Two chemically distinct root lignin barriers control solute and water balance.

Détails

Ressource 1Télécharger: 33875659_BIB_9B754D3BD8A9.pdf (3234.31 [Ko])
Etat: Public
Version: Final published version
Licence: CC BY 4.0
ID Serval
serval:BIB_9B754D3BD8A9
Type
Article: article d'un périodique ou d'un magazine.
Collection
Publications
Institution
Titre
Two chemically distinct root lignin barriers control solute and water balance.
Périodique
Nature communications
Auteur⸱e⸱s
Reyt G., Ramakrishna P., Salas-González I., Fujita S., Love A., Tiemessen D., Lapierre C., Morreel K., Calvo-Polanco M., Flis P., Geldner N., Boursiac Y., Boerjan W., George M.W., Castrillo G., Salt D.E.
ISSN
2041-1723 (Electronic)
ISSN-L
2041-1723
Statut éditorial
Publié
Date de publication
19/04/2021
Peer-reviewed
Oui
Volume
12
Numéro
1
Pages
2320
Langue
anglais
Notes
Publication types: Journal Article
Publication Status: epublish
Résumé
Lignin is a complex polymer deposited in the cell wall of specialised plant cells, where it provides essential cellular functions. Plants coordinate timing, location, abundance and composition of lignin deposition in response to endogenous and exogenous cues. In roots, a fine band of lignin, the Casparian strip encircles endodermal cells. This forms an extracellular barrier to solutes and water and plays a critical role in maintaining nutrient homeostasis. A signalling pathway senses the integrity of this diffusion barrier and can induce over-lignification to compensate for barrier defects. Here, we report that activation of this endodermal sensing mechanism triggers a transcriptional reprogramming strongly inducing the phenylpropanoid pathway and immune signaling. This leads to deposition of compensatory lignin that is chemically distinct from Casparian strip lignin. We also report that a complete loss of endodermal lignification drastically impacts mineral nutrients homeostasis and plant growth.
Pubmed
Open Access
Oui
Création de la notice
26/04/2021 9:53
Dernière modification de la notice
12/01/2022 8:12
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