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Development and Validation of Burkholderia pseudomallei-Specific Real-Time PCR Assays for Clinical, Environmental or Forensic Detection Applications

The bacterium Burkholderia pseudomallei causes melioidosis, a rare but serious illness that can be fatal if untreated or misdiagnosed. Species-specific PCR assays provide a technically simple method for differentiating B. pseudomallei from near-neighbor species. However, substantial genetic diversit...

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Autores principales: Price, Erin P., Dale, Julia L., Cook, James M., Sarovich, Derek S., Seymour, Meagan L., Ginther, Jennifer L., Kaufman, Emily L., Beckstrom-Sternberg, Stephen M., Mayo, Mark, Kaestli, Mirjam, Glass, Mindy B., Gee, Jay E., Wuthiekanun, Vanaporn, Warner, Jeffrey M., Baker, Anthony, Foster, Jeffrey T., Tan, Patrick, Tuanyok, Apichai, Limmathurotsakul, Direk, Peacock, Sharon J., Currie, Bart J., Wagner, David M., Keim, Paul, Pearson, Talima
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3356290/
https://www.ncbi.nlm.nih.gov/pubmed/22624061
http://dx.doi.org/10.1371/journal.pone.0037723
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author Price, Erin P.
Dale, Julia L.
Cook, James M.
Sarovich, Derek S.
Seymour, Meagan L.
Ginther, Jennifer L.
Kaufman, Emily L.
Beckstrom-Sternberg, Stephen M.
Mayo, Mark
Kaestli, Mirjam
Glass, Mindy B.
Gee, Jay E.
Wuthiekanun, Vanaporn
Warner, Jeffrey M.
Baker, Anthony
Foster, Jeffrey T.
Tan, Patrick
Tuanyok, Apichai
Limmathurotsakul, Direk
Peacock, Sharon J.
Currie, Bart J.
Wagner, David M.
Keim, Paul
Pearson, Talima
author_facet Price, Erin P.
Dale, Julia L.
Cook, James M.
Sarovich, Derek S.
Seymour, Meagan L.
Ginther, Jennifer L.
Kaufman, Emily L.
Beckstrom-Sternberg, Stephen M.
Mayo, Mark
Kaestli, Mirjam
Glass, Mindy B.
Gee, Jay E.
Wuthiekanun, Vanaporn
Warner, Jeffrey M.
Baker, Anthony
Foster, Jeffrey T.
Tan, Patrick
Tuanyok, Apichai
Limmathurotsakul, Direk
Peacock, Sharon J.
Currie, Bart J.
Wagner, David M.
Keim, Paul
Pearson, Talima
author_sort Price, Erin P.
collection PubMed
description The bacterium Burkholderia pseudomallei causes melioidosis, a rare but serious illness that can be fatal if untreated or misdiagnosed. Species-specific PCR assays provide a technically simple method for differentiating B. pseudomallei from near-neighbor species. However, substantial genetic diversity and high levels of recombination within this species reduce the likelihood that molecular signatures will differentiate all B. pseudomallei from other Burkholderiaceae. Currently available molecular assays for B. pseudomallei detection lack rigorous validation across large in silico datasets and isolate collections to test for specificity, and none have been subjected to stringent quality control criteria (accuracy, precision, selectivity, limit of quantitation (LoQ), limit of detection (LoD), linearity, ruggedness and robustness) to determine their suitability for environmental, clinical or forensic investigations. In this study, we developed two novel B. pseudomallei specific assays, 122018 and 266152, using a dual-probe approach to differentiate B. pseudomallei from B. thailandensis, B. oklahomensis and B. thailandensis-like species; other species failed to amplify. Species specificity was validated across a large DNA panel (>2,300 samples) comprising Burkholderia spp. and non-Burkholderia bacterial and fungal species of clinical and environmental relevance. Comparison of assay specificity to two previously published B. pseudomallei-specific assays, BurkDiff and TTS1, demonstrated comparable performance of all assays, providing between 99.7 and 100% specificity against our isolate panel. Last, we subjected 122018 and 266152 to rigorous quality control analyses, thus providing quantitative limits of assay performance. Using B. pseudomallei as a model, our study provides a framework for comprehensive quantitative validation of molecular assays and provides additional, highly validated B. pseudomallei assays for the scientific research community.
