Different combinations of laccase paralogs nonredundantly control the amount and composition of lignin in specific cell types and cell wall layers in Arabidopsis

Author:

Blaschek Leonard1ORCID,Murozuka Emiko12ORCID,Serk Henrik2ORCID,Ménard Delphine12ORCID,Pesquet Edouard123ORCID

Affiliation:

1. Arrhenius Laboratories, Department of Ecology, Environment and Plant Sciences (DEEP), Stockholm University , 106 91 Stockholm , Sweden

2. Umeå Plant Science Centre (UPSC), Department of Plant Physiology, Umeå University , 901 87 Umeå , Sweden

3. Bolin Centre for Climate Research, Stockholm University , 106 91 Stockholm , Sweden

Abstract

AbstractVascular plants reinforce the cell walls of the different xylem cell types with lignin phenolic polymers. Distinct lignin chemistries differ between each cell wall layer and each cell type to support their specific functions. Yet the mechanisms controlling the tight spatial localization of specific lignin chemistries remain unclear. Current hypotheses focus on control by monomer biosynthesis and/or export, while cell wall polymerization is viewed as random and nonlimiting. Here, we show that combinations of multiple individual laccases (LACs) are nonredundantly and specifically required to set the lignin chemistry in different cell types and their distinct cell wall layers. We dissected the roles of Arabidopsis thaliana LAC4, 5, 10, 12, and 17 by generating quadruple and quintuple loss-of-function mutants. Loss of these LACs in different combinations led to specific changes in lignin chemistry affecting both residue ring structures and/or aliphatic tails in specific cell types and cell wall layers. Moreover, we showed that LAC-mediated lignification has distinct functions in specific cell types, waterproofing fibers, and strengthening vessels. Altogether, we propose that the spatial control of lignin chemistry depends on different combinations of LACs with nonredundant activities immobilized in specific cell types and cell wall layers.

Funder

a Gunnar Öquist fellowship from the Kempe foundation

Royal Swedish Academy of Science

Swedish State Strategic Research Funds

Vetenskapsrådet

Stiftelsen för Strategisk Forskning ValueTree

Bolin Centre for Climate Research

Engineering Mechanics for Climate Research

Carl Trygger Foundation

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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