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MARPLE, a point-of-care, strain-level disease diagnostics and surveillance tool for complex fungal pathogens

BACKGROUND: Effective disease management depends on timely and accurate diagnosis to guide control measures. The capacity to distinguish between individuals in a pathogen population with specific properties such as fungicide resistance, toxin production and virulence profiles is often essential to i...

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Autores principales: Radhakrishnan, Guru V., Cook, Nicola M., Bueno-Sancho, Vanessa, Lewis, Clare M., Persoons, Antoine, Mitiku, Abel Debebe, Heaton, Matthew, Davey, Phoebe E., Abeyo, Bekele, Alemayehu, Yoseph, Badebo, Ayele, Barnett, Marla, Bryant, Ruth, Chatelain, Jeron, Chen, Xianming, Dong, Suomeng, Henriksson, Tina, Holdgate, Sarah, Justesen, Annemarie F., Kalous, Jay, Kang, Zhensheng, Laczny, Szymon, Legoff, Jean-Paul, Lesch, Driecus, Richards, Tracy, Randhawa, Harpinder S., Thach, Tine, Wang, Meinan, Hovmøller, Mogens S., Hodson, David P., Saunders, Diane G. O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6691556/
https://www.ncbi.nlm.nih.gov/pubmed/31405370
http://dx.doi.org/10.1186/s12915-019-0684-y
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author Radhakrishnan, Guru V.
Cook, Nicola M.
Bueno-Sancho, Vanessa
Lewis, Clare M.
Persoons, Antoine
Mitiku, Abel Debebe
Heaton, Matthew
Davey, Phoebe E.
Abeyo, Bekele
Alemayehu, Yoseph
Badebo, Ayele
Barnett, Marla
Bryant, Ruth
Chatelain, Jeron
Chen, Xianming
Dong, Suomeng
Henriksson, Tina
Holdgate, Sarah
Justesen, Annemarie F.
Kalous, Jay
Kang, Zhensheng
Laczny, Szymon
Legoff, Jean-Paul
Lesch, Driecus
Richards, Tracy
Randhawa, Harpinder S.
Thach, Tine
Wang, Meinan
Hovmøller, Mogens S.
Hodson, David P.
Saunders, Diane G. O.
author_facet Radhakrishnan, Guru V.
Cook, Nicola M.
Bueno-Sancho, Vanessa
Lewis, Clare M.
Persoons, Antoine
Mitiku, Abel Debebe
Heaton, Matthew
Davey, Phoebe E.
Abeyo, Bekele
Alemayehu, Yoseph
Badebo, Ayele
Barnett, Marla
Bryant, Ruth
Chatelain, Jeron
Chen, Xianming
Dong, Suomeng
Henriksson, Tina
Holdgate, Sarah
Justesen, Annemarie F.
Kalous, Jay
Kang, Zhensheng
Laczny, Szymon
Legoff, Jean-Paul
Lesch, Driecus
Richards, Tracy
Randhawa, Harpinder S.
Thach, Tine
Wang, Meinan
Hovmøller, Mogens S.
Hodson, David P.
Saunders, Diane G. O.
author_sort Radhakrishnan, Guru V.
collection PubMed
description BACKGROUND: Effective disease management depends on timely and accurate diagnosis to guide control measures. The capacity to distinguish between individuals in a pathogen population with specific properties such as fungicide resistance, toxin production and virulence profiles is often essential to inform disease management approaches. The genomics revolution has led to technologies that can rapidly produce high-resolution genotypic information to define individual variants of a pathogen species. However, their application to complex fungal pathogens has remained limited due to the frequent inability to culture these pathogens in the absence of their host and their large genome sizes. RESULTS: Here, we describe the development of Mobile And Real-time PLant disEase (MARPLE) diagnostics, a portable, genomics-based, point-of-care approach specifically tailored to identify individual strains of complex fungal plant pathogens. We used targeted sequencing to overcome limitations associated with the size of fungal genomes and their often obligately biotrophic nature. Focusing on the wheat yellow rust pathogen, Puccinia striiformis f.sp. tritici (Pst), we demonstrate that our approach can be used to rapidly define individual strains, assign strains to distinct genetic lineages that have been shown to correlate tightly with their virulence profiles and monitor genes of importance. CONCLUSIONS: MARPLE diagnostics enables rapid identification of individual pathogen strains and has the potential to monitor those with specific properties such as fungicide resistance directly from field-collected infected plant tissue in situ. Generating results within 48 h of field sampling, this new strategy has far-reaching implications for tracking plant health threats. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s12915-019-0684-y) contains supplementary material, which is available to authorized users.