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spelling pubmed-33562902012-05-23 Development and Validation of Burkholderia pseudomallei-Specific Real-Time PCR Assays for Clinical, Environmental or Forensic Detection Applications Price, Erin P. Dale, Julia L. Cook, James M. Sarovich, Derek S. Seymour, Meagan L. Ginther, Jennifer L. Kaufman, Emily L. Beckstrom-Sternberg, Stephen M. Mayo, Mark Kaestli, Mirjam Glass, Mindy B. Gee, Jay E. Wuthiekanun, Vanaporn Warner, Jeffrey M. Baker, Anthony Foster, Jeffrey T. Tan, Patrick Tuanyok, Apichai Limmathurotsakul, Direk Peacock, Sharon J. Currie, Bart J. Wagner, David M. Keim, Paul Pearson, Talima PLoS One Research Article The bacterium Burkholderia pseudomallei causes melioidosis, a rare but serious illness that can be fatal if untreated or misdiagnosed. Species-specific PCR assays provide a technically simple method for differentiating B. pseudomallei from near-neighbor species. However, substantial genetic diversity and high levels of recombination within this species reduce the likelihood that molecular signatures will differentiate all B. pseudomallei from other Burkholderiaceae. Currently available molecular assays for B. pseudomallei detection lack rigorous validation across large in silico datasets and isolate collections to test for specificity, and none have been subjected to stringent quality control criteria (accuracy, precision, selectivity, limit of quantitation (LoQ), limit of detection (LoD), linearity, ruggedness and robustness) to determine their suitability for environmental, clinical or forensic investigations. In this study, we developed two novel B. pseudomallei specific assays, 122018 and 266152, using a dual-probe approach to differentiate B. pseudomallei from B. thailandensis, B. oklahomensis and B. thailandensis-like species; other species failed to amplify. Species specificity was validated across a large DNA panel (>2,300 samples) comprising Burkholderia spp. and non-Burkholderia bacterial and fungal species of clinical and environmental relevance. Comparison of assay specificity to two previously published B. pseudomallei-specific assays, BurkDiff and TTS1, demonstrated comparable performance of all assays, providing between 99.7 and 100% specificity against our isolate panel. Last, we subjected 122018 and 266152 to rigorous quality control analyses, thus providing quantitative limits of assay performance. Using B. pseudomallei as a model, our study provides a framework for comprehensive quantitative validation of molecular assays and provides additional, highly validated B. pseudomallei assays for the scientific research community. Public Library of Science 2012-05-18 /pmc/articles/PMC3356290/ /pubmed/22624061 http://dx.doi.org/10.1371/journal.pone.0037723 Text en Price 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Price, Erin P.
Dale, Julia L.
Cook, James M.
Sarovich, Derek S.
Seymour, Meagan L.
Ginther, Jennifer L.
Kaufman, Emily L.
Beckstrom-Sternberg, Stephen M.
Mayo, Mark
Kaestli, Mirjam
Glass, Mindy B.
Gee, Jay E.
Wuthiekanun, Vanaporn
Warner, Jeffrey M.
Baker, Anthony
Foster, Jeffrey T.
Tan, Patrick
Tuanyok, Apichai
Limmathurotsakul, Direk
Peacock, Sharon J.
Currie, Bart J.
Wagner, David M.
Keim, Paul
Pearson, Talima
Development and Validation of Burkholderia pseudomallei-Specific Real-Time PCR Assays for Clinical, Environmental or Forensic Detection Applications
title Development and Validation of Burkholderia pseudomallei-Specific Real-Time PCR Assays for Clinical, Environmental or Forensic Detection Applications
title_full Development and Validation of Burkholderia pseudomallei-Specific Real-Time PCR Assays for Clinical, Environmental or Forensic Detection Applications
title_fullStr Development and Validation of Burkholderia pseudomallei-Specific Real-Time PCR Assays for Clinical, Environmental or Forensic Detection Applications
title_full_unstemmed Development and Validation of Burkholderia pseudomallei-Specific Real-Time PCR Assays for Clinical, Environmental or Forensic Detection Applications
title_short Development and Validation of Burkholderia pseudomallei-Specific Real-Time PCR Assays for Clinical, Environmental or Forensic Detection Applications
title_sort development and validation of burkholderia pseudomallei-specific real-time pcr assays for clinical, environmental or forensic detection applications
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3356290/
https://www.ncbi.nlm.nih.gov/pubmed/22624061
http://dx.doi.org/10.1371/journal.pone.0037723
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