Ectomycorrhizal ecology is imprinted in the genome of the dominant symbiotic fungus Cenococcum geophilum

The ascomycete Cenococcum geophilum is a beneficial mycorrhizal symbiont found frequently on tree roots. Here the authors use comparative genomics and transcriptomics to define genomic signatures that differentiate the beneficial C. geophilumfrom its saprotrophic and pathogenic relatives.

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Autores principales: Martina Peter, Annegret Kohler, Robin A. Ohm, Alan Kuo, Jennifer Krützmann, Emmanuelle Morin, Matthias Arend, Kerrie W. Barry, Manfred Binder, Cindy Choi, Alicia Clum, Alex Copeland, Nadine Grisel, Sajeet Haridas, Tabea Kipfer, Kurt LaButti, Erika Lindquist, Anna Lipzen, Renaud Maire, Barbara Meier, Sirma Mihaltcheva, Virginie Molinier, Claude Murat, Stefanie Pöggeler, C. Alisha Quandt, Christoph Sperisen, Andrew Tritt, Emilie Tisserant, Pedro W. Crous, Bernard Henrissat, Uwe Nehls, Simon Egli, Joseph W. Spatafora, Igor V. Grigoriev, Francis M. Martin
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/634434af4f12403ca566c9624223d696
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spelling oai:doaj.org-article:634434af4f12403ca566c9624223d6962021-12-02T15:35:00ZEctomycorrhizal ecology is imprinted in the genome of the dominant symbiotic fungus Cenococcum geophilum10.1038/ncomms126622041-1723https://doaj.org/article/634434af4f12403ca566c9624223d6962016-09-01T00:00:00Zhttps://doi.org/10.1038/ncomms12662https://doaj.org/toc/2041-1723The ascomycete Cenococcum geophilum is a beneficial mycorrhizal symbiont found frequently on tree roots. Here the authors use comparative genomics and transcriptomics to define genomic signatures that differentiate the beneficial C. geophilumfrom its saprotrophic and pathogenic relatives.Martina PeterAnnegret KohlerRobin A. OhmAlan KuoJennifer KrützmannEmmanuelle MorinMatthias ArendKerrie W. BarryManfred BinderCindy ChoiAlicia ClumAlex CopelandNadine GriselSajeet HaridasTabea KipferKurt LaButtiErika LindquistAnna LipzenRenaud MaireBarbara MeierSirma MihaltchevaVirginie MolinierClaude MuratStefanie PöggelerC. Alisha QuandtChristoph SperisenAndrew TrittEmilie TisserantPedro W. CrousBernard HenrissatUwe NehlsSimon EgliJoseph W. SpataforaIgor V. GrigorievFrancis M. MartinNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-15 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Martina Peter
Annegret Kohler
Robin A. Ohm
Alan Kuo
Jennifer Krützmann
Emmanuelle Morin
Matthias Arend
Kerrie W. Barry
Manfred Binder
Cindy Choi
Alicia Clum
Alex Copeland
Nadine Grisel
Sajeet Haridas
Tabea Kipfer
Kurt LaButti
Erika Lindquist
Anna Lipzen
Renaud Maire
Barbara Meier
Sirma Mihaltcheva
Virginie Molinier
Claude Murat
Stefanie Pöggeler
C. Alisha Quandt
Christoph Sperisen
Andrew Tritt
Emilie Tisserant
Pedro W. Crous
Bernard Henrissat
Uwe Nehls
Simon Egli
Joseph W. Spatafora
Igor V. Grigoriev
Francis M. Martin
Ectomycorrhizal ecology is imprinted in the genome of the dominant symbiotic fungus Cenococcum geophilum
description The ascomycete Cenococcum geophilum is a beneficial mycorrhizal symbiont found frequently on tree roots. Here the authors use comparative genomics and transcriptomics to define genomic signatures that differentiate the beneficial C. geophilumfrom its saprotrophic and pathogenic relatives.
format article
author Martina Peter
Annegret Kohler
Robin A. Ohm
Alan Kuo
Jennifer Krützmann
Emmanuelle Morin
Matthias Arend
Kerrie W. Barry
Manfred Binder
Cindy Choi
Alicia Clum
Alex Copeland
Nadine Grisel
Sajeet Haridas
Tabea Kipfer
Kurt LaButti
Erika Lindquist
Anna Lipzen
Renaud Maire
Barbara Meier
Sirma Mihaltcheva
Virginie Molinier
Claude Murat
Stefanie Pöggeler
C. Alisha Quandt
Christoph Sperisen
Andrew Tritt
Emilie Tisserant
Pedro W. Crous
Bernard Henrissat
Uwe Nehls
Simon Egli
Joseph W. Spatafora
Igor V. Grigoriev
Francis M. Martin
author_facet Martina Peter
Annegret Kohler
Robin A. Ohm
Alan Kuo
Jennifer Krützmann
Emmanuelle Morin
Matthias Arend
Kerrie W. Barry
Manfred Binder
Cindy Choi
Alicia Clum
Alex Copeland
Nadine Grisel
Sajeet Haridas
Tabea Kipfer
Kurt LaButti
Erika Lindquist
Anna Lipzen
Renaud Maire
Barbara Meier
Sirma Mihaltcheva
Virginie Molinier
Claude Murat
Stefanie Pöggeler
C. Alisha Quandt
Christoph Sperisen
Andrew Tritt
Emilie Tisserant
Pedro W. Crous
Bernard Henrissat
Uwe Nehls
Simon Egli
Joseph W. Spatafora
Igor V. Grigoriev
Francis M. Martin
author_sort Martina Peter
title Ectomycorrhizal ecology is imprinted in the genome of the dominant symbiotic fungus Cenococcum geophilum
title_short Ectomycorrhizal ecology is imprinted in the genome of the dominant symbiotic fungus Cenococcum geophilum
title_full Ectomycorrhizal ecology is imprinted in the genome of the dominant symbiotic fungus Cenococcum geophilum
title_fullStr Ectomycorrhizal ecology is imprinted in the genome of the dominant symbiotic fungus Cenococcum geophilum
title_full_unstemmed Ectomycorrhizal ecology is imprinted in the genome of the dominant symbiotic fungus Cenococcum geophilum
title_sort ectomycorrhizal ecology is imprinted in the genome of the dominant symbiotic fungus cenococcum geophilum
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/634434af4f12403ca566c9624223d696
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