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Updated: Mar 31, 2026

Comprehensive Compositional Analysis of Plant Cell Walls Lignocellulosic biomass Part I: Lignin
Published on: March 11, 2010
Engineering Monolignol p-Coumarate Conjugates into Poplar and Arabidopsis Lignins
Rebecca A Smith1, Eliana Gonzales-Vigil1, Steven D Karlen1
1Department of Energy's Great Lakes Bioenergy Research Center (R.A.S., E.G.-V., S.D.K., F.L., C.G.W., J.R., S.D.M.) andDepartments of Plant Biology and Biochemistry and Molecular Biology (C.G.W.), Michigan State University, East Lansing, Michigan 48824;Wisconsin Energy Institute, University of Wisconsin, Madison, Wisconsin 53726 (R.A.S., S.D.K., F.L., J.R.);Department of Biochemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706 (R.A.S., F.L., J.R.); andDepartments of Wood Science (E.G.-V., J.-Y.P., S.D.M.) andBotany (L.S.), University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z4.
Abstract:
Lignin acylation, the decoration of hydroxyls on lignin structural units with acyl groups, is common in many plant species. Monocot lignins are decorated with p-coumarates by the polymerization of monolignol p-coumarate conjugates. The acyltransferase involved in the formation of these conjugates has been identified in a number of model monocot species, but the effect of monolignol p-coumarate conjugates on lignification and plant growth and development has not yet been examined in plants that do not inherently possess p-coumarates on their lignins. The rice (Oryza sativa) p-COUMAROYL-Coenzyme A MONOLIGNOL TRANSFERASE gene was introduced into two eudicots, Arabidopsis (Arabidopsis thaliana) and poplar (Populus alba × grandidentata), and a series of analytical methods was used to show the incorporation of the ensuing monolignol p-coