EpicPCR 2.0: Technical and Methodological Improvement of a Cutting-Edge Single-Cell Genomic Approach
EpicPCR (Emulsion, Paired Isolation and Concatenation PCR) is a recent single-cell genomic method based on a fusion-PCR allowing us to link a functional sequence of interest to a 16S rRNA gene fragment and use the mass sequencing of the resulting amplicons for taxonomic assignment of the functional...
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doaj-90d9cb5e69df43c9966d3b3ee199f6422021-08-26T14:05:41ZengMDPI AGMicroorganisms2076-26072021-08-0191649164910.3390/microorganisms9081649EpicPCR 2.0: Technical and Methodological Improvement of a Cutting-Edge Single-Cell Genomic ApproachVéronica L. Roman0Christophe Merlin1Marko P. J. Virta2Xavier Bellanger3Université de Lorraine, CNRS, LCPME, F-54000 Nancy, FranceUniversité de Lorraine, CNRS, LCPME, F-54000 Nancy, FranceDepartment of Microbiology, University of Helsinki, 00790 Helsinki, FinlandUniversité de Lorraine, CNRS, LCPME, F-54000 Nancy, FranceEpicPCR (Emulsion, Paired Isolation and Concatenation PCR) is a recent single-cell genomic method based on a fusion-PCR allowing us to link a functional sequence of interest to a 16S rRNA gene fragment and use the mass sequencing of the resulting amplicons for taxonomic assignment of the functional sequence-carrying bacteria. Although it is interesting because it presents the highest efficiency for assigning a bacterial host to a marker, epicPCR remains a complex multistage procedure with technical difficulties that may easily impair the approach depth and quality. Here, we described how to adapt epicPCR to new gene targets and environmental matrices while identifying the natural host range of SXT/R391 integrative and conjugative elements in water microbial communities from the Meurthe River (France). We notably show that adding a supplementary PCR step allowed us to increase the amplicon yield and thus the number of reads obtained after sequencing. A comparison of operational taxonomic unit (OTU) identification approaches when using biological and technical replicates demonstrated that, although OTUs can be validated when obtained from three out of three technical replicates, up to now, results obtained from two or three biological replicates give a similar and even a better confidence level in OTU identification, while allowing us to detect poorly represented SXT/R391 hosts in microbial communities.https://www.mdpi.com/2076-2607/9/8/1649PCR-based technicepicPCRsingle-cell metagenomictaxonomic assignmenthigh throughput sequencing |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Véronica L. Roman Christophe Merlin Marko P. J. Virta Xavier Bellanger |
spellingShingle |
Véronica L. Roman Christophe Merlin Marko P. J. Virta Xavier Bellanger EpicPCR 2.0: Technical and Methodological Improvement of a Cutting-Edge Single-Cell Genomic Approach Microorganisms PCR-based technic epicPCR single-cell metagenomic taxonomic assignment high throughput sequencing |
author_facet |
Véronica L. Roman Christophe Merlin Marko P. J. Virta Xavier Bellanger |
author_sort |
Véronica L. Roman |
title |
EpicPCR 2.0: Technical and Methodological Improvement of a Cutting-Edge Single-Cell Genomic Approach |
title_short |
EpicPCR 2.0: Technical and Methodological Improvement of a Cutting-Edge Single-Cell Genomic Approach |
title_full |
EpicPCR 2.0: Technical and Methodological Improvement of a Cutting-Edge Single-Cell Genomic Approach |
title_fullStr |
EpicPCR 2.0: Technical and Methodological Improvement of a Cutting-Edge Single-Cell Genomic Approach |
title_full_unstemmed |
EpicPCR 2.0: Technical and Methodological Improvement of a Cutting-Edge Single-Cell Genomic Approach |
title_sort |
epicpcr 2.0: technical and methodological improvement of a cutting-edge single-cell genomic approach |
publisher |
MDPI AG |
series |
Microorganisms |
issn |
2076-2607 |
publishDate |
2021-08-01 |
description |
EpicPCR (Emulsion, Paired Isolation and Concatenation PCR) is a recent single-cell genomic method based on a fusion-PCR allowing us to link a functional sequence of interest to a 16S rRNA gene fragment and use the mass sequencing of the resulting amplicons for taxonomic assignment of the functional sequence-carrying bacteria. Although it is interesting because it presents the highest efficiency for assigning a bacterial host to a marker, epicPCR remains a complex multistage procedure with technical difficulties that may easily impair the approach depth and quality. Here, we described how to adapt epicPCR to new gene targets and environmental matrices while identifying the natural host range of SXT/R391 integrative and conjugative elements in water microbial communities from the Meurthe River (France). We notably show that adding a supplementary PCR step allowed us to increase the amplicon yield and thus the number of reads obtained after sequencing. A comparison of operational taxonomic unit (OTU) identification approaches when using biological and technical replicates demonstrated that, although OTUs can be validated when obtained from three out of three technical replicates, up to now, results obtained from two or three biological replicates give a similar and even a better confidence level in OTU identification, while allowing us to detect poorly represented SXT/R391 hosts in microbial communities. |
topic |
PCR-based technic epicPCR single-cell metagenomic taxonomic assignment high throughput sequencing |
url |
https://www.mdpi.com/2076-2607/9/8/1649 |
work_keys_str_mv |
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1721191484690006016 |