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Analysis of the Phlebiopsis gigantea Genome, Transcriptome and Secretome Provides Insight into Its Pioneer Colonization Strategies of Wood

Collectively classified as white-rot fungi, certain basidiomycetes efficiently degrade the major structural polymers of wood cell walls. A small subset of these Agaricomycetes, exemplified by Phlebiopsis gigantea, is capable of colonizing freshly exposed conifer sapwood despite its high content of e...

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Autores principales: Hori, Chiaki, Ishida, Takuya, Igarashi, Kiyohiko, Samejima, Masahiro, Suzuki, Hitoshi, Master, Emma, Ferreira, Patricia, Ruiz-Dueñas, Francisco J., Held, Benjamin, Canessa, Paulo, Larrondo, Luis F., Schmoll, Monika, Druzhinina, Irina S., Kubicek, Christian P., Gaskell, Jill A., Kersten, Phil, St. John, Franz, Glasner, Jeremy, Sabat, Grzegorz, Splinter BonDurant, Sandra, Syed, Khajamohiddin, Yadav, Jagjit, Mgbeahuruike, Anthony C., Kovalchuk, Andriy, Asiegbu, Fred O., Lackner, Gerald, Hoffmeister, Dirk, Rencoret, Jorge, Gutiérrez, Ana, Sun, Hui, Lindquist, Erika, Barry, Kerrie, Riley, Robert, Grigoriev, Igor V., Henrissat, Bernard, Kües, Ursula, Berka, Randy M., Martínez, Angel T., Covert, Sarah F., Blanchette, Robert A., Cullen, Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4256170/
https://www.ncbi.nlm.nih.gov/pubmed/25474575
http://dx.doi.org/10.1371/journal.pgen.1004759
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author Hori, Chiaki
Ishida, Takuya
Igarashi, Kiyohiko
Samejima, Masahiro
Suzuki, Hitoshi
Master, Emma
Ferreira, Patricia
Ruiz-Dueñas, Francisco J.
Held, Benjamin
Canessa, Paulo
Larrondo, Luis F.
Schmoll, Monika
Druzhinina, Irina S.
Kubicek, Christian P.
Gaskell, Jill A.
Kersten, Phil
St. John, Franz
Glasner, Jeremy
Sabat, Grzegorz
Splinter BonDurant, Sandra
Syed, Khajamohiddin
Yadav, Jagjit
Mgbeahuruike, Anthony C.
Kovalchuk, Andriy
Asiegbu, Fred O.
Lackner, Gerald
Hoffmeister, Dirk
Rencoret, Jorge
Gutiérrez, Ana
Sun, Hui
Lindquist, Erika
Barry, Kerrie
Riley, Robert
Grigoriev, Igor V.
Henrissat, Bernard
Kües, Ursula
Berka, Randy M.
Martínez, Angel T.
Covert, Sarah F.
Blanchette, Robert A.
Cullen, Daniel
author_facet Hori, Chiaki
Ishida, Takuya
Igarashi, Kiyohiko
Samejima, Masahiro
Suzuki, Hitoshi
Master, Emma
Ferreira, Patricia
Ruiz-Dueñas, Francisco J.
Held, Benjamin
Canessa, Paulo
Larrondo, Luis F.
Schmoll, Monika
Druzhinina, Irina S.
Kubicek, Christian P.
Gaskell, Jill A.
Kersten, Phil
St. John, Franz
Glasner, Jeremy
Sabat, Grzegorz
Splinter BonDurant, Sandra
Syed, Khajamohiddin
Yadav, Jagjit
Mgbeahuruike, Anthony C.
Kovalchuk, Andriy
Asiegbu, Fred O.
Lackner, Gerald
Hoffmeister, Dirk
Rencoret, Jorge
Gutiérrez, Ana
Sun, Hui
Lindquist, Erika
Barry, Kerrie
Riley, Robert
Grigoriev, Igor V.
Henrissat, Bernard
Kües, Ursula
Berka, Randy M.
Martínez, Angel T.
Covert, Sarah F.
Blanchette, Robert A.
Cullen, Daniel
author_sort Hori, Chiaki
collection PubMed
description Collectively classified as white-rot fungi, certain basidiomycetes efficiently degrade the major structural polymers of wood cell walls. A small subset of these Agaricomycetes, exemplified by Phlebiopsis gigantea, is capable of colonizing freshly exposed conifer sapwood despite its high content of extractives, which retards the establishment of other fungal species. The mechanism(s) by which P. gigantea tolerates and metabolizes resinous compounds have not been explored. Here, we report the annotated P. gigantea genome and compare profiles of its transcriptome and secretome when cultured on fresh-cut versus solvent-extracted loblolly pine wood. The P. gigantea genome contains a conventional repertoire of hydrolase genes involved in cellulose/hemicellulose degradation, whose patterns of expression were relatively unperturbed by the absence of extractives. The expression of genes typically ascribed to lignin degradation was also largely unaffected. In contrast, genes likely involved in the transformation and detoxification of wood extractives were highly induced in its presence. Their products included an ABC transporter, lipases, cytochrome P450s, glutathione S-transferase and aldehyde dehydrogenase. Other regulated genes of unknown function and several constitutively expressed genes are also likely involved in P. gigantea's extractives metabolism. These results contribute to our fundamental understanding of pioneer colonization of conifer wood and provide insight into the diverse chemistries employed by fungi in carbon cycling processes.
