g. number of reads before and after trimming) but have little effect on the outcomes of microbial community analysis. This finding is important for both researchers and sequencing facilities utilizing 16S rRNA gene pyrosequencing for microbial ecological studies. Public Library of Science 2011-09-23 /pmc/articles/PMC3179495/ /pubmed/21966473 http://dx.doi.org/10.1371/journal.pone.0025263 Text en Tamaki et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Tamaki, Hideyuki
Wright, Chris L.
Li, Xiangzhen
Lin, Qiaoyan
Hwang, Chiachi
Wang, Shiping
Thimmapuram, Jyothi
Kamagata, Yoichi
Liu, Wen-Tso
Analysis of 16S rRNA Amplicon Sequencing Options on the Roche/454 Next-Generation Titanium Sequencing Platform
title Analysis of 16S rRNA Amplicon Sequencing Options on the Roche/454 Next-Generation Titanium Sequencing Platform
title_full Analysis of 16S rRNA Amplicon Sequencing Options on the Roche/454 Next-Generation Titanium Sequencing Platform
title_fullStr Analysis of 16S rRNA Amplicon Sequencing Options on the Roche/454 Next-Generation Titanium Sequencing Platform
title_full_unstemmed Analysis of 16S rRNA Amplicon Sequencing Options on the Roche/454 Next-Generation Titanium Sequencing Platform
title_short Analysis of 16S rRNA Amplicon Sequencing Options on the Roche/454 Next-Generation Titanium Sequencing Platform
title_sort analysis of 16s rrna amplicon sequencing options on the roche/454 next-generation titanium sequencing platform
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3179495/
https://www.ncbi.nlm.nih.gov/pubmed/21966473
http://dx.doi.org/10.1371/journal.pone.0025263
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