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The Cultivable Bacterial Microbiota Associated to the Medicinal Plant Origanum vulgare L.: From Antibiotic Resistance to Growth-Inhibitory Properties

The insurgence of antibiotic resistance and emergence of multidrug-resistant (MDR) pathogens prioritize research to discover new antimicrobials. In this context, medicinal plants produce bioactive compounds of pharmacological interest: some extracts have antimicrobial properties that can contrast di...

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Autores principales: Castronovo, Lara Mitia, Calonico, Carmela, Ascrizzi, Roberta, Del Duca, Sara, Delfino, Vania, Chioccioli, Sofia, Vassallo, Alberto, Strozza, Iolanda, De Leo, Marinella, Biffi, Sauro, Bacci, Giovanni, Bogani, Patrizia, Maggini, Valentina, Mengoni, Alessio, Pistelli, Luisa, Lo Nostro, Antonella, Firenzuoli, Fabio, Fani, Renato
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7226918/
https://www.ncbi.nlm.nih.gov/pubmed/32457726
http://dx.doi.org/10.3389/fmicb.2020.00862
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author Castronovo, Lara Mitia
Calonico, Carmela
Ascrizzi, Roberta
Del Duca, Sara
Delfino, Vania
Chioccioli, Sofia
Vassallo, Alberto
Strozza, Iolanda
De Leo, Marinella
Biffi, Sauro
Bacci, Giovanni
Bogani, Patrizia
Maggini, Valentina
Mengoni, Alessio
Pistelli, Luisa
Lo Nostro, Antonella
Firenzuoli, Fabio
Fani, Renato
author_facet Castronovo, Lara Mitia
Calonico, Carmela
Ascrizzi, Roberta
Del Duca, Sara
Delfino, Vania
Chioccioli, Sofia
Vassallo, Alberto
Strozza, Iolanda
De Leo, Marinella
Biffi, Sauro
Bacci, Giovanni
Bogani, Patrizia
Maggini, Valentina
Mengoni, Alessio
Pistelli, Luisa
Lo Nostro, Antonella
Firenzuoli, Fabio
Fani, Renato
author_sort Castronovo, Lara Mitia
collection PubMed
description The insurgence of antibiotic resistance and emergence of multidrug-resistant (MDR) pathogens prioritize research to discover new antimicrobials. In this context, medicinal plants produce bioactive compounds of pharmacological interest: some extracts have antimicrobial properties that can contrast different pathogens. For such a purpose, Origanum vulgare L. (Lamiaceae family) is a medicinal aromatic plant, whose essential oil (EO) is recognized for its antiseptic, antimicrobial and antiviral activities. The cultivable bacteria from different compartments (i.e., flower, leaf, stem and soil) were isolated in order to: (i) characterize the bacterial microbiota associated to the plant, determining the forces responsible for the structuring of its composition (by evaluation of cross inhibition); (ii) investigate if bacterial endophytes demonstrate antimicrobial activities against human pathogens. A pool of plants belonging to O. vulgare species was collected and the specimen chemotype was defined by hydrodistillation of its essential oil. The isolation of plant associated bacteria was performed from the four compartments. Microbiota was further characterized through a culture-independent approach and next-generation sequencing analysis, as well. Isolates were molecularly typed by Random Amplified Polymorphic DNA (RAPD) profiling and taxonomically assigned by 16S rRNA gene sequencing. Antibiotic resistance profiles of isolates and pairwise cross-inhibition of isolates on agar plates (i.e., antagonistic interactions) were also assessed. High level of diversity of bacterial isolates was detected at both genus and strain level in all different compartments. Most strains were tolerant against common antibiotics; moreover, they produced antagonistic patterns of interactions mainly with strains from different compartments with respect to that of original isolation. Strains that exhibited high inhibitory properties were further tested against human pathogens, revealing a strong capacity to inhibit the growth of strains resistant to several antibiotics. In conclusion, this study regarded the characterization of O. vulgare L. chemotype and of the bacterial communities associated to this medicinal plant, also allowing the evaluation of antibiotic resistance and antagonistic interactions. This study provided the bases for further analyses on the possible involvement of endophytic bacteria in the production of antimicrobial molecules that could have an important role in clinical and therapeutic applications.
