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Validation and Application of a PCR Primer Set to Quantify Fungal Communities in the Soil Environment by Real-Time Quantitative PCR

Fungi constitute an important group in soil biological diversity and functioning. However, characterization and knowledge of fungal communities is hampered because few primer sets are available to quantify fungal abundance by real-time quantitative PCR (real-time Q-PCR). The aim in this study was to...

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Autores principales: Chemidlin Prévost-Bouré, Nicolas, Christen, Richard, Dequiedt, Samuel, Mougel, Christophe, Lelièvre, Mélanie, Jolivet, Claudy, Shahbazkia, Hamid Reza, Guillou, Laure, Arrouays, Dominique, Ranjard, Lionel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3169588/
https://www.ncbi.nlm.nih.gov/pubmed/21931659
http://dx.doi.org/10.1371/journal.pone.0024166
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author Chemidlin Prévost-Bouré, Nicolas
Christen, Richard
Dequiedt, Samuel
Mougel, Christophe
Lelièvre, Mélanie
Jolivet, Claudy
Shahbazkia, Hamid Reza
Guillou, Laure
Arrouays, Dominique
Ranjard, Lionel
author_facet Chemidlin Prévost-Bouré, Nicolas
Christen, Richard
Dequiedt, Samuel
Mougel, Christophe
Lelièvre, Mélanie
Jolivet, Claudy
Shahbazkia, Hamid Reza
Guillou, Laure
Arrouays, Dominique
Ranjard, Lionel
author_sort Chemidlin Prévost-Bouré, Nicolas
collection PubMed
description Fungi constitute an important group in soil biological diversity and functioning. However, characterization and knowledge of fungal communities is hampered because few primer sets are available to quantify fungal abundance by real-time quantitative PCR (real-time Q-PCR). The aim in this study was to quantify fungal abundance in soils by incorporating, into a real-time Q-PCR using the SYBRGreen® method, a primer set already used to study the genetic structure of soil fungal communities. To satisfy the real-time Q-PCR requirements to enhance the accuracy and reproducibility of the detection technique, this study focused on the 18S rRNA gene conserved regions. These regions are little affected by length polymorphism and may provide sufficiently small targets, a crucial criterion for enhancing accuracy and reproducibility of the detection technique. An in silico analysis of 33 primer sets targeting the 18S rRNA gene was performed to select the primer set with the best potential for real-time Q-PCR: short amplicon length; good fungal specificity and coverage. The best consensus between specificity, coverage and amplicon length among the 33 sets tested was the primer set FR1 / FF390. This in silico analysis of the specificity of FR1 / FF390 also provided additional information to the previously published analysis on this primer set. The specificity of the primer set FR1 / FF390 for Fungi was validated in vitro by cloning - sequencing the amplicons obtained from a real time Q-PCR assay performed on five independent soil samples. This assay was also used to evaluate the sensitivity and reproducibility of the method. Finally, fungal abundance in samples from 24 soils with contrasting physico-chemical and environmental characteristics was examined and ranked to determine the importance of soil texture, organic carbon content, C∶N ratio and land use in determining fungal abundance in soils.
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spelling pubmed-31695882011-09-19 Validation and Application of a PCR Primer Set to Quantify Fungal Communities in the Soil Environment by Real-Time Quantitative PCR Chemidlin Prévost-Bouré, Nicolas Christen, Richard Dequiedt, Samuel Mougel, Christophe Lelièvre, Mélanie Jolivet, Claudy Shahbazkia, Hamid Reza Guillou, Laure Arrouays, Dominique Ranjard, Lionel PLoS One Research Article Fungi constitute an important group in soil biological diversity and functioning. However, characterization and knowledge of fungal communities is hampered because few primer sets are available to quantify fungal abundance by real-time quantitative PCR (real-time Q-PCR). The aim in this study was to quantify fungal abundance in soils by incorporating, into a real-time Q-PCR using the SYBRGreen® method, a primer set already used to study the genetic structure of soil fungal communities. To satisfy the real-time Q-PCR requirements to enhance the accuracy and reproducibility of the detection technique, this study focused on the 18S rRNA gene conserved regions. These regions are little affected by length polymorphism and may provide sufficiently small targets, a crucial criterion for enhancing accuracy and reproducibility of the detection technique. An in silico analysis of 33 primer sets targeting the 18S rRNA gene was performed to select the primer set with the best potential for real-time Q-PCR: short amplicon length; good fungal specificity and coverage. The best consensus between specificity, coverage and amplicon length among the 33 sets tested was the primer set FR1 / FF390. This in silico analysis of the specificity of FR1 / FF390 also provided additional information to the previously published analysis on this primer set. The specificity of the primer set FR1 / FF390 for Fungi was validated in vitro by cloning - sequencing the amplicons obtained from a real time Q-PCR assay performed on five independent soil samples. This assay was also used to evaluate the sensitivity and reproducibility of the method. Finally, fungal abundance in samples from 24 soils with contrasting physico-chemical and environmental characteristics was examined and ranked to determine the importance of soil texture, organic carbon content, C∶N ratio and land use in determining fungal abundance in soils. Public Library of Science 2011-09-08 /pmc/articles/PMC3169588/ /pubmed/21931659 http://dx.doi.org/10.1371/journal.pone.0024166 Text en Chemidlin Prévost-Bouré 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
Chemidlin Prévost-Bouré, Nicolas
Christen, Richard
Dequiedt, Samuel
Mougel, Christophe
Lelièvre, Mélanie
Jolivet, Claudy
Shahbazkia, Hamid Reza
Guillou, Laure
Arrouays, Dominique
Ranjard, Lionel
Validation and Application of a PCR Primer Set to Quantify Fungal Communities in the Soil Environment by Real-Time Quantitative PCR
title Validation and Application of a PCR Primer Set to Quantify Fungal Communities in the Soil Environment by Real-Time Quantitative PCR
title_full Validation and Application of a PCR Primer Set to Quantify Fungal Communities in the Soil Environment by Real-Time Quantitative PCR
title_fullStr Validation and Application of a PCR Primer Set to Quantify Fungal Communities in the Soil Environment by Real-Time Quantitative PCR
title_full_unstemmed Validation and Application of a PCR Primer Set to Quantify Fungal Communities in the Soil Environment by Real-Time Quantitative PCR
title_short Validation and Application of a PCR Primer Set to Quantify Fungal Communities in the Soil Environment by Real-Time Quantitative PCR
title_sort validation and application of a pcr primer set to quantify fungal communities in the soil environment by real-time quantitative pcr
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3169588/
https://www.ncbi.nlm.nih.gov/pubmed/21931659
http://dx.doi.org/10.1371/journal.pone.0024166
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