Xylan glucuronic acid side chains fix suberin‐like aliphatic compounds to wood cell walls

Author:

Derba‐Maceluch Marta1ORCID,Mitra Madhusree1ORCID,Hedenström Mattias2ORCID,Liu Xiaokun1ORCID,Gandla Madhavi L.2ORCID,Barbut Félix R.1ORCID,Abreu Ilka N.1ORCID,Donev Evgeniy N.1ORCID,Urbancsok János1ORCID,Moritz Thomas1ORCID,Jönsson Leif J.2ORCID,Tsang Adrian3ORCID,Powlowski Justin3,Master Emma R.4ORCID,Mellerowicz Ewa J.1ORCID

Affiliation:

1. Department of Forest Genetics and Plant Physiology Umeå Plant Science Centre, Swedish University of Agricultural Sciences 901 83 Umeå Sweden

2. Department of Chemistry Umeå University 901 87 Umeå Sweden

3. Centre for Structural and Functional Genomics Concordia University Montreal QC H4B 1R6 Canada

4. Department of Chemical Engineering and Applied Chemistry University of Toronto 200 College Street Toronto ON M5S 3E5 Canada

Abstract

SummaryWood is the most important repository of assimilated carbon in the biosphere, in the form of large polymers (cellulose, hemicelluloses including glucuronoxylan, and lignin) that interactively form a composite, together with soluble extractives including phenolic and aliphatic compounds. Molecular interactions among these compounds are not fully understood.We have targeted the expression of a fungal α‐glucuronidase to the wood cell wall of aspen (Populus tremulaL. × tremuloidesMichx.) and Arabidopsis (Arabidopsis thaliana(L.) Heynh), to decrease contents of the 4‐O‐methyl glucuronopyranose acid (mGlcA) substituent of xylan, to elucidate mGlcA's functions.The enzyme affected the content of aliphatic insoluble cell wall components having composition similar to suberin, which required mGlcA for binding to cell walls. Such suberin‐like compounds have been previously identified in decayed wood, but here, we show their presence in healthy wood of both hardwood and softwood species. By contrast, γ‐ester bonds between mGlcA and lignin were insensitive to cell wall‐localized α‐glucuronidase, supporting the intracellular formation of these bonds.These findings challenge the current view of the wood cell wall composition and reveal a novel function of mGlcA substituent of xylan in fastening of suberin‐like compounds to cell wall. They also suggest an intracellular initiation of lignin–carbohydrate complex assembly.

Funder

Genome Canada

Kempestiftelserna

Knut och Alice Wallenbergs Stiftelse

Stiftelsen för Strategisk Forskning

Svenska Forskningsrådet Formas

Sveriges Lantbruksuniversitet

Vetenskapsrådet

VINNOVA

Publisher

Wiley

Subject

Plant Science,Physiology

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