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Gene Expression System in Green Sulfur Bacteria by Conjugative Plasmid Transfer

Gene transfer and expression systems in green sulfur bacteria were established by bacterial conjugation with Escherichia coli. Conjugative plasmid transfer from E. coli S17-1 to a thermophilic green sulfur bacterium, Chlorobaculum tepidum (formerly Chlorobium tepidum) WT2321, was executed with RSF10...

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Autores principales: Azai, Chihiro, Harada, Jiro, Oh-oka, Hirozo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3842273/
https://www.ncbi.nlm.nih.gov/pubmed/24312414
http://dx.doi.org/10.1371/journal.pone.0082345
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author Azai, Chihiro
Harada, Jiro
Oh-oka, Hirozo
author_facet Azai, Chihiro
Harada, Jiro
Oh-oka, Hirozo
author_sort Azai, Chihiro
collection PubMed
description Gene transfer and expression systems in green sulfur bacteria were established by bacterial conjugation with Escherichia coli. Conjugative plasmid transfer from E. coli S17-1 to a thermophilic green sulfur bacterium, Chlorobaculum tepidum (formerly Chlorobium tepidum) WT2321, was executed with RSF1010-derivative broad-host-range plasmids, named pDSK5191 and pDSK5192, that confer erythromycin and streptomycin/spectinomycin resistance, respectively. The transconjugants harboring these plasmids were reproducibly obtained at a frequency of approximately 10(-5) by selection with erythromycin and a combination of streptomycin and spectinomycin, respectively. These plasmids were stably maintained in C. tepidum cells in the presence of these antibiotics. The plasmid transfer to another mesophilic green sulfur bacterium, C. limnaeum (formerly Chlorobium phaeobacteroides) RK-j-1, was also achieved with pDSK5192. The expression plasmid based on pDSK5191 was constructed by incorporating the upstream and downstream regions of the pscAB gene cluster on the C. tepidum genome, since these regions were considered to include a constitutive promoter and a ρ-independent terminator, respectively. Growth defections of the ∆cycA and ∆soxB mutants were completely rescued after introduction of pDSK5191-cycA and -soxB that were designed to express their complementary genes. On the other hand, pDSK5191-6xhis-pscAB, which incorporated the gene cluster of 6xhis-pscA and pscB, produced approximately four times more of the photosynthetic reaction center complex with His-tagged PscA as compared with that expressed in the genome by the conventional natural transformation method. This expression system, based on conjugative plasmid, would be applicable to general molecular biological studies of green sulfur bacteria.
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spelling pubmed-38422732013-12-05 Gene Expression System in Green Sulfur Bacteria by Conjugative Plasmid Transfer Azai, Chihiro Harada, Jiro Oh-oka, Hirozo PLoS One Research Article Gene transfer and expression systems in green sulfur bacteria were established by bacterial conjugation with Escherichia coli. Conjugative plasmid transfer from E. coli S17-1 to a thermophilic green sulfur bacterium, Chlorobaculum tepidum (formerly Chlorobium tepidum) WT2321, was executed with RSF1010-derivative broad-host-range plasmids, named pDSK5191 and pDSK5192, that confer erythromycin and streptomycin/spectinomycin resistance, respectively. The transconjugants harboring these plasmids were reproducibly obtained at a frequency of approximately 10(-5) by selection with erythromycin and a combination of streptomycin and spectinomycin, respectively. These plasmids were stably maintained in C. tepidum cells in the presence of these antibiotics. The plasmid transfer to another mesophilic green sulfur bacterium, C. limnaeum (formerly Chlorobium phaeobacteroides) RK-j-1, was also achieved with pDSK5192. The expression plasmid based on pDSK5191 was constructed by incorporating the upstream and downstream regions of the pscAB gene cluster on the C. tepidum genome, since these regions were considered to include a constitutive promoter and a ρ-independent terminator, respectively. Growth defections of the ∆cycA and ∆soxB mutants were completely rescued after introduction of pDSK5191-cycA and -soxB that were designed to express their complementary genes. On the other hand, pDSK5191-6xhis-pscAB, which incorporated the gene cluster of 6xhis-pscA and pscB, produced approximately four times more of the photosynthetic reaction center complex with His-tagged PscA as compared with that expressed in the genome by the conventional natural transformation method. This expression system, based on conjugative plasmid, would be applicable to general molecular biological studies of green sulfur bacteria. Public Library of Science 2013-11-27 /pmc/articles/PMC3842273/ /pubmed/24312414 http://dx.doi.org/10.1371/journal.pone.0082345 Text en © 2013 Azai et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Azai, Chihiro
Harada, Jiro
Oh-oka, Hirozo
Gene Expression System in Green Sulfur Bacteria by Conjugative Plasmid Transfer
title Gene Expression System in Green Sulfur Bacteria by Conjugative Plasmid Transfer
title_full Gene Expression System in Green Sulfur Bacteria by Conjugative Plasmid Transfer
title_fullStr Gene Expression System in Green Sulfur Bacteria by Conjugative Plasmid Transfer
title_full_unstemmed Gene Expression System in Green Sulfur Bacteria by Conjugative Plasmid Transfer
title_short Gene Expression System in Green Sulfur Bacteria by Conjugative Plasmid Transfer
title_sort gene expression system in green sulfur bacteria by conjugative plasmid transfer
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3842273/
https://www.ncbi.nlm.nih.gov/pubmed/24312414
http://dx.doi.org/10.1371/journal.pone.0082345
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