A phenol-enriched cuticle is ancestral to lignin evolution in land plants

The phenolic polymer lignin is thought to have contributed to adaptation of early land plants to terrestrial environments. Here Renaultet al. show that moss, which does not produce lignin, contains an ancestral phenolic metabolism pathway that produces a phenol-enriched cuticle and prevents desiccat...

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Autores principales: Hugues Renault, Annette Alber, Nelly A. Horst, Alexandra Basilio Lopes, Eric A. Fich, Lucie Kriegshauser, Gertrud Wiedemann, Pascaline Ullmann, Laurence Herrgott, Mathieu Erhardt, Emmanuelle Pineau, Jürgen Ehlting, Martine Schmitt, Jocelyn K. C. Rose, Ralf Reski, Danièle Werck-Reichhart
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/867ea0f682b44076add9006ed0d9b915
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spelling oai:doaj.org-article:867ea0f682b44076add9006ed0d9b9152021-12-02T14:42:26ZA phenol-enriched cuticle is ancestral to lignin evolution in land plants10.1038/ncomms147132041-1723https://doaj.org/article/867ea0f682b44076add9006ed0d9b9152017-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms14713https://doaj.org/toc/2041-1723The phenolic polymer lignin is thought to have contributed to adaptation of early land plants to terrestrial environments. Here Renaultet al. show that moss, which does not produce lignin, contains an ancestral phenolic metabolism pathway that produces a phenol-enriched cuticle and prevents desiccation.Hugues RenaultAnnette AlberNelly A. HorstAlexandra Basilio LopesEric A. FichLucie KriegshauserGertrud WiedemannPascaline UllmannLaurence HerrgottMathieu ErhardtEmmanuelle PineauJürgen EhltingMartine SchmittJocelyn K. C. RoseRalf ReskiDanièle Werck-ReichhartNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-8 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Hugues Renault
Annette Alber
Nelly A. Horst
Alexandra Basilio Lopes
Eric A. Fich
Lucie Kriegshauser
Gertrud Wiedemann
Pascaline Ullmann
Laurence Herrgott
Mathieu Erhardt
Emmanuelle Pineau
Jürgen Ehlting
Martine Schmitt
Jocelyn K. C. Rose
Ralf Reski
Danièle Werck-Reichhart
A phenol-enriched cuticle is ancestral to lignin evolution in land plants
description The phenolic polymer lignin is thought to have contributed to adaptation of early land plants to terrestrial environments. Here Renaultet al. show that moss, which does not produce lignin, contains an ancestral phenolic metabolism pathway that produces a phenol-enriched cuticle and prevents desiccation.
format article
author Hugues Renault
Annette Alber
Nelly A. Horst
Alexandra Basilio Lopes
Eric A. Fich
Lucie Kriegshauser
Gertrud Wiedemann
Pascaline Ullmann
Laurence Herrgott
Mathieu Erhardt
Emmanuelle Pineau
Jürgen Ehlting
Martine Schmitt
Jocelyn K. C. Rose
Ralf Reski
Danièle Werck-Reichhart
author_facet Hugues Renault
Annette Alber
Nelly A. Horst
Alexandra Basilio Lopes
Eric A. Fich
Lucie Kriegshauser
Gertrud Wiedemann
Pascaline Ullmann
Laurence Herrgott
Mathieu Erhardt
Emmanuelle Pineau
Jürgen Ehlting
Martine Schmitt
Jocelyn K. C. Rose
Ralf Reski
Danièle Werck-Reichhart
author_sort Hugues Renault
title A phenol-enriched cuticle is ancestral to lignin evolution in land plants
title_short A phenol-enriched cuticle is ancestral to lignin evolution in land plants
title_full A phenol-enriched cuticle is ancestral to lignin evolution in land plants
title_fullStr A phenol-enriched cuticle is ancestral to lignin evolution in land plants
title_full_unstemmed A phenol-enriched cuticle is ancestral to lignin evolution in land plants
title_sort phenol-enriched cuticle is ancestral to lignin evolution in land plants
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/867ea0f682b44076add9006ed0d9b915
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