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An In Vitro Pipeline for Screening and Selection of Citrus-Associated Microbiota with Potential Anti-“Candidatus Liberibacter asiaticus” Properties

Huanglongbing (HLB) is a destructive citrus disease that is lethal to all commercial citrus plants, making it the most serious citrus disease and one of the most serious plant diseases. Because of the severity of HLB and the paucity of effective control measures, we structured this study to encompas...

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Autores principales: Blacutt, Alex, Ginnan, Nichole, Dang, Tyler, Bodaghi, Sohrab, Vidalakis, Georgios, Ruegger, Paul, Peacock, Beth, Viravathana, Polrit, Vieira, Flavia Campos, Drozd, Christopher, Jablonska, Barbara, Borneman, James, McCollum, Greg, Cordoza, Jennifer, Meloch, Jeremiah, Berry, Victoria, Salazar, Lia Lozano, Maloney, Katherine N., Rolshausen, Philippe E., Roper, M. Caroline
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7117939/
https://www.ncbi.nlm.nih.gov/pubmed/32086307
http://dx.doi.org/10.1128/AEM.02883-19
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author Blacutt, Alex
Ginnan, Nichole
Dang, Tyler
Bodaghi, Sohrab
Vidalakis, Georgios
Ruegger, Paul
Peacock, Beth
Viravathana, Polrit
Vieira, Flavia Campos
Drozd, Christopher
Jablonska, Barbara
Borneman, James
McCollum, Greg
Cordoza, Jennifer
Meloch, Jeremiah
Berry, Victoria
Salazar, Lia Lozano
Maloney, Katherine N.
Rolshausen, Philippe E.
Roper, M. Caroline
author_facet Blacutt, Alex
Ginnan, Nichole
Dang, Tyler
Bodaghi, Sohrab
Vidalakis, Georgios
Ruegger, Paul
Peacock, Beth
Viravathana, Polrit
Vieira, Flavia Campos
Drozd, Christopher
Jablonska, Barbara
Borneman, James
McCollum, Greg
Cordoza, Jennifer
Meloch, Jeremiah
Berry, Victoria
Salazar, Lia Lozano
Maloney, Katherine N.
Rolshausen, Philippe E.
Roper, M. Caroline
author_sort Blacutt, Alex
collection PubMed
description Huanglongbing (HLB) is a destructive citrus disease that is lethal to all commercial citrus plants, making it the most serious citrus disease and one of the most serious plant diseases. Because of the severity of HLB and the paucity of effective control measures, we structured this study to encompass the entirety of the citrus microbiome and the chemistries associated with that microbial community. We describe the spatial niche diversity of bacteria and fungi associated with citrus roots, stems, and leaves using traditional microbial culturing integrated with culture-independent methods. Using the culturable sector of the citrus microbiome, we created a microbial repository using a high-throughput bulk culturing and microbial identification pipeline. We integrated an in vitro agar diffusion inhibition bioassay into our culturing pipeline that queried the repository for antimicrobial activity against Liberibacter crescens, a culturable surrogate for the nonculturable “Candidatus Liberibacter asiaticus” bacterium associated with HLB. We identified microbes with robust inhibitory activity against L. crescens that include the fungi Cladosporium cladosporioides and Epicoccum nigrum and bacterial species of Pantoea, Bacillus, and Curtobacterium. Purified bioactive natural products with anti-“Ca. Liberibacter asiaticus” activity were identified from the fungus C. cladosporioides. Bioassay-guided fractionation of an organic extract of C. cladosporioides yielded the natural products cladosporols A, C, and D as the active agents against L. crescens. This work serves as a foundation for unraveling the complex chemistries associated with the citrus microbiome to begin to understand the functional roles of members of the microbiome, with the long-term goal of developing anti-“Ca. Liberibacter asiaticus” bioinoculants that thrive in the citrus holosystem. IMPORTANCE Globally, citrus is threatened by huanglongbing (HLB), and the lack of effective control measures is a major concern of farmers, markets, and consumers. There is compelling evidence that plant health is a function of the activities of the plant's associated microbiome. Using Liberibacter crescens, a culturable surrogate for the unculturable HLB-associated bacterium “Candidatus Liberibacter asiaticus,” we tested the hypothesis that members of the citrus microbiome produce potential anti-“Ca. Liberibacter asiaticus” natural products with potential anti-“Ca. Liberibacter asiaticus” activity. A subset of isolates obtained from the microbiome inhibited L. crescens growth in an agar diffusion inhibition assay. Further fractionation experiments linked the inhibitory activity of the fungus Cladosporium cladosporioides to the fungus-produced natural products cladosporols A, C, and D, demonstrating dose-dependent antagonism to L. crescens.
