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Reference-Grade Genome and Large Linear Plasmid of Streptomyces rimosus: Pushing the Limits of Nanopore Sequencing

Streptomyces rimosus ATCC 10970 is the parental strain of industrial strains used for the commercial production of the important antibiotic oxytetracycline. As an actinobacterium with a large linear chromosome containing numerous long repeat regions, high GC content, and a single giant linear plasmi...

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Autores principales: Slemc, Lucija, Jakše, Jernej, Filisetti, Alessandro, Baranasic, Damir, Rodríguez-García, Antonio, Del Carratore, Francesco, Marino, Stefano Maria, Zucko, Jurica, Starcevic, Antonio, Šala, Martin, Pérez-Bonilla, Mercedes, Sánchez-Hidalgo, Marina, González, Ignacio, Reyes, Fernando, Genilloud, Olga, Springthorpe, Vicki, Goranovič, Dušan, Kosec, Gregor, Thomas, Gavin H., Lucrezia, Davide De, Petković, Hrvoje, Tome, Miha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9045324/
https://www.ncbi.nlm.nih.gov/pubmed/35377231
http://dx.doi.org/10.1128/spectrum.02434-21
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author Slemc, Lucija
Jakše, Jernej
Filisetti, Alessandro
Baranasic, Damir
Rodríguez-García, Antonio
Del Carratore, Francesco
Marino, Stefano Maria
Zucko, Jurica
Starcevic, Antonio
Šala, Martin
Pérez-Bonilla, Mercedes
Sánchez-Hidalgo, Marina
González, Ignacio
Reyes, Fernando
Genilloud, Olga
Springthorpe, Vicki
Goranovič, Dušan
Kosec, Gregor
Thomas, Gavin H.
Lucrezia, Davide De
Petković, Hrvoje
Tome, Miha
author_facet Slemc, Lucija
Jakše, Jernej
Filisetti, Alessandro
Baranasic, Damir
Rodríguez-García, Antonio
Del Carratore, Francesco
Marino, Stefano Maria
Zucko, Jurica
Starcevic, Antonio
Šala, Martin
Pérez-Bonilla, Mercedes
Sánchez-Hidalgo, Marina
González, Ignacio
Reyes, Fernando
Genilloud, Olga
Springthorpe, Vicki
Goranovič, Dušan
Kosec, Gregor
Thomas, Gavin H.
Lucrezia, Davide De
Petković, Hrvoje
Tome, Miha
author_sort Slemc, Lucija
collection PubMed
description Streptomyces rimosus ATCC 10970 is the parental strain of industrial strains used for the commercial production of the important antibiotic oxytetracycline. As an actinobacterium with a large linear chromosome containing numerous long repeat regions, high GC content, and a single giant linear plasmid (GLP), these genomes are challenging to assemble. Here, we apply a hybrid sequencing approach relying on the combination of short- and long-read next-generation sequencing platforms and whole-genome restriction analysis by using pulsed-field gel electrophoresis (PFGE) to produce a high-quality reference genome for this biotechnologically important bacterium. By using PFGE to separate and isolate plasmid DNA from chromosomal DNA, we successfully sequenced the GLP using Nanopore data alone. Using this approach, we compared the sequence of GLP in the parent strain ATCC 10970 with those found in two semi-industrial progenitor strains, R6-500 and M4018. Sequencing of the GLP of these three S. rimosus strains shed light on several rearrangements accompanied by transposase genes, suggesting that transposases play an important role in plasmid and genome plasticity in S. rimosus. The polished annotation of secondary metabolite biosynthetic pathways compared to metabolite analysis in the ATCC 10970 strain also refined our knowledge of the secondary metabolite arsenal of these strains. The proposed methodology is highly applicable to a variety of sequencing projects, as evidenced by the reliable assemblies obtained. IMPORTANCE The genomes of Streptomyces species are difficult to assemble due to long repeats, extrachromosomal elements (giant linear plasmids [GLPs]), rearrangements, and high GC content. To improve the quality of the S. rimosus ATCC 10970 genome, producer of oxytetracycline, we validated the assembly of GLPs by applying a new approach to combine pulsed-field gel electrophoresis separation and GLP isolation and sequenced the isolated GLP with Oxford Nanopore technology. By examining the sequenced plasmids of ATCC 10970 and two industrial progenitor strains, R6-500 and M4018, we identified large GLP rearrangements. Analysis of the assembled plasmid sequences shed light on the role of transposases in genome plasticity of this species. The new methodological approach developed for Nanopore sequencing is highly applicable to a variety of sequencing projects. In addition, we present the annotated reference genome sequence of ATCC 10970 with a detailed analysis of the biosynthetic gene clusters.
