The fungal-specific β-glucan-binding lectin FGB1 alters cell-wall composition and suppresses glucan-triggered immunity in plants

β-glucans derived from fungal cell walls can trigger immune responses in animals, yet their roles in plant-fungal interactions are less well known. Here, Wawraet al. show that the FGB1 proteins, secreted by the fungal endophyte P. indica, can alter fungal cell wall composition and suppress immune re...

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Autores principales: Stephan Wawra, Philipp Fesel, Heidi Widmer, Malte Timm, Jürgen Seibel, Lisa Leson, Leona Kesseler, Robin Nostadt, Magdalena Hilbert, Gregor Langen, Alga Zuccaro
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/e0c2d3759dff43c5a4b4e62979e2d74a
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spelling oai:doaj.org-article:e0c2d3759dff43c5a4b4e62979e2d74a2021-12-02T14:39:34ZThe fungal-specific β-glucan-binding lectin FGB1 alters cell-wall composition and suppresses glucan-triggered immunity in plants10.1038/ncomms131882041-1723https://doaj.org/article/e0c2d3759dff43c5a4b4e62979e2d74a2016-10-01T00:00:00Zhttps://doi.org/10.1038/ncomms13188https://doaj.org/toc/2041-1723β-glucans derived from fungal cell walls can trigger immune responses in animals, yet their roles in plant-fungal interactions are less well known. Here, Wawraet al. show that the FGB1 proteins, secreted by the fungal endophyte P. indica, can alter fungal cell wall composition and suppress immune responses in plants.Stephan WawraPhilipp FeselHeidi WidmerMalte TimmJürgen SeibelLisa LesonLeona KesselerRobin NostadtMagdalena HilbertGregor LangenAlga ZuccaroNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-11 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Stephan Wawra
Philipp Fesel
Heidi Widmer
Malte Timm
Jürgen Seibel
Lisa Leson
Leona Kesseler
Robin Nostadt
Magdalena Hilbert
Gregor Langen
Alga Zuccaro
The fungal-specific β-glucan-binding lectin FGB1 alters cell-wall composition and suppresses glucan-triggered immunity in plants
description β-glucans derived from fungal cell walls can trigger immune responses in animals, yet their roles in plant-fungal interactions are less well known. Here, Wawraet al. show that the FGB1 proteins, secreted by the fungal endophyte P. indica, can alter fungal cell wall composition and suppress immune responses in plants.
format article
author Stephan Wawra
Philipp Fesel
Heidi Widmer
Malte Timm
Jürgen Seibel
Lisa Leson
Leona Kesseler
Robin Nostadt
Magdalena Hilbert
Gregor Langen
Alga Zuccaro
author_facet Stephan Wawra
Philipp Fesel
Heidi Widmer
Malte Timm
Jürgen Seibel
Lisa Leson
Leona Kesseler
Robin Nostadt
Magdalena Hilbert
Gregor Langen
Alga Zuccaro
author_sort Stephan Wawra
title The fungal-specific β-glucan-binding lectin FGB1 alters cell-wall composition and suppresses glucan-triggered immunity in plants
title_short The fungal-specific β-glucan-binding lectin FGB1 alters cell-wall composition and suppresses glucan-triggered immunity in plants
title_full The fungal-specific β-glucan-binding lectin FGB1 alters cell-wall composition and suppresses glucan-triggered immunity in plants
title_fullStr The fungal-specific β-glucan-binding lectin FGB1 alters cell-wall composition and suppresses glucan-triggered immunity in plants
title_full_unstemmed The fungal-specific β-glucan-binding lectin FGB1 alters cell-wall composition and suppresses glucan-triggered immunity in plants
title_sort fungal-specific β-glucan-binding lectin fgb1 alters cell-wall composition and suppresses glucan-triggered immunity in plants
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/e0c2d3759dff43c5a4b4e62979e2d74a
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