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spelling pubmed-71179392020-04-10 An In Vitro Pipeline for Screening and Selection of Citrus-Associated Microbiota with Potential Anti-“Candidatus Liberibacter asiaticus” Properties Blacutt, Alex Ginnan, Nichole Dang, Tyler Bodaghi, Sohrab Vidalakis, Georgios Ruegger, Paul Peacock, Beth Viravathana, Polrit Vieira, Flavia Campos Drozd, Christopher Jablonska, Barbara Borneman, James McCollum, Greg Cordoza, Jennifer Meloch, Jeremiah Berry, Victoria Salazar, Lia Lozano Maloney, Katherine N. Rolshausen, Philippe E. Roper, M. Caroline Appl Environ Microbiol Plant Microbiology Huanglongbing (HLB) is a destructive citrus disease that is lethal to all commercial citrus plants, making it the most serious citrus disease and one of the most serious plant diseases. Because of the severity of HLB and the paucity of effective control measures, we structured this study to encompass the entirety of the citrus microbiome and the chemistries associated with that microbial community. We describe the spatial niche diversity of bacteria and fungi associated with citrus roots, stems, and leaves using traditional microbial culturing integrated with culture-independent methods. Using the culturable sector of the citrus microbiome, we created a microbial repository using a high-throughput bulk culturing and microbial identification pipeline. We integrated an in vitro agar diffusion inhibition bioassay into our culturing pipeline that queried the repository for antimicrobial activity against Liberibacter crescens, a culturable surrogate for the nonculturable “Candidatus Liberibacter asiaticus” bacterium associated with HLB. We identified microbes with robust inhibitory activity against L. crescens that include the fungi Cladosporium cladosporioides and Epicoccum nigrum and bacterial species of Pantoea, Bacillus, and Curtobacterium. Purified bioactive natural products with anti-“Ca. Liberibacter asiaticus” activity were identified from the fungus C. cladosporioides. Bioassay-guided fractionation of an organic extract of C. cladosporioides yielded the natural products cladosporols A, C, and D as the active agents against L. crescens. This work serves as a foundation for unraveling the complex chemistries associated with the citrus microbiome to begin to understand the functional roles of members of the microbiome, with the long-term goal of developing anti-“Ca. Liberibacter asiaticus” bioinoculants that thrive in the citrus holosystem. IMPORTANCE Globally, citrus is threatened by huanglongbing (HLB), and the lack of effective control measures is a major concern of farmers, markets, and consumers. There is compelling evidence that plant health is a function of the activities of the plant's associated microbiome. Using Liberibacter crescens, a culturable surrogate for the unculturable HLB-associated bacterium “Candidatus Liberibacter asiaticus,” we tested the hypothesis that members of the citrus microbiome produce potential anti-“Ca. Liberibacter asiaticus” natural products with potential anti-“Ca. Liberibacter asiaticus” activity. A subset of isolates obtained from the microbiome inhibited L. crescens growth in an agar diffusion inhibition assay. Further fractionation experiments linked the inhibitory activity of the fungus Cladosporium cladosporioides to the fungus-produced natural products cladosporols A, C, and D, demonstrating dose-dependent antagonism to L. crescens. American Society for Microbiology 2020-04-01 /pmc/articles/PMC7117939/ /pubmed/32086307 http://dx.doi.org/10.1128/AEM.02883-19 Text en Copyright © 2020 Blacutt 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 Plant Microbiology
Blacutt, Alex
Ginnan, Nichole
Dang, Tyler
Bodaghi, Sohrab
Vidalakis, Georgios
Ruegger, Paul
Peacock, Beth
Viravathana, Polrit
Vieira, Flavia Campos
Drozd, Christopher
Jablonska, Barbara
Borneman, James
McCollum, Greg
Cordoza, Jennifer
Meloch, Jeremiah
Berry, Victoria
Salazar, Lia Lozano
Maloney, Katherine N.
Rolshausen, Philippe E.
Roper, M. Caroline
An In Vitro Pipeline for Screening and Selection of Citrus-Associated Microbiota with Potential Anti-“Candidatus Liberibacter asiaticus” Properties
title An In Vitro Pipeline for Screening and Selection of Citrus-Associated Microbiota with Potential Anti-“Candidatus Liberibacter asiaticus” Properties
title_full An In Vitro Pipeline for Screening and Selection of Citrus-Associated Microbiota with Potential Anti-“Candidatus Liberibacter asiaticus” Properties
title_fullStr An In Vitro Pipeline for Screening and Selection of Citrus-Associated Microbiota with Potential Anti-“Candidatus Liberibacter asiaticus” Properties
title_full_unstemmed An In Vitro Pipeline for Screening and Selection of Citrus-Associated Microbiota with Potential Anti-“Candidatus Liberibacter asiaticus” Properties
title_short An In Vitro Pipeline for Screening and Selection of Citrus-Associated Microbiota with Potential Anti-“Candidatus Liberibacter asiaticus” Properties
title_sort in vitro pipeline for screening and selection of citrus-associated microbiota with potential anti-“candidatus liberibacter asiaticus” properties
topic Plant Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7117939/
https://www.ncbi.nlm.nih.gov/pubmed/32086307
http://dx.doi.org/10.1128/AEM.02883-19
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