A New Whole Genome Culture-Independent Diagnostic Test (WG-CIDT) for Rapid Detection of Salmonella in Lettuce

The rapid detection of foodborne microbial pathogens contaminating fresh fruits and vegetables during the intervening period between harvest and consumption could revolutionize microbial quality assurance of food usually consumed raw and those with a limited shelf life. We have developed a sensitive...

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Main Authors: Dele Ogunremi, Andrée Ann Dupras, Sohail Naushad, Ruimin Gao, Marc-Olivier Duceppe, Katayoun Omidi, Imelda Galván Márquez, Hongsheng Huang, Lawrence Goodridge, Roger C. Lévesque, Nur A. Hasan, Manoj Dadlani, Brent Dixon, Sebastian Magierowski, Luke Masson
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-04-01
Series:Frontiers in Microbiology
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fmicb.2020.00602/full
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spelling doaj-54314989137e463c957956876566799a2020-11-25T03:16:37ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2020-04-011110.3389/fmicb.2020.00602518184A New Whole Genome Culture-Independent Diagnostic Test (WG-CIDT) for Rapid Detection of Salmonella in LettuceDele Ogunremi0Andrée Ann Dupras1Sohail Naushad2Ruimin Gao3Ruimin Gao4Marc-Olivier Duceppe5Katayoun Omidi6Imelda Galván Márquez7Hongsheng Huang8Lawrence Goodridge9Roger C. Lévesque10Nur A. Hasan11Manoj Dadlani12Brent Dixon13Sebastian Magierowski14Luke Masson15Ottawa Laboratory Fallowfield, Canadian Food Inspection Agency, Ottawa, ON, CanadaOttawa Laboratory Fallowfield, Canadian Food Inspection Agency, Ottawa, ON, CanadaOttawa Laboratory Fallowfield, Canadian Food Inspection Agency, Ottawa, ON, CanadaOttawa Laboratory Fallowfield, Canadian Food Inspection Agency, Ottawa, ON, CanadaDepartment of Food Science and Agricultural Chemistry, McGill University, Sainte-Anne-de-Bellevue, QC, CanadaOttawa Laboratory Fallowfield, Canadian Food Inspection Agency, Ottawa, ON, CanadaOttawa Laboratory Fallowfield, Canadian Food Inspection Agency, Ottawa, ON, CanadaOttawa Laboratory Fallowfield, Canadian Food Inspection Agency, Ottawa, ON, CanadaOttawa Laboratory Fallowfield, Canadian Food Inspection Agency, Ottawa, ON, CanadaDepartment of Food Science and Agricultural Chemistry, McGill University, Sainte-Anne-de-Bellevue, QC, CanadaInstitut de Biologie Intégrative et des Systèmes, Université Laval, Quebec City, QC, CanadaCosmosID Inc., Rockville, MD, United StatesCosmosID Inc., Rockville, MD, United StatesBureau of Microbial Hazards, Food Directorate, Health Canada, Ottawa, ON, CanadaDepartment of Electrical Engineering and Computer Science, York University, Toronto, ON, CanadaNational Research Council of Canada, Montreal, QC, CanadaThe rapid detection of foodborne microbial pathogens contaminating fresh fruits and vegetables during the intervening period between harvest and consumption could revolutionize microbial quality assurance of food usually consumed raw and those with a limited shelf life. We have developed a sensitive, shotgun whole genome sequencing protocol capable of detecting as few as 1 colony forming unit (cfu) of Salmonella enterica serovar Typhimurium spiked on 25 g of lettuce. The Ion Torrent sequencing platform was used to generate reads of globally amplified DNA from microbes recovered from the surface of lettuce followed by bioinformatic analyses of the nucleotide sequences to detect the presence of Salmonella. The test is rapid and sensitive, and appropriate for testing perishable foods, and those consumed raw, for Salmonella contamination. The test has the potential to be universally applicable to any microbial contaminant on lettuce as long as a suitable bioinformatics pipeline is available and validated. A universal test is expected to pave the way for preventive and precision food safety and the re-shaping of the entire spectrum of food safety investigations from the current disease-limiting, reactive procedure to a proactive, disease prevention process.https://www.frontiersin.org/article/10.3389/fmicb.2020.00602/fullculture-independentmetagenomicslettuceSalmonellawhole genomebioinformatics