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spelling pubmed-72269182020-05-25 The Cultivable Bacterial Microbiota Associated to the Medicinal Plant Origanum vulgare L.: From Antibiotic Resistance to Growth-Inhibitory Properties Castronovo, Lara Mitia Calonico, Carmela Ascrizzi, Roberta Del Duca, Sara Delfino, Vania Chioccioli, Sofia Vassallo, Alberto Strozza, Iolanda De Leo, Marinella Biffi, Sauro Bacci, Giovanni Bogani, Patrizia Maggini, Valentina Mengoni, Alessio Pistelli, Luisa Lo Nostro, Antonella Firenzuoli, Fabio Fani, Renato Front Microbiol Microbiology The insurgence of antibiotic resistance and emergence of multidrug-resistant (MDR) pathogens prioritize research to discover new antimicrobials. In this context, medicinal plants produce bioactive compounds of pharmacological interest: some extracts have antimicrobial properties that can contrast different pathogens. For such a purpose, Origanum vulgare L. (Lamiaceae family) is a medicinal aromatic plant, whose essential oil (EO) is recognized for its antiseptic, antimicrobial and antiviral activities. The cultivable bacteria from different compartments (i.e., flower, leaf, stem and soil) were isolated in order to: (i) characterize the bacterial microbiota associated to the plant, determining the forces responsible for the structuring of its composition (by evaluation of cross inhibition); (ii) investigate if bacterial endophytes demonstrate antimicrobial activities against human pathogens. A pool of plants belonging to O. vulgare species was collected and the specimen chemotype was defined by hydrodistillation of its essential oil. The isolation of plant associated bacteria was performed from the four compartments. Microbiota was further characterized through a culture-independent approach and next-generation sequencing analysis, as well. Isolates were molecularly typed by Random Amplified Polymorphic DNA (RAPD) profiling and taxonomically assigned by 16S rRNA gene sequencing. Antibiotic resistance profiles of isolates and pairwise cross-inhibition of isolates on agar plates (i.e., antagonistic interactions) were also assessed. High level of diversity of bacterial isolates was detected at both genus and strain level in all different compartments. Most strains were tolerant against common antibiotics; moreover, they produced antagonistic patterns of interactions mainly with strains from different compartments with respect to that of original isolation. Strains that exhibited high inhibitory properties were further tested against human pathogens, revealing a strong capacity to inhibit the growth of strains resistant to several antibiotics. In conclusion, this study regarded the characterization of O. vulgare L. chemotype and of the bacterial communities associated to this medicinal plant, also allowing the evaluation of antibiotic resistance and antagonistic interactions. This study provided the bases for further analyses on the possible involvement of endophytic bacteria in the production of antimicrobial molecules that could have an important role in clinical and therapeutic applications. Frontiers Media S.A. 2020-05-08 /pmc/articles/PMC7226918/ /pubmed/32457726 http://dx.doi.org/10.3389/fmicb.2020.00862 Text en Copyright © 2020 Castronovo, Calonico, Ascrizzi, Del Duca, Delfino, Chioccioli, Vassallo, Strozza, De Leo, Biffi, Bacci, Bogani, Maggini, Mengoni, Pistelli, Lo Nostro, Firenzuoli and Fani. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Castronovo, Lara Mitia
Calonico, Carmela
Ascrizzi, Roberta
Del Duca, Sara
Delfino, Vania
Chioccioli, Sofia
Vassallo, Alberto
Strozza, Iolanda
De Leo, Marinella
Biffi, Sauro
Bacci, Giovanni
Bogani, Patrizia
Maggini, Valentina
Mengoni, Alessio
Pistelli, Luisa
Lo Nostro, Antonella
Firenzuoli, Fabio
Fani, Renato
The Cultivable Bacterial Microbiota Associated to the Medicinal Plant Origanum vulgare L.: From Antibiotic Resistance to Growth-Inhibitory Properties
title The Cultivable Bacterial Microbiota Associated to the Medicinal Plant Origanum vulgare L.: From Antibiotic Resistance to Growth-Inhibitory Properties
title_full The Cultivable Bacterial Microbiota Associated to the Medicinal Plant Origanum vulgare L.: From Antibiotic Resistance to Growth-Inhibitory Properties
title_fullStr The Cultivable Bacterial Microbiota Associated to the Medicinal Plant Origanum vulgare L.: From Antibiotic Resistance to Growth-Inhibitory Properties
title_full_unstemmed The Cultivable Bacterial Microbiota Associated to the Medicinal Plant Origanum vulgare L.: From Antibiotic Resistance to Growth-Inhibitory Properties
title_short The Cultivable Bacterial Microbiota Associated to the Medicinal Plant Origanum vulgare L.: From Antibiotic Resistance to Growth-Inhibitory Properties
title_sort cultivable bacterial microbiota associated to the medicinal plant origanum vulgare l.: from antibiotic resistance to growth-inhibitory properties
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7226918/
https://www.ncbi.nlm.nih.gov/pubmed/32457726
http://dx.doi.org/10.3389/fmicb.2020.00862
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