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spelling pubmed-42561702014-12-11 Analysis of the Phlebiopsis gigantea Genome, Transcriptome and Secretome Provides Insight into Its Pioneer Colonization Strategies of Wood Hori, Chiaki Ishida, Takuya Igarashi, Kiyohiko Samejima, Masahiro Suzuki, Hitoshi Master, Emma Ferreira, Patricia Ruiz-Dueñas, Francisco J. Held, Benjamin Canessa, Paulo Larrondo, Luis F. Schmoll, Monika Druzhinina, Irina S. Kubicek, Christian P. Gaskell, Jill A. Kersten, Phil St. John, Franz Glasner, Jeremy Sabat, Grzegorz Splinter BonDurant, Sandra Syed, Khajamohiddin Yadav, Jagjit Mgbeahuruike, Anthony C. Kovalchuk, Andriy Asiegbu, Fred O. Lackner, Gerald Hoffmeister, Dirk Rencoret, Jorge Gutiérrez, Ana Sun, Hui Lindquist, Erika Barry, Kerrie Riley, Robert Grigoriev, Igor V. Henrissat, Bernard Kües, Ursula Berka, Randy M. Martínez, Angel T. Covert, Sarah F. Blanchette, Robert A. Cullen, Daniel PLoS Genet Research Article Collectively classified as white-rot fungi, certain basidiomycetes efficiently degrade the major structural polymers of wood cell walls. A small subset of these Agaricomycetes, exemplified by Phlebiopsis gigantea, is capable of colonizing freshly exposed conifer sapwood despite its high content of extractives, which retards the establishment of other fungal species. The mechanism(s) by which P. gigantea tolerates and metabolizes resinous compounds have not been explored. Here, we report the annotated P. gigantea genome and compare profiles of its transcriptome and secretome when cultured on fresh-cut versus solvent-extracted loblolly pine wood. The P. gigantea genome contains a conventional repertoire of hydrolase genes involved in cellulose/hemicellulose degradation, whose patterns of expression were relatively unperturbed by the absence of extractives. The expression of genes typically ascribed to lignin degradation was also largely unaffected. In contrast, genes likely involved in the transformation and detoxification of wood extractives were highly induced in its presence. Their products included an ABC transporter, lipases, cytochrome P450s, glutathione S-transferase and aldehyde dehydrogenase. Other regulated genes of unknown function and several constitutively expressed genes are also likely involved in P. gigantea's extractives metabolism. These results contribute to our fundamental understanding of pioneer colonization of conifer wood and provide insight into the diverse chemistries employed by fungi in carbon cycling processes. Public Library of Science 2014-12-04 /pmc/articles/PMC4256170/ /pubmed/25474575 http://dx.doi.org/10.1371/journal.pgen.1004759 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
Hori, Chiaki
Ishida, Takuya
Igarashi, Kiyohiko
Samejima, Masahiro
Suzuki, Hitoshi
Master, Emma
Ferreira, Patricia
Ruiz-Dueñas, Francisco J.
Held, Benjamin
Canessa, Paulo
Larrondo, Luis F.
Schmoll, Monika
Druzhinina, Irina S.
Kubicek, Christian P.
Gaskell, Jill A.
Kersten, Phil
St. John, Franz
Glasner, Jeremy
Sabat, Grzegorz
Splinter BonDurant, Sandra
Syed, Khajamohiddin
Yadav, Jagjit
Mgbeahuruike, Anthony C.
Kovalchuk, Andriy
Asiegbu, Fred O.
Lackner, Gerald
Hoffmeister, Dirk
Rencoret, Jorge
Gutiérrez, Ana
Sun, Hui
Lindquist, Erika
Barry, Kerrie
Riley, Robert
Grigoriev, Igor V.
Henrissat, Bernard
Kües, Ursula
Berka, Randy M.
Martínez, Angel T.
Covert, Sarah F.
Blanchette, Robert A.
Cullen, Daniel
Analysis of the Phlebiopsis gigantea Genome, Transcriptome and Secretome Provides Insight into Its Pioneer Colonization Strategies of Wood
title Analysis of the Phlebiopsis gigantea Genome, Transcriptome and Secretome Provides Insight into Its Pioneer Colonization Strategies of Wood
title_full Analysis of the Phlebiopsis gigantea Genome, Transcriptome and Secretome Provides Insight into Its Pioneer Colonization Strategies of Wood
title_fullStr Analysis of the Phlebiopsis gigantea Genome, Transcriptome and Secretome Provides Insight into Its Pioneer Colonization Strategies of Wood
title_full_unstemmed Analysis of the Phlebiopsis gigantea Genome, Transcriptome and Secretome Provides Insight into Its Pioneer Colonization Strategies of Wood
title_short Analysis of the Phlebiopsis gigantea Genome, Transcriptome and Secretome Provides Insight into Its Pioneer Colonization Strategies of Wood
title_sort analysis of the phlebiopsis gigantea genome, transcriptome and secretome provides insight into its pioneer colonization strategies of wood
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4256170/
https://www.ncbi.nlm.nih.gov/pubmed/25474575
http://dx.doi.org/10.1371/journal.pgen.1004759
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