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p ‐Coumaroyl‐ <scp>C</scp> o <scp>A</scp> :monolignol transferase ( <scp>PMT</scp> ) acts specifically in the lignin biosynthetic pathway in <scp>B</scp> rachypodium distachyon

Authors :
John C. Sedbrook
John Ralph
Fachuang Lu
Sarah Liu
Philippe Le Bris
Sébastien Antelme
Curtis G. Wilkerson
Cynthia L. Cass
Catherine Lapierre
Deborah L. Petrik
Nicholas Santoro
Dharshana Padmakshan
Richard Sibout
Steven D. Karlen
Source :
The Plant Journal. 77:713-726
Publication Year :
2014
Publisher :
Wiley, 2014.

Abstract

Grass lignins contain substantial amounts of p-coumarate (pCA) that acylate the side-chains of the phenylpropanoid polymer backbone. An acyltransferase, named p-coumaroyl-CoA:monolignol transferase (OsPMT), that could acylate monolignols with pCA in vitro was recently identified from rice. In planta, such monolignol-pCA conjugates become incorporated into lignin via oxidative radical coupling, thereby generating the observed pCA appendages; however p-coumarates also acylate arabinoxylans in grasses. To test the authenticity of PMT as a lignin biosynthetic pathway enzyme, we examined Brachypodium distachyon plants with altered BdPMT gene function. Using newly developed cell wall analytical methods, we determined that the transferase was involved specifically in monolignol acylation. A sodium azide-generated Bdpmt-1 missense mutant had no (

Details

ISSN :
1365313X and 09607412
Volume :
77
Database :
OpenAIRE
Journal :
The Plant Journal
Accession number :
edsair.doi...........4499f528f50432ef79ce25a995a4e97e
Full Text :
https://doi.org/10.1111/tpj.12420