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spelling pubmed-66915562019-08-15 MARPLE, a point-of-care, strain-level disease diagnostics and surveillance tool for complex fungal pathogens Radhakrishnan, Guru V. Cook, Nicola M. Bueno-Sancho, Vanessa Lewis, Clare M. Persoons, Antoine Mitiku, Abel Debebe Heaton, Matthew Davey, Phoebe E. Abeyo, Bekele Alemayehu, Yoseph Badebo, Ayele Barnett, Marla Bryant, Ruth Chatelain, Jeron Chen, Xianming Dong, Suomeng Henriksson, Tina Holdgate, Sarah Justesen, Annemarie F. Kalous, Jay Kang, Zhensheng Laczny, Szymon Legoff, Jean-Paul Lesch, Driecus Richards, Tracy Randhawa, Harpinder S. Thach, Tine Wang, Meinan Hovmøller, Mogens S. Hodson, David P. Saunders, Diane G. O. BMC Biol Methodology Article BACKGROUND: Effective disease management depends on timely and accurate diagnosis to guide control measures. The capacity to distinguish between individuals in a pathogen population with specific properties such as fungicide resistance, toxin production and virulence profiles is often essential to inform disease management approaches. The genomics revolution has led to technologies that can rapidly produce high-resolution genotypic information to define individual variants of a pathogen species. However, their application to complex fungal pathogens has remained limited due to the frequent inability to culture these pathogens in the absence of their host and their large genome sizes. RESULTS: Here, we describe the development of Mobile And Real-time PLant disEase (MARPLE) diagnostics, a portable, genomics-based, point-of-care approach specifically tailored to identify individual strains of complex fungal plant pathogens. We used targeted sequencing to overcome limitations associated with the size of fungal genomes and their often obligately biotrophic nature. Focusing on the wheat yellow rust pathogen, Puccinia striiformis f.sp. tritici (Pst), we demonstrate that our approach can be used to rapidly define individual strains, assign strains to distinct genetic lineages that have been shown to correlate tightly with their virulence profiles and monitor genes of importance. CONCLUSIONS: MARPLE diagnostics enables rapid identification of individual pathogen strains and has the potential to monitor those with specific properties such as fungicide resistance directly from field-collected infected plant tissue in situ. Generating results within 48 h of field sampling, this new strategy has far-reaching implications for tracking plant health threats. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s12915-019-0684-y) contains supplementary material, which is available to authorized users. BioMed Central 2019-08-13 /pmc/articles/PMC6691556/ /pubmed/31405370 http://dx.doi.org/10.1186/s12915-019-0684-y Text en © The Author(s). 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Methodology Article
Radhakrishnan, Guru V.
Cook, Nicola M.
Bueno-Sancho, Vanessa
Lewis, Clare M.
Persoons, Antoine
Mitiku, Abel Debebe
Heaton, Matthew
Davey, Phoebe E.
Abeyo, Bekele
Alemayehu, Yoseph
Badebo, Ayele
Barnett, Marla
Bryant, Ruth
Chatelain, Jeron
Chen, Xianming
Dong, Suomeng
Henriksson, Tina
Holdgate, Sarah
Justesen, Annemarie F.
Kalous, Jay
Kang, Zhensheng
Laczny, Szymon
Legoff, Jean-Paul
Lesch, Driecus
Richards, Tracy
Randhawa, Harpinder S.
Thach, Tine
Wang, Meinan
Hovmøller, Mogens S.
Hodson, David P.
Saunders, Diane G. O.
MARPLE, a point-of-care, strain-level disease diagnostics and surveillance tool for complex fungal pathogens
title MARPLE, a point-of-care, strain-level disease diagnostics and surveillance tool for complex fungal pathogens
title_full MARPLE, a point-of-care, strain-level disease diagnostics and surveillance tool for complex fungal pathogens
title_fullStr MARPLE, a point-of-care, strain-level disease diagnostics and surveillance tool for complex fungal pathogens
title_full_unstemmed MARPLE, a point-of-care, strain-level disease diagnostics and surveillance tool for complex fungal pathogens
title_short MARPLE, a point-of-care, strain-level disease diagnostics and surveillance tool for complex fungal pathogens
title_sort marple, a point-of-care, strain-level disease diagnostics and surveillance tool for complex fungal pathogens
topic Methodology Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6691556/
https://www.ncbi.nlm.nih.gov/pubmed/31405370
http://dx.doi.org/10.1186/s12915-019-0684-y
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