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Novel approaches for the taxonomic and metabolic characterization of lactobacilli: Integration of 16S rRNA gene sequencing with MALDI-TOF MS and (1)H-NMR

Lactobacilli represent a wide range of bacterial species with several implications for the human host. They play a crucial role in maintaining the ecological equilibrium of different biological niches and are essential for fermented food production and probiotic formulation. Despite the consensus ab...

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Autores principales: Foschi, Claudio, Laghi, Luca, Parolin, Carola, Giordani, Barbara, Compri, Monica, Cevenini, Roberto, Marangoni, Antonella, Vitali, Beatrice
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5312945/
https://www.ncbi.nlm.nih.gov/pubmed/28207855
http://dx.doi.org/10.1371/journal.pone.0172483
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author Foschi, Claudio
Laghi, Luca
Parolin, Carola
Giordani, Barbara
Compri, Monica
Cevenini, Roberto
Marangoni, Antonella
Vitali, Beatrice
author_facet Foschi, Claudio
Laghi, Luca
Parolin, Carola
Giordani, Barbara
Compri, Monica
Cevenini, Roberto
Marangoni, Antonella
Vitali, Beatrice
author_sort Foschi, Claudio
collection PubMed
description Lactobacilli represent a wide range of bacterial species with several implications for the human host. They play a crucial role in maintaining the ecological equilibrium of different biological niches and are essential for fermented food production and probiotic formulation. Despite the consensus about the ‘health-promoting’ significance of Lactobacillus genus, its genotypic and phenotypic characterization still poses several difficulties. The aim of this study was to assess the integration of different approaches, genotypic (16S rRNA gene sequencing), proteomic (MALDI-TOF MS) and metabolomic ((1)H-NMR), for the taxonomic and metabolic characterization of Lactobacillus species. For this purpose we analyzed 40 strains of various origin (intestinal, vaginal, food, probiotics), belonging to different species. The high discriminatory power of MALDI-TOF for species identification was underlined by the excellent agreement with the genotypic analysis. Indeed, MALDI-TOF allowed to correctly identify 39 out of 40 Lactobacillus strains at the species level, with an overall concordance of 97.5%. In the perspective to simplify the MALDI TOF sample preparation, especially for routine practice, we demonstrated the perfect agreement of the colony-picking from agar plates with the protein extraction protocol. (1)H-NMR analysis, applied to both culture supernatants and bacterial lysates, identified a panel of metabolites whose variations in concentration were associated with the taxonomy, but also revealed a high intra-species variability that did not allow a species-level identification. Therefore, despite not suitable for mere taxonomic purposes, metabolomics can be useful to correlate particular biological activities with taxonomy and to understand the mechanisms related to the antimicrobial effect shown by some Lactobacillus species.
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spelling pubmed-53129452017-03-03 Novel approaches for the taxonomic and metabolic characterization of lactobacilli: Integration of 16S rRNA gene sequencing with MALDI-TOF MS and (1)H-NMR Foschi, Claudio Laghi, Luca Parolin, Carola Giordani, Barbara Compri, Monica Cevenini, Roberto Marangoni, Antonella Vitali, Beatrice PLoS One Research Article Lactobacilli represent a wide range of bacterial species with several implications for the human host. They play a crucial role in maintaining the ecological equilibrium of different biological niches and are essential for fermented food production and probiotic formulation. Despite the consensus about the ‘health-promoting’ significance of Lactobacillus genus, its genotypic and phenotypic characterization still poses several difficulties. The aim of this study was to assess the integration of different approaches, genotypic (16S rRNA gene sequencing), proteomic (MALDI-TOF MS) and metabolomic ((1)H-NMR), for the taxonomic and metabolic characterization of Lactobacillus species. For this purpose we analyzed 40 strains of various origin (intestinal, vaginal, food, probiotics), belonging to different species. The high discriminatory power of MALDI-TOF for species identification was underlined by the excellent agreement with the genotypic analysis. Indeed, MALDI-TOF allowed to correctly identify 39 out of 40 Lactobacillus strains at the species level, with an overall concordance of 97.5%. In the perspective to simplify the MALDI TOF sample preparation, especially for routine practice, we demonstrated the perfect agreement of the colony-picking from agar plates with the protein extraction protocol. (1)H-NMR analysis, applied to both culture supernatants and bacterial lysates, identified a panel of metabolites whose variations in concentration were associated with the taxonomy, but also revealed a high intra-species variability that did not allow a species-level identification. Therefore, despite not suitable for mere taxonomic purposes, metabolomics can be useful to correlate particular biological activities with taxonomy and to understand the mechanisms related to the antimicrobial effect shown by some Lactobacillus species. Public Library of Science 2017-02-16 /pmc/articles/PMC5312945/ /pubmed/28207855 http://dx.doi.org/10.1371/journal.pone.0172483 Text en © 2017 Foschi 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Foschi, Claudio
Laghi, Luca
Parolin, Carola
Giordani, Barbara
Compri, Monica
Cevenini, Roberto
Marangoni, Antonella
Vitali, Beatrice
Novel approaches for the taxonomic and metabolic characterization of lactobacilli: Integration of 16S rRNA gene sequencing with MALDI-TOF MS and (1)H-NMR
title Novel approaches for the taxonomic and metabolic characterization of lactobacilli: Integration of 16S rRNA gene sequencing with MALDI-TOF MS and (1)H-NMR
title_full Novel approaches for the taxonomic and metabolic characterization of lactobacilli: Integration of 16S rRNA gene sequencing with MALDI-TOF MS and (1)H-NMR
title_fullStr Novel approaches for the taxonomic and metabolic characterization of lactobacilli: Integration of 16S rRNA gene sequencing with MALDI-TOF MS and (1)H-NMR
title_full_unstemmed Novel approaches for the taxonomic and metabolic characterization of lactobacilli: Integration of 16S rRNA gene sequencing with MALDI-TOF MS and (1)H-NMR
title_short Novel approaches for the taxonomic and metabolic characterization of lactobacilli: Integration of 16S rRNA gene sequencing with MALDI-TOF MS and (1)H-NMR
title_sort novel approaches for the taxonomic and metabolic characterization of lactobacilli: integration of 16s rrna gene sequencing with maldi-tof ms and (1)h-nmr
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5312945/
https://www.ncbi.nlm.nih.gov/pubmed/28207855
http://dx.doi.org/10.1371/journal.pone.0172483
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