In Vitro and in Vivo Selection of Potentially Probiotic Lactobacilli From Nocellara del Belice Table Olives
Table olives are increasingly recognized as a vehicle as well as a source of probiotic bacteria, especially those fermented with traditional procedures based on the activity of indigenous microbial consortia, originating from local environments. In the present study, we report characterization at th...
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doaj-d8f10ceb492441de964e7e017effe6042020-11-24T22:13:56ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2018-03-01910.3389/fmicb.2018.00595342889In Vitro and in Vivo Selection of Potentially Probiotic Lactobacilli From Nocellara del Belice Table OlivesBarbara Guantario0Paola Zinno1Emily Schifano2Marianna Roselli3Giuditta Perozzi4Claudio Palleschi5Daniela Uccelletti6Chiara Devirgiliis7Food & Nutrition Research Centre, Council for Agricultural Research and Economics, Rome, ItalyFood & Nutrition Research Centre, Council for Agricultural Research and Economics, Rome, ItalyDepartment of Biology and Biotechnology “C. Darwin”, Sapienza University of Rome, ItalyFood & Nutrition Research Centre, Council for Agricultural Research and Economics, Rome, ItalyFood & Nutrition Research Centre, Council for Agricultural Research and Economics, Rome, ItalyDepartment of Biology and Biotechnology “C. Darwin”, Sapienza University of Rome, ItalyDepartment of Biology and Biotechnology “C. Darwin”, Sapienza University of Rome, ItalyFood & Nutrition Research Centre, Council for Agricultural Research and Economics, Rome, ItalyTable olives are increasingly recognized as a vehicle as well as a source of probiotic bacteria, especially those fermented with traditional procedures based on the activity of indigenous microbial consortia, originating from local environments. In the present study, we report characterization at the species level of 49 Lactic Acid Bacteria (LAB) strains deriving from Nocellara del Belice table olives fermented with the Spanish or Castelvetrano methods, recently isolated in our previous work. Ribosomal 16S DNA analysis allowed identification of 4 Enterococcus gallinarum, 3 E. casseliflavus, 14 Leuconostoc mesenteroides, 19 Lactobacillus pentosus, 7 L. coryniformis, and 2 L. oligofermentans. The L. pentosus and L. coryniformis strains were subjected to further screening to evaluate their probiotic potential, using a combination of in vitro and in vivo approaches. The majority of them showed high survival rates under in vitro simulated gastro-intestinal conditions, and positive antimicrobial activity against Salmonella enterica serovar Typhimurium, Listeria monocytogenes and enterotoxigenic Escherichia coli (ETEC) pathogens. Evaluation of antibiotic resistance to ampicillin, tetracycline, chloramphenicol, or erythromycin was also performed for all selected strains. Three L. coryniformis strains were selected as very good performers in the initial in vitro testing screens, they were antibiotic susceptible, as well as capable of inhibiting pathogen growth in vitro. Parallel screening employing the simplified model organism Caenorhabditis elegans, fed the Lactobacillus strains as a food source, revealed that one L. pentosus and one L. coryniformis strains significantly induced prolongevity effects and protection from pathogen-mediated infection. Moreover, both strains displayed adhesion to human intestinal epithelial Caco-2 cells and were able to outcompete foodborne pathogens for cell adhesion. Overall, these results are suggestive of beneficial features for novel LAB strains, which renders them promising candidates as starters for the manufacturing of fermented table olives with probiotic added value.http://journal.frontiersin.org/article/10.3389/fmicb.2018.00595/fullfoodborne bacteriafermented foodsnematodeautochtonous bacteriaplant food matrix |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Barbara Guantario Paola Zinno Emily Schifano Marianna Roselli Giuditta Perozzi Claudio Palleschi Daniela Uccelletti Chiara Devirgiliis |
spellingShingle |
Barbara Guantario Paola Zinno Emily Schifano Marianna Roselli Giuditta Perozzi Claudio Palleschi Daniela Uccelletti Chiara Devirgiliis In Vitro and in Vivo Selection of Potentially Probiotic Lactobacilli From Nocellara del Belice Table Olives Frontiers in Microbiology foodborne bacteria fermented foods nematode autochtonous bacteria plant food matrix |
author_facet |
Barbara Guantario Paola Zinno Emily Schifano Marianna Roselli Giuditta Perozzi Claudio Palleschi Daniela Uccelletti Chiara Devirgiliis |
author_sort |
Barbara Guantario |
title |
In Vitro and in Vivo Selection of Potentially Probiotic Lactobacilli From Nocellara del Belice Table Olives |
title_short |
In Vitro and in Vivo Selection of Potentially Probiotic Lactobacilli From Nocellara del Belice Table Olives |
title_full |
In Vitro and in Vivo Selection of Potentially Probiotic Lactobacilli From Nocellara del Belice Table Olives |
title_fullStr |
In Vitro and in Vivo Selection of Potentially Probiotic Lactobacilli From Nocellara del Belice Table Olives |
title_full_unstemmed |
In Vitro and in Vivo Selection of Potentially Probiotic Lactobacilli From Nocellara del Belice Table Olives |
title_sort |
in vitro and in vivo selection of potentially probiotic lactobacilli from nocellara del belice table olives |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Microbiology |
issn |
1664-302X |
publishDate |
2018-03-01 |
description |
Table olives are increasingly recognized as a vehicle as well as a source of probiotic bacteria, especially those fermented with traditional procedures based on the activity of indigenous microbial consortia, originating from local environments. In the present study, we report characterization at the species level of 49 Lactic Acid Bacteria (LAB) strains deriving from Nocellara del Belice table olives fermented with the Spanish or Castelvetrano methods, recently isolated in our previous work. Ribosomal 16S DNA analysis allowed identification of 4 Enterococcus gallinarum, 3 E. casseliflavus, 14 Leuconostoc mesenteroides, 19 Lactobacillus pentosus, 7 L. coryniformis, and 2 L. oligofermentans. The L. pentosus and L. coryniformis strains were subjected to further screening to evaluate their probiotic potential, using a combination of in vitro and in vivo approaches. The majority of them showed high survival rates under in vitro simulated gastro-intestinal conditions, and positive antimicrobial activity against Salmonella enterica serovar Typhimurium, Listeria monocytogenes and enterotoxigenic Escherichia coli (ETEC) pathogens. Evaluation of antibiotic resistance to ampicillin, tetracycline, chloramphenicol, or erythromycin was also performed for all selected strains. Three L. coryniformis strains were selected as very good performers in the initial in vitro testing screens, they were antibiotic susceptible, as well as capable of inhibiting pathogen growth in vitro. Parallel screening employing the simplified model organism Caenorhabditis elegans, fed the Lactobacillus strains as a food source, revealed that one L. pentosus and one L. coryniformis strains significantly induced prolongevity effects and protection from pathogen-mediated infection. Moreover, both strains displayed adhesion to human intestinal epithelial Caco-2 cells and were able to outcompete foodborne pathogens for cell adhesion. Overall, these results are suggestive of beneficial features for novel LAB strains, which renders them promising candidates as starters for the manufacturing of fermented table olives with probiotic added value. |
topic |
foodborne bacteria fermented foods nematode autochtonous bacteria plant food matrix |
url |
http://journal.frontiersin.org/article/10.3389/fmicb.2018.00595/full |
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