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Cultivating the Bacterial Microbiota of Populus Roots

The integral role of microbial communities in plant growth and health is now widely recognized, and, increasingly, the constituents of the microbiome are being defined. While phylogenetic surveys have revealed the taxa present in a microbiome and show that this composition can depend on, and respond...

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Autores principales: Carper, Dana L., Weston, David J., Barde, Aditya, Timm, Collin M., Lu, Tse-Yuan, Burdick, Leah H., Jawdy, Sara S., Klingeman, Dawn M., Robeson, Michael S., Veach, Allison M., Cregger, Melissa A., Kalluri, Udaya C., Schadt, Christopher W., Podar, Mircea, Doktycz, Mitchel J., Pelletier, Dale A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8269261/
https://www.ncbi.nlm.nih.gov/pubmed/34156297
http://dx.doi.org/10.1128/mSystems.01306-20
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author Carper, Dana L.
Weston, David J.
Barde, Aditya
Timm, Collin M.
Lu, Tse-Yuan
Burdick, Leah H.
Jawdy, Sara S.
Klingeman, Dawn M.
Robeson, Michael S.
Veach, Allison M.
Cregger, Melissa A.
Kalluri, Udaya C.
Schadt, Christopher W.
Podar, Mircea
Doktycz, Mitchel J.
Pelletier, Dale A.
author_facet Carper, Dana L.
Weston, David J.
Barde, Aditya
Timm, Collin M.
Lu, Tse-Yuan
Burdick, Leah H.
Jawdy, Sara S.
Klingeman, Dawn M.
Robeson, Michael S.
Veach, Allison M.
Cregger, Melissa A.
Kalluri, Udaya C.
Schadt, Christopher W.
Podar, Mircea
Doktycz, Mitchel J.
Pelletier, Dale A.
author_sort Carper, Dana L.
collection PubMed
description The integral role of microbial communities in plant growth and health is now widely recognized, and, increasingly, the constituents of the microbiome are being defined. While phylogenetic surveys have revealed the taxa present in a microbiome and show that this composition can depend on, and respond to, environmental perturbations, the challenge shifts to determining why particular microbes are selected and how they collectively function in concert with their host. In this study, we targeted the isolation of representative bacterial strains from environmental samples of Populus roots using a direct plating approach and compared them to amplicon-based sequencing analysis of root samples. The resulting culture collection contains 3,211 unique isolates representing 10 classes, 18 orders, 45 families, and 120 genera from 6 phyla, based on 16S rRNA gene sequence analysis. The collection accounts for ∼50% of the natural community of plant-associated bacteria as determined by phylogenetic analysis. Additionally, a representative set of 553 had their genomes sequenced to facilitate functional analyses. The top sequence variants in the amplicon data, identified as Pseudomonas, had multiple representatives within the culture collection. We then explore a simplified microbiome, comprised of 10 strains representing abundant taxa from environmental samples, and tested for their ability to reproducibly colonize Populus root tissue. The 10-member simplified community was able to reproducibly colonize on Populus roots after 21 days, with some taxa found in surface-sterilized aboveground tissue. This study presents a comprehensive collection of bacteria isolated from Populus for use in exploring microbial function and community inoculation experiments to understand basic concepts of plant and environmental selection. IMPORTANCE Microbial communities play an integral role in the health and survival of their plant hosts. Many studies have identified key members in these communities and led to the use of synthetic communities for elucidating their function; however, these studies are limited by the available cultured bacterial representatives. Here, we present a bacterial culture collection comprising 3,211 isolates that is representative of the root community of Populus. We then demonstrate the ability to examine underlying microbe-microbe interactions using a synthetic community approach. This culture collection will allow for the greater exploration of the microbial community function through targeted experimentation and manipulation.
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spelling pubmed-82692612021-08-02 Cultivating the Bacterial Microbiota of Populus Roots Carper, Dana L. Weston, David J. Barde, Aditya Timm, Collin M. Lu, Tse-Yuan Burdick, Leah H. Jawdy, Sara S. Klingeman, Dawn M. Robeson, Michael S. Veach, Allison M. Cregger, Melissa A. Kalluri, Udaya C. Schadt, Christopher W. Podar, Mircea Doktycz, Mitchel J. Pelletier, Dale A. mSystems Research Article The integral role of microbial communities in plant growth and health is now widely recognized, and, increasingly, the constituents of the microbiome are being defined. While phylogenetic surveys have revealed the taxa present in a microbiome and show that this composition can depend on, and respond to, environmental perturbations, the challenge shifts to determining why particular microbes are selected and how they collectively function in concert with their host. In this study, we targeted the isolation of representative bacterial strains from environmental samples of Populus roots using a direct plating approach and compared them to amplicon-based sequencing analysis of root samples. The resulting culture collection contains 3,211 unique isolates representing 10 classes, 18 orders, 45 families, and 120 genera from 6 phyla, based on 16S rRNA gene sequence analysis. The collection accounts for ∼50% of the natural community of plant-associated bacteria as determined by phylogenetic analysis. Additionally, a representative set of 553 had their genomes sequenced to facilitate functional analyses. The top sequence variants in the amplicon data, identified as Pseudomonas, had multiple representatives within the culture collection. We then explore a simplified microbiome, comprised of 10 strains representing abundant taxa from environmental samples, and tested for their ability to reproducibly colonize Populus root tissue. The 10-member simplified community was able to reproducibly colonize on Populus roots after 21 days, with some taxa found in surface-sterilized aboveground tissue. This study presents a comprehensive collection of bacteria isolated from Populus for use in exploring microbial function and community inoculation experiments to understand basic concepts of plant and environmental selection. IMPORTANCE Microbial communities play an integral role in the health and survival of their plant hosts. Many studies have identified key members in these communities and led to the use of synthetic communities for elucidating their function; however, these studies are limited by the available cultured bacterial representatives. Here, we present a bacterial culture collection comprising 3,211 isolates that is representative of the root community of Populus. We then demonstrate the ability to examine underlying microbe-microbe interactions using a synthetic community approach. This culture collection will allow for the greater exploration of the microbial community function through targeted experimentation and manipulation. American Society for Microbiology 2021-06-22 /pmc/articles/PMC8269261/ /pubmed/34156297 http://dx.doi.org/10.1128/mSystems.01306-20 Text en Copyright © 2021 Carper 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
Carper, Dana L.
Weston, David J.
Barde, Aditya
Timm, Collin M.
Lu, Tse-Yuan
Burdick, Leah H.
Jawdy, Sara S.
Klingeman, Dawn M.
Robeson, Michael S.
Veach, Allison M.
Cregger, Melissa A.
Kalluri, Udaya C.
Schadt, Christopher W.
Podar, Mircea
Doktycz, Mitchel J.
Pelletier, Dale A.
Cultivating the Bacterial Microbiota of Populus Roots
title Cultivating the Bacterial Microbiota of Populus Roots
title_full Cultivating the Bacterial Microbiota of Populus Roots
title_fullStr Cultivating the Bacterial Microbiota of Populus Roots
title_full_unstemmed Cultivating the Bacterial Microbiota of Populus Roots
title_short Cultivating the Bacterial Microbiota of Populus Roots
title_sort cultivating the bacterial microbiota of populus roots
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8269261/
https://www.ncbi.nlm.nih.gov/pubmed/34156297
http://dx.doi.org/10.1128/mSystems.01306-20
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