collection DOAJ
language English
format Article
sources DOAJ
author Dele Ogunremi
Andrée Ann Dupras
Sohail Naushad
Ruimin Gao
Ruimin Gao
Marc-Olivier Duceppe
Katayoun Omidi
Imelda Galván Márquez
Hongsheng Huang
Lawrence Goodridge
Roger C. Lévesque
Nur A. Hasan
Manoj Dadlani
Brent Dixon
Sebastian Magierowski
Luke Masson
spellingShingle Dele Ogunremi
Andrée Ann Dupras
Sohail Naushad
Ruimin Gao
Ruimin Gao
Marc-Olivier Duceppe
Katayoun Omidi
Imelda Galván Márquez
Hongsheng Huang
Lawrence Goodridge
Roger C. Lévesque
Nur A. Hasan
Manoj Dadlani
Brent Dixon
Sebastian Magierowski
Luke Masson
A New Whole Genome Culture-Independent Diagnostic Test (WG-CIDT) for Rapid Detection of Salmonella in Lettuce
Frontiers in Microbiology
culture-independent
metagenomics
lettuce
Salmonella
whole genome
bioinformatics
author_facet Dele Ogunremi
Andrée Ann Dupras
Sohail Naushad
Ruimin Gao
Ruimin Gao
Marc-Olivier Duceppe
Katayoun Omidi
Imelda Galván Márquez
Hongsheng Huang
Lawrence Goodridge
Roger C. Lévesque
Nur A. Hasan
Manoj Dadlani
Brent Dixon
Sebastian Magierowski
Luke Masson
author_sort Dele Ogunremi
title A New Whole Genome Culture-Independent Diagnostic Test (WG-CIDT) for Rapid Detection of Salmonella in Lettuce
title_short A New Whole Genome Culture-Independent Diagnostic Test (WG-CIDT) for Rapid Detection of Salmonella in Lettuce
title_full A New Whole Genome Culture-Independent Diagnostic Test (WG-CIDT) for Rapid Detection of Salmonella in Lettuce
title_fullStr A New Whole Genome Culture-Independent Diagnostic Test (WG-CIDT) for Rapid Detection of Salmonella in Lettuce
title_full_unstemmed A New Whole Genome Culture-Independent Diagnostic Test (WG-CIDT) for Rapid Detection of Salmonella in Lettuce
title_sort new whole genome culture-independent diagnostic test (wg-cidt) for rapid detection of salmonella in lettuce
publisher Frontiers Media S.A.
series Frontiers in Microbiology
issn 1664-302X
publishDate 2020-04-01
description The rapid detection of foodborne microbial pathogens contaminating fresh fruits and vegetables during the intervening period between harvest and consumption could revolutionize microbial quality assurance of food usually consumed raw and those with a limited shelf life. We have developed a sensitive, shotgun whole genome sequencing protocol capable of detecting as few as 1 colony forming unit (cfu) of Salmonella enterica serovar Typhimurium spiked on 25 g of lettuce. The Ion Torrent sequencing platform was used to generate reads of globally amplified DNA from microbes recovered from the surface of lettuce followed by bioinformatic analyses of the nucleotide sequences to detect the presence of Salmonella. The test is rapid and sensitive, and appropriate for testing perishable foods, and those consumed raw, for Salmonella contamination. The test has the potential to be universally applicable to any microbial contaminant on lettuce as long as a suitable bioinformatics pipeline is available and validated. A universal test is expected to pave the way for preventive and precision food safety and the re-shaping of the entire spectrum of food safety investigations from the current disease-limiting, reactive procedure to a proactive, disease prevention process.
topic culture-independent
metagenomics
lettuce
Salmonella
whole genome
bioinformatics
url https://www.frontiersin.org/article/10.3389/fmicb.2020.00602/full
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