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A complete toolset for the study of Ustilago bromivora and Brachypodium sp. as a fungal-temperate grass pathosystem

Due to their economic relevance, the study of plant pathogen interactions is of importance. However, elucidating these interactions and their underlying molecular mechanisms remains challenging since both host and pathogen need to be fully genetically accessible organisms. Here we present milestones...

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Autores principales: Rabe, Franziska, Bosch, Jason, Stirnberg, Alexandra, Guse, Tilo, Bauer, Lisa, Seitner, Denise, Rabanal, Fernando A, Czedik-Eysenberg, Angelika, Uhse, Simon, Bindics, Janos, Genenncher, Bianca, Navarrete, Fernando, Kellner, Ronny, Ekker, Heinz, Kumlehn, Jochen, Vogel, John P, Gordon, Sean P, Marcel, Thierry C, Münsterkötter, Martin, Walter, Mathias C, Sieber, Christian MK, Mannhaupt, Gertrud, Güldener, Ulrich, Kahmann, Regine, Djamei, Armin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5106213/
https://www.ncbi.nlm.nih.gov/pubmed/27835569
http://dx.doi.org/10.7554/eLife.20522
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author Rabe, Franziska
Bosch, Jason
Stirnberg, Alexandra
Guse, Tilo
Bauer, Lisa
Seitner, Denise
Rabanal, Fernando A
Czedik-Eysenberg, Angelika
Uhse, Simon
Bindics, Janos
Genenncher, Bianca
Navarrete, Fernando
Kellner, Ronny
Ekker, Heinz
Kumlehn, Jochen
Vogel, John P
Gordon, Sean P
Marcel, Thierry C
Münsterkötter, Martin
Walter, Mathias C
Sieber, Christian MK
Mannhaupt, Gertrud
Güldener, Ulrich
Kahmann, Regine
Djamei, Armin
author_facet Rabe, Franziska
Bosch, Jason
Stirnberg, Alexandra
Guse, Tilo
Bauer, Lisa
Seitner, Denise
Rabanal, Fernando A
Czedik-Eysenberg, Angelika
Uhse, Simon
Bindics, Janos
Genenncher, Bianca
Navarrete, Fernando
Kellner, Ronny
Ekker, Heinz
Kumlehn, Jochen
Vogel, John P
Gordon, Sean P
Marcel, Thierry C
Münsterkötter, Martin
Walter, Mathias C
Sieber, Christian MK
Mannhaupt, Gertrud
Güldener, Ulrich
Kahmann, Regine
Djamei, Armin
author_sort Rabe, Franziska
collection PubMed
description Due to their economic relevance, the study of plant pathogen interactions is of importance. However, elucidating these interactions and their underlying molecular mechanisms remains challenging since both host and pathogen need to be fully genetically accessible organisms. Here we present milestones in the establishment of a new biotrophic model pathosystem: Ustilago bromivora and Brachypodium sp. We provide a complete toolset, including an annotated fungal genome and methods for genetic manipulation of the fungus and its host plant. This toolset will enable researchers to easily study biotrophic interactions at the molecular level on both the pathogen and the host side. Moreover, our research on the fungal life cycle revealed a mating type bias phenomenon. U. bromivora harbors a haplo-lethal allele that is linked to one mating type region. As a result, the identified mating type bias strongly promotes inbreeding, which we consider to be a potential speciation driver. DOI: http://dx.doi.org/10.7554/eLife.20522.001
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spelling pubmed-51062132016-11-14 A complete toolset for the study of Ustilago bromivora and Brachypodium sp. as a fungal-temperate grass pathosystem Rabe, Franziska Bosch, Jason Stirnberg, Alexandra Guse, Tilo Bauer, Lisa Seitner, Denise Rabanal, Fernando A Czedik-Eysenberg, Angelika Uhse, Simon Bindics, Janos Genenncher, Bianca Navarrete, Fernando Kellner, Ronny Ekker, Heinz Kumlehn, Jochen Vogel, John P Gordon, Sean P Marcel, Thierry C Münsterkötter, Martin Walter, Mathias C Sieber, Christian MK Mannhaupt, Gertrud Güldener, Ulrich Kahmann, Regine Djamei, Armin eLife Microbiology and Infectious Disease Due to their economic relevance, the study of plant pathogen interactions is of importance. However, elucidating these interactions and their underlying molecular mechanisms remains challenging since both host and pathogen need to be fully genetically accessible organisms. Here we present milestones in the establishment of a new biotrophic model pathosystem: Ustilago bromivora and Brachypodium sp. We provide a complete toolset, including an annotated fungal genome and methods for genetic manipulation of the fungus and its host plant. This toolset will enable researchers to easily study biotrophic interactions at the molecular level on both the pathogen and the host side. Moreover, our research on the fungal life cycle revealed a mating type bias phenomenon. U. bromivora harbors a haplo-lethal allele that is linked to one mating type region. As a result, the identified mating type bias strongly promotes inbreeding, which we consider to be a potential speciation driver. DOI: http://dx.doi.org/10.7554/eLife.20522.001 eLife Sciences Publications, Ltd 2016-11-11 /pmc/articles/PMC5106213/ /pubmed/27835569 http://dx.doi.org/10.7554/eLife.20522 Text en http://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 public domain dedication (http://creativecommons.org/publicdomain/zero/1.0/) .
spellingShingle Microbiology and Infectious Disease
Rabe, Franziska
Bosch, Jason
Stirnberg, Alexandra
Guse, Tilo
Bauer, Lisa
Seitner, Denise
Rabanal, Fernando A
Czedik-Eysenberg, Angelika
Uhse, Simon
Bindics, Janos
Genenncher, Bianca
Navarrete, Fernando
Kellner, Ronny
Ekker, Heinz
Kumlehn, Jochen
Vogel, John P
Gordon, Sean P
Marcel, Thierry C
Münsterkötter, Martin
Walter, Mathias C
Sieber, Christian MK
Mannhaupt, Gertrud
Güldener, Ulrich
Kahmann, Regine
Djamei, Armin
A complete toolset for the study of Ustilago bromivora and Brachypodium sp. as a fungal-temperate grass pathosystem
title A complete toolset for the study of Ustilago bromivora and Brachypodium sp. as a fungal-temperate grass pathosystem
title_full A complete toolset for the study of Ustilago bromivora and Brachypodium sp. as a fungal-temperate grass pathosystem
title_fullStr A complete toolset for the study of Ustilago bromivora and Brachypodium sp. as a fungal-temperate grass pathosystem
title_full_unstemmed A complete toolset for the study of Ustilago bromivora and Brachypodium sp. as a fungal-temperate grass pathosystem
title_short A complete toolset for the study of Ustilago bromivora and Brachypodium sp. as a fungal-temperate grass pathosystem
title_sort complete toolset for the study of ustilago bromivora and brachypodium sp. as a fungal-temperate grass pathosystem
topic Microbiology and Infectious Disease
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5106213/
https://www.ncbi.nlm.nih.gov/pubmed/27835569
http://dx.doi.org/10.7554/eLife.20522
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