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The Genome of the Generalist Plant Pathogen Fusarium avenaceum Is Enriched with Genes Involved in Redox, Signaling and Secondary Metabolism

Fusarium avenaceum is a fungus commonly isolated from soil and associated with a wide range of host plants. We present here three genome sequences of F. avenaceum, one isolated from barley in Finland and two from spring and winter wheat in Canada. The sizes of the three genomes range from 41.6–43.1...

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Autores principales: Lysøe, Erik, Harris, Linda J., Walkowiak, Sean, Subramaniam, Rajagopal, Divon, Hege H., Riiser, Even S., Llorens, Carlos, Gabaldón, Toni, Kistler, H. Corby, Jonkers, Wilfried, Kolseth, Anna-Karin, Nielsen, Kristian F., Thrane, Ulf, Frandsen, Rasmus J. N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4237347/
https://www.ncbi.nlm.nih.gov/pubmed/25409087
http://dx.doi.org/10.1371/journal.pone.0112703
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author Lysøe, Erik
Harris, Linda J.
Walkowiak, Sean
Subramaniam, Rajagopal
Divon, Hege H.
Riiser, Even S.
Llorens, Carlos
Gabaldón, Toni
Kistler, H. Corby
Jonkers, Wilfried
Kolseth, Anna-Karin
Nielsen, Kristian F.
Thrane, Ulf
Frandsen, Rasmus J. N.
author_facet Lysøe, Erik
Harris, Linda J.
Walkowiak, Sean
Subramaniam, Rajagopal
Divon, Hege H.
Riiser, Even S.
Llorens, Carlos
Gabaldón, Toni
Kistler, H. Corby
Jonkers, Wilfried
Kolseth, Anna-Karin
Nielsen, Kristian F.
Thrane, Ulf
Frandsen, Rasmus J. N.
author_sort Lysøe, Erik
collection PubMed
description Fusarium avenaceum is a fungus commonly isolated from soil and associated with a wide range of host plants. We present here three genome sequences of F. avenaceum, one isolated from barley in Finland and two from spring and winter wheat in Canada. The sizes of the three genomes range from 41.6–43.1 MB, with 13217–13445 predicted protein-coding genes. Whole-genome analysis showed that the three genomes are highly syntenic, and share>95% gene orthologs. Comparative analysis to other sequenced Fusaria shows that F. avenaceum has a very large potential for producing secondary metabolites, with between 75 and 80 key enzymes belonging to the polyketide, non-ribosomal peptide, terpene, alkaloid and indole-diterpene synthase classes. In addition to known metabolites from F. avenaceum, fuscofusarin and JM-47 were detected for the first time in this species. Many protein families are expanded in F. avenaceum, such as transcription factors, and proteins involved in redox reactions and signal transduction, suggesting evolutionary adaptation to a diverse and cosmopolitan ecology. We found that 20% of all predicted proteins were considered to be secreted, supporting a life in the extracellular space during interaction with plant hosts.
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spelling pubmed-42373472014-11-21 The Genome of the Generalist Plant Pathogen Fusarium avenaceum Is Enriched with Genes Involved in Redox, Signaling and Secondary Metabolism Lysøe, Erik Harris, Linda J. Walkowiak, Sean Subramaniam, Rajagopal Divon, Hege H. Riiser, Even S. Llorens, Carlos Gabaldón, Toni Kistler, H. Corby Jonkers, Wilfried Kolseth, Anna-Karin Nielsen, Kristian F. Thrane, Ulf Frandsen, Rasmus J. N. PLoS One Research Article Fusarium avenaceum is a fungus commonly isolated from soil and associated with a wide range of host plants. We present here three genome sequences of F. avenaceum, one isolated from barley in Finland and two from spring and winter wheat in Canada. The sizes of the three genomes range from 41.6–43.1 MB, with 13217–13445 predicted protein-coding genes. Whole-genome analysis showed that the three genomes are highly syntenic, and share>95% gene orthologs. Comparative analysis to other sequenced Fusaria shows that F. avenaceum has a very large potential for producing secondary metabolites, with between 75 and 80 key enzymes belonging to the polyketide, non-ribosomal peptide, terpene, alkaloid and indole-diterpene synthase classes. In addition to known metabolites from F. avenaceum, fuscofusarin and JM-47 were detected for the first time in this species. Many protein families are expanded in F. avenaceum, such as transcription factors, and proteins involved in redox reactions and signal transduction, suggesting evolutionary adaptation to a diverse and cosmopolitan ecology. We found that 20% of all predicted proteins were considered to be secreted, supporting a life in the extracellular space during interaction with plant hosts. Public Library of Science 2014-11-19 /pmc/articles/PMC4237347/ /pubmed/25409087 http://dx.doi.org/10.1371/journal.pone.0112703 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Lysøe, Erik
Harris, Linda J.
Walkowiak, Sean
Subramaniam, Rajagopal
Divon, Hege H.
Riiser, Even S.
Llorens, Carlos
Gabaldón, Toni
Kistler, H. Corby
Jonkers, Wilfried
Kolseth, Anna-Karin
Nielsen, Kristian F.
Thrane, Ulf
Frandsen, Rasmus J. N.
The Genome of the Generalist Plant Pathogen Fusarium avenaceum Is Enriched with Genes Involved in Redox, Signaling and Secondary Metabolism
title The Genome of the Generalist Plant Pathogen Fusarium avenaceum Is Enriched with Genes Involved in Redox, Signaling and Secondary Metabolism
title_full The Genome of the Generalist Plant Pathogen Fusarium avenaceum Is Enriched with Genes Involved in Redox, Signaling and Secondary Metabolism
title_fullStr The Genome of the Generalist Plant Pathogen Fusarium avenaceum Is Enriched with Genes Involved in Redox, Signaling and Secondary Metabolism
title_full_unstemmed The Genome of the Generalist Plant Pathogen Fusarium avenaceum Is Enriched with Genes Involved in Redox, Signaling and Secondary Metabolism
title_short The Genome of the Generalist Plant Pathogen Fusarium avenaceum Is Enriched with Genes Involved in Redox, Signaling and Secondary Metabolism
title_sort genome of the generalist plant pathogen fusarium avenaceum is enriched with genes involved in redox, signaling and secondary metabolism
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4237347/
https://www.ncbi.nlm.nih.gov/pubmed/25409087
http://dx.doi.org/10.1371/journal.pone.0112703
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