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Biofilm Interaction Mapping and Analysis (BIMA) of Interspecific Interactions in Pseudomonas Co-culture Biofilms

Pseudomonas species are ubiquitous in nature and include numerous medically, agriculturally and technologically beneficial strains of which the interspecific interactions are of great interest for biotechnologies. Specifically, co-cultures containing Pseudomonas stutzeri have been used for bioremedi...

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Autores principales: Kosina, Suzanne M., Rademacher, Peter, Wetmore, Kelly M., de Raad, Markus, Zemla, Marcin, Zane, Grant M., Zulovich, Jennifer J., Chakraborty, Romy, Bowen, Benjamin P., Wall, Judy D., Auer, Manfred, Arkin, Adam P., Deutschbauer, Adam M., Northen, Trent R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8696352/
https://www.ncbi.nlm.nih.gov/pubmed/34956122
http://dx.doi.org/10.3389/fmicb.2021.757856
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author Kosina, Suzanne M.
Rademacher, Peter
Wetmore, Kelly M.
de Raad, Markus
Zemla, Marcin
Zane, Grant M.
Zulovich, Jennifer J.
Chakraborty, Romy
Bowen, Benjamin P.
Wall, Judy D.
Auer, Manfred
Arkin, Adam P.
Deutschbauer, Adam M.
Northen, Trent R.
author_facet Kosina, Suzanne M.
Rademacher, Peter
Wetmore, Kelly M.
de Raad, Markus
Zemla, Marcin
Zane, Grant M.
Zulovich, Jennifer J.
Chakraborty, Romy
Bowen, Benjamin P.
Wall, Judy D.
Auer, Manfred
Arkin, Adam P.
Deutschbauer, Adam M.
Northen, Trent R.
author_sort Kosina, Suzanne M.
collection PubMed
description Pseudomonas species are ubiquitous in nature and include numerous medically, agriculturally and technologically beneficial strains of which the interspecific interactions are of great interest for biotechnologies. Specifically, co-cultures containing Pseudomonas stutzeri have been used for bioremediation, biocontrol, aquaculture management and wastewater denitrification. Furthermore, the use of P. stutzeri biofilms, in combination with consortia-based approaches, may offer advantages for these processes. Understanding the interspecific interaction within biofilm co-cultures or consortia provides a means for improvement of current technologies. However, the investigation of biofilm-based consortia has been limited. We present an adaptable and scalable method for the analysis of macroscopic interactions (colony morphology, inhibition, and invasion) between colony-forming bacterial strains using an automated printing method followed by analysis of the genes and metabolites involved in the interactions. Using Biofilm Interaction Mapping and Analysis (BIMA), these interactions were investigated between P. stutzeri strain RCH2, a denitrifier isolated from chromium (VI) contaminated soil, and 13 other species of pseudomonas isolated from non-contaminated soil. One interaction partner, Pseudomonas fluorescens N1B4 was selected for mutant fitness profiling of a DNA-barcoded mutant library; with this approach four genes of importance were identified and the effects on interactions were evaluated with deletion mutants and mass spectrometry based metabolomics.
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spelling pubmed-86963522021-12-24 Biofilm Interaction Mapping and Analysis (BIMA) of Interspecific Interactions in Pseudomonas Co-culture Biofilms Kosina, Suzanne M. Rademacher, Peter Wetmore, Kelly M. de Raad, Markus Zemla, Marcin Zane, Grant M. Zulovich, Jennifer J. Chakraborty, Romy Bowen, Benjamin P. Wall, Judy D. Auer, Manfred Arkin, Adam P. Deutschbauer, Adam M. Northen, Trent R. Front Microbiol Microbiology Pseudomonas species are ubiquitous in nature and include numerous medically, agriculturally and technologically beneficial strains of which the interspecific interactions are of great interest for biotechnologies. Specifically, co-cultures containing Pseudomonas stutzeri have been used for bioremediation, biocontrol, aquaculture management and wastewater denitrification. Furthermore, the use of P. stutzeri biofilms, in combination with consortia-based approaches, may offer advantages for these processes. Understanding the interspecific interaction within biofilm co-cultures or consortia provides a means for improvement of current technologies. However, the investigation of biofilm-based consortia has been limited. We present an adaptable and scalable method for the analysis of macroscopic interactions (colony morphology, inhibition, and invasion) between colony-forming bacterial strains using an automated printing method followed by analysis of the genes and metabolites involved in the interactions. Using Biofilm Interaction Mapping and Analysis (BIMA), these interactions were investigated between P. stutzeri strain RCH2, a denitrifier isolated from chromium (VI) contaminated soil, and 13 other species of pseudomonas isolated from non-contaminated soil. One interaction partner, Pseudomonas fluorescens N1B4 was selected for mutant fitness profiling of a DNA-barcoded mutant library; with this approach four genes of importance were identified and the effects on interactions were evaluated with deletion mutants and mass spectrometry based metabolomics. Frontiers Media S.A. 2021-12-09 /pmc/articles/PMC8696352/ /pubmed/34956122 http://dx.doi.org/10.3389/fmicb.2021.757856 Text en Copyright © 2021 Kosina, Rademacher, Wetmore, de Raad, Zemla, Zane, Zulovich, Chakraborty, Bowen, Wall, Auer, Arkin, Deutschbauer and Northen. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Kosina, Suzanne M.
Rademacher, Peter
Wetmore, Kelly M.
de Raad, Markus
Zemla, Marcin
Zane, Grant M.
Zulovich, Jennifer J.
Chakraborty, Romy
Bowen, Benjamin P.
Wall, Judy D.
Auer, Manfred
Arkin, Adam P.
Deutschbauer, Adam M.
Northen, Trent R.
Biofilm Interaction Mapping and Analysis (BIMA) of Interspecific Interactions in Pseudomonas Co-culture Biofilms
title Biofilm Interaction Mapping and Analysis (BIMA) of Interspecific Interactions in Pseudomonas Co-culture Biofilms
title_full Biofilm Interaction Mapping and Analysis (BIMA) of Interspecific Interactions in Pseudomonas Co-culture Biofilms
title_fullStr Biofilm Interaction Mapping and Analysis (BIMA) of Interspecific Interactions in Pseudomonas Co-culture Biofilms
title_full_unstemmed Biofilm Interaction Mapping and Analysis (BIMA) of Interspecific Interactions in Pseudomonas Co-culture Biofilms
title_short Biofilm Interaction Mapping and Analysis (BIMA) of Interspecific Interactions in Pseudomonas Co-culture Biofilms
title_sort biofilm interaction mapping and analysis (bima) of interspecific interactions in pseudomonas co-culture biofilms
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8696352/
https://www.ncbi.nlm.nih.gov/pubmed/34956122
http://dx.doi.org/10.3389/fmicb.2021.757856
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