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Life Cycle Dominates the Volatilome Character of Dimorphic Fungus Coccidioides spp.

Valley fever (coccidioidomycosis) is an endemic fungal pneumonia of the North and South American deserts. The causative agents of Valley fever are the dimorphic fungi Coccidioides immitis and C. posadasii, which grow as mycelia in the environment and as spherules within the lungs of vulnerable hosts...

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Autores principales: Higgins Keppler, Emily A., Mead, Heather L., Barker, Bridget M., Bean, Heather D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8546678/
https://www.ncbi.nlm.nih.gov/pubmed/33853870
http://dx.doi.org/10.1128/mSphere.00040-21
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author Higgins Keppler, Emily A.
Mead, Heather L.
Barker, Bridget M.
Bean, Heather D.
author_facet Higgins Keppler, Emily A.
Mead, Heather L.
Barker, Bridget M.
Bean, Heather D.
author_sort Higgins Keppler, Emily A.
collection PubMed
description Valley fever (coccidioidomycosis) is an endemic fungal pneumonia of the North and South American deserts. The causative agents of Valley fever are the dimorphic fungi Coccidioides immitis and C. posadasii, which grow as mycelia in the environment and as spherules within the lungs of vulnerable hosts. Current diagnostics for Valley fever are severely lacking due to poor sensitivity and invasiveness, contributing to a 23-day median time to diagnosis, and therefore, new diagnostic tools are needed. We are working toward the development of a breath-based diagnostic for coccidioidomycosis, and in this initial study, we characterized the volatile metabolomes (or volatilomes) of in vitro cultures of Coccidioides. Using solid-phase microextraction (SPME) and comprehensive two-dimensional gas chromatography coupled to time of flight mass spectrometry (GC×GC-TOFMS), we characterized the volatile organic compounds (VOCs) produced by six strains of each species during mycelial or spherule growth. We detected a total of 353 VOCs that were at least 2-fold more abundant in a Coccidioides culture than in medium controls and found that the volatile metabolome of Coccidioides is more dependent on the growth phase (spherules versus mycelia) than on the species. The volatile profiles of C. immitis and C. posadasii have strong similarities, indicating that a single suite of Valley fever breath biomarkers can be developed to detect both species. IMPORTANCE Coccidioidomycosis, or Valley fever, causes up to 30% of community-acquired pneumonias in highly populated areas of the U.S. desert southwest where the disease is endemic. The infection is difficult to diagnose by standard serological and histopathological methods, which delays appropriate treatment. Therefore, we are working toward the development of breath-based diagnostics for Valley fever. In this study, we characterized the volatile metabolomes (or volatilomes) of six strains each of Coccidioides immitis and C. posadasii, the dimorphic fungal species that cause Valley fever. By analyzing the volatilomes during the two modes of growth of the fungus—mycelia and spherules—we observed that the life cycle plays a significant role in the volatiles produced by Coccidioides. In contrast, we observed no significant differences in the C. immitis versus C. posadasii volatilomes. These data suggest that life cycle, rather than species, should guide the selection of putative biomarkers for a Valley fever breath test.
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spelling pubmed-85466782021-11-04 Life Cycle Dominates the Volatilome Character of Dimorphic Fungus Coccidioides spp. Higgins Keppler, Emily A. Mead, Heather L. Barker, Bridget M. Bean, Heather D. mSphere Research Article Valley fever (coccidioidomycosis) is an endemic fungal pneumonia of the North and South American deserts. The causative agents of Valley fever are the dimorphic fungi Coccidioides immitis and C. posadasii, which grow as mycelia in the environment and as spherules within the lungs of vulnerable hosts. Current diagnostics for Valley fever are severely lacking due to poor sensitivity and invasiveness, contributing to a 23-day median time to diagnosis, and therefore, new diagnostic tools are needed. We are working toward the development of a breath-based diagnostic for coccidioidomycosis, and in this initial study, we characterized the volatile metabolomes (or volatilomes) of in vitro cultures of Coccidioides. Using solid-phase microextraction (SPME) and comprehensive two-dimensional gas chromatography coupled to time of flight mass spectrometry (GC×GC-TOFMS), we characterized the volatile organic compounds (VOCs) produced by six strains of each species during mycelial or spherule growth. We detected a total of 353 VOCs that were at least 2-fold more abundant in a Coccidioides culture than in medium controls and found that the volatile metabolome of Coccidioides is more dependent on the growth phase (spherules versus mycelia) than on the species. The volatile profiles of C. immitis and C. posadasii have strong similarities, indicating that a single suite of Valley fever breath biomarkers can be developed to detect both species. IMPORTANCE Coccidioidomycosis, or Valley fever, causes up to 30% of community-acquired pneumonias in highly populated areas of the U.S. desert southwest where the disease is endemic. The infection is difficult to diagnose by standard serological and histopathological methods, which delays appropriate treatment. Therefore, we are working toward the development of breath-based diagnostics for Valley fever. In this study, we characterized the volatile metabolomes (or volatilomes) of six strains each of Coccidioides immitis and C. posadasii, the dimorphic fungal species that cause Valley fever. By analyzing the volatilomes during the two modes of growth of the fungus—mycelia and spherules—we observed that the life cycle plays a significant role in the volatiles produced by Coccidioides. In contrast, we observed no significant differences in the C. immitis versus C. posadasii volatilomes. These data suggest that life cycle, rather than species, should guide the selection of putative biomarkers for a Valley fever breath test. American Society for Microbiology 2021-04-14 /pmc/articles/PMC8546678/ /pubmed/33853870 http://dx.doi.org/10.1128/mSphere.00040-21 Text en Copyright © 2021 Higgins Keppler et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Higgins Keppler, Emily A.
Mead, Heather L.
Barker, Bridget M.
Bean, Heather D.
Life Cycle Dominates the Volatilome Character of Dimorphic Fungus Coccidioides spp.
title Life Cycle Dominates the Volatilome Character of Dimorphic Fungus Coccidioides spp.
title_full Life Cycle Dominates the Volatilome Character of Dimorphic Fungus Coccidioides spp.
title_fullStr Life Cycle Dominates the Volatilome Character of Dimorphic Fungus Coccidioides spp.
title_full_unstemmed Life Cycle Dominates the Volatilome Character of Dimorphic Fungus Coccidioides spp.
title_short Life Cycle Dominates the Volatilome Character of Dimorphic Fungus Coccidioides spp.
title_sort life cycle dominates the volatilome character of dimorphic fungus coccidioides spp.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8546678/
https://www.ncbi.nlm.nih.gov/pubmed/33853870
http://dx.doi.org/10.1128/mSphere.00040-21
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