Cargando…

The Pathfinder plasmid toolkit for genetically engineering newly isolated bacteria enables the study of Drosophila-colonizing Orbaceae

Toolkits of plasmids and genetic parts streamline the process of assembling DNA constructs and engineering microbes. Many of these kits were designed with specific industrial or laboratory microbes in mind. For researchers interested in non-model microbial systems, it is often unclear which tools an...

Descripción completa

Detalles Bibliográficos
Autores principales: Elston, Katherine M., Phillips, Laila E., Leonard, Sean P., Young, Eleanor, Holley, Jo-anne C., Ahsanullah, Tasneem, McReynolds, Braydin, Moran, Nancy A., Barrick, Jeffrey E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9949093/
https://www.ncbi.nlm.nih.gov/pubmed/36824770
http://dx.doi.org/10.1101/2023.02.15.528778
_version_ 1784892905692856320
author Elston, Katherine M.
Phillips, Laila E.
Leonard, Sean P.
Young, Eleanor
Holley, Jo-anne C.
Ahsanullah, Tasneem
McReynolds, Braydin
Moran, Nancy A.
Barrick, Jeffrey E.
author_facet Elston, Katherine M.
Phillips, Laila E.
Leonard, Sean P.
Young, Eleanor
Holley, Jo-anne C.
Ahsanullah, Tasneem
McReynolds, Braydin
Moran, Nancy A.
Barrick, Jeffrey E.
author_sort Elston, Katherine M.
collection PubMed
description Toolkits of plasmids and genetic parts streamline the process of assembling DNA constructs and engineering microbes. Many of these kits were designed with specific industrial or laboratory microbes in mind. For researchers interested in non-model microbial systems, it is often unclear which tools and techniques will function in newly isolated strains. To address this challenge, we designed the Pathfinder toolkit for quickly determining the compatibility of a bacterium with different plasmid components. Pathfinder plasmids combine three different broad-host-range origins of replication with multiple antibiotic resistance cassettes and reporters, so that sets of parts can be rapidly screened through multiplex conjugation. We first tested these plasmids in Escherichia coli, a strain of Sodalis praecaptivus that colonizes insects, and a Rosenbergiella isolate from leafhoppers. Then, we used the Pathfinder plasmids to engineer previously unstudied bacteria from the family Orbaceae that were isolated from several fly species. Engineered Orbaceae strains were able to colonize Drosophila melanogaster and could be visualized in fly guts. Orbaceae are common and abundant in the guts of wild-caught flies but have not been included in laboratory studies of how the Drosophila microbiome affects fly health. Thus, this work provides foundational genetic tools for studying new host-associated microbes, including bacteria that are a key constituent of the gut microbiome of a model insect species.
format Online
Article
Text
id pubmed-9949093
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Cold Spring Harbor Laboratory
record_format MEDLINE/PubMed
spelling pubmed-99490932023-02-24 The Pathfinder plasmid toolkit for genetically engineering newly isolated bacteria enables the study of Drosophila-colonizing Orbaceae Elston, Katherine M. Phillips, Laila E. Leonard, Sean P. Young, Eleanor Holley, Jo-anne C. Ahsanullah, Tasneem McReynolds, Braydin Moran, Nancy A. Barrick, Jeffrey E. bioRxiv Article Toolkits of plasmids and genetic parts streamline the process of assembling DNA constructs and engineering microbes. Many of these kits were designed with specific industrial or laboratory microbes in mind. For researchers interested in non-model microbial systems, it is often unclear which tools and techniques will function in newly isolated strains. To address this challenge, we designed the Pathfinder toolkit for quickly determining the compatibility of a bacterium with different plasmid components. Pathfinder plasmids combine three different broad-host-range origins of replication with multiple antibiotic resistance cassettes and reporters, so that sets of parts can be rapidly screened through multiplex conjugation. We first tested these plasmids in Escherichia coli, a strain of Sodalis praecaptivus that colonizes insects, and a Rosenbergiella isolate from leafhoppers. Then, we used the Pathfinder plasmids to engineer previously unstudied bacteria from the family Orbaceae that were isolated from several fly species. Engineered Orbaceae strains were able to colonize Drosophila melanogaster and could be visualized in fly guts. Orbaceae are common and abundant in the guts of wild-caught flies but have not been included in laboratory studies of how the Drosophila microbiome affects fly health. Thus, this work provides foundational genetic tools for studying new host-associated microbes, including bacteria that are a key constituent of the gut microbiome of a model insect species. Cold Spring Harbor Laboratory 2023-02-16 /pmc/articles/PMC9949093/ /pubmed/36824770 http://dx.doi.org/10.1101/2023.02.15.528778 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Elston, Katherine M.
Phillips, Laila E.
Leonard, Sean P.
Young, Eleanor
Holley, Jo-anne C.
Ahsanullah, Tasneem
McReynolds, Braydin
Moran, Nancy A.
Barrick, Jeffrey E.
The Pathfinder plasmid toolkit for genetically engineering newly isolated bacteria enables the study of Drosophila-colonizing Orbaceae
title The Pathfinder plasmid toolkit for genetically engineering newly isolated bacteria enables the study of Drosophila-colonizing Orbaceae
title_full The Pathfinder plasmid toolkit for genetically engineering newly isolated bacteria enables the study of Drosophila-colonizing Orbaceae
title_fullStr The Pathfinder plasmid toolkit for genetically engineering newly isolated bacteria enables the study of Drosophila-colonizing Orbaceae
title_full_unstemmed The Pathfinder plasmid toolkit for genetically engineering newly isolated bacteria enables the study of Drosophila-colonizing Orbaceae
title_short The Pathfinder plasmid toolkit for genetically engineering newly isolated bacteria enables the study of Drosophila-colonizing Orbaceae
title_sort pathfinder plasmid toolkit for genetically engineering newly isolated bacteria enables the study of drosophila-colonizing orbaceae
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9949093/
https://www.ncbi.nlm.nih.gov/pubmed/36824770
http://dx.doi.org/10.1101/2023.02.15.528778
work_keys_str_mv AT elstonkatherinem thepathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT phillipslailae thepathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT leonardseanp thepathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT youngeleanor thepathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT holleyjoannec thepathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT ahsanullahtasneem thepathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT mcreynoldsbraydin thepathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT morannancya thepathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT barrickjeffreye thepathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT elstonkatherinem pathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT phillipslailae pathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT leonardseanp pathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT youngeleanor pathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT holleyjoannec pathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT ahsanullahtasneem pathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT mcreynoldsbraydin pathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT morannancya pathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae
AT barrickjeffreye pathfinderplasmidtoolkitforgeneticallyengineeringnewlyisolatedbacteriaenablesthestudyofdrosophilacolonizingorbaceae