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spelling pubmed-90453242022-04-28 Reference-Grade Genome and Large Linear Plasmid of Streptomyces rimosus: Pushing the Limits of Nanopore Sequencing Slemc, Lucija Jakše, Jernej Filisetti, Alessandro Baranasic, Damir Rodríguez-García, Antonio Del Carratore, Francesco Marino, Stefano Maria Zucko, Jurica Starcevic, Antonio Šala, Martin Pérez-Bonilla, Mercedes Sánchez-Hidalgo, Marina González, Ignacio Reyes, Fernando Genilloud, Olga Springthorpe, Vicki Goranovič, Dušan Kosec, Gregor Thomas, Gavin H. Lucrezia, Davide De Petković, Hrvoje Tome, Miha Microbiol Spectr Research Article Streptomyces rimosus ATCC 10970 is the parental strain of industrial strains used for the commercial production of the important antibiotic oxytetracycline. As an actinobacterium with a large linear chromosome containing numerous long repeat regions, high GC content, and a single giant linear plasmid (GLP), these genomes are challenging to assemble. Here, we apply a hybrid sequencing approach relying on the combination of short- and long-read next-generation sequencing platforms and whole-genome restriction analysis by using pulsed-field gel electrophoresis (PFGE) to produce a high-quality reference genome for this biotechnologically important bacterium. By using PFGE to separate and isolate plasmid DNA from chromosomal DNA, we successfully sequenced the GLP using Nanopore data alone. Using this approach, we compared the sequence of GLP in the parent strain ATCC 10970 with those found in two semi-industrial progenitor strains, R6-500 and M4018. Sequencing of the GLP of these three S. rimosus strains shed light on several rearrangements accompanied by transposase genes, suggesting that transposases play an important role in plasmid and genome plasticity in S. rimosus. The polished annotation of secondary metabolite biosynthetic pathways compared to metabolite analysis in the ATCC 10970 strain also refined our knowledge of the secondary metabolite arsenal of these strains. The proposed methodology is highly applicable to a variety of sequencing projects, as evidenced by the reliable assemblies obtained. IMPORTANCE The genomes of Streptomyces species are difficult to assemble due to long repeats, extrachromosomal elements (giant linear plasmids [GLPs]), rearrangements, and high GC content. To improve the quality of the S. rimosus ATCC 10970 genome, producer of oxytetracycline, we validated the assembly of GLPs by applying a new approach to combine pulsed-field gel electrophoresis separation and GLP isolation and sequenced the isolated GLP with Oxford Nanopore technology. By examining the sequenced plasmids of ATCC 10970 and two industrial progenitor strains, R6-500 and M4018, we identified large GLP rearrangements. Analysis of the assembled plasmid sequences shed light on the role of transposases in genome plasticity of this species. The new methodological approach developed for Nanopore sequencing is highly applicable to a variety of sequencing projects. In addition, we present the annotated reference genome sequence of ATCC 10970 with a detailed analysis of the biosynthetic gene clusters. American Society for Microbiology 2022-04-04 /pmc/articles/PMC9045324/ /pubmed/35377231 http://dx.doi.org/10.1128/spectrum.02434-21 Text en Copyright © 2022 Slemc 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
Slemc, Lucija
Jakše, Jernej
Filisetti, Alessandro
Baranasic, Damir
Rodríguez-García, Antonio
Del Carratore, Francesco
Marino, Stefano Maria
Zucko, Jurica
Starcevic, Antonio
Šala, Martin
Pérez-Bonilla, Mercedes
Sánchez-Hidalgo, Marina
González, Ignacio
Reyes, Fernando
Genilloud, Olga
Springthorpe, Vicki
Goranovič, Dušan
Kosec, Gregor
Thomas, Gavin H.
Lucrezia, Davide De
Petković, Hrvoje
Tome, Miha
Reference-Grade Genome and Large Linear Plasmid of Streptomyces rimosus: Pushing the Limits of Nanopore Sequencing
title Reference-Grade Genome and Large Linear Plasmid of Streptomyces rimosus: Pushing the Limits of Nanopore Sequencing
title_full Reference-Grade Genome and Large Linear Plasmid of Streptomyces rimosus: Pushing the Limits of Nanopore Sequencing
title_fullStr Reference-Grade Genome and Large Linear Plasmid of Streptomyces rimosus: Pushing the Limits of Nanopore Sequencing
title_full_unstemmed Reference-Grade Genome and Large Linear Plasmid of Streptomyces rimosus: Pushing the Limits of Nanopore Sequencing
title_short Reference-Grade Genome and Large Linear Plasmid of Streptomyces rimosus: Pushing the Limits of Nanopore Sequencing
title_sort reference-grade genome and large linear plasmid of streptomyces rimosus: pushing the limits of nanopore sequencing
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9045324/
https://www.ncbi.nlm.nih.gov/pubmed/35377231
http://dx.doi.org/10.1128/spectrum.02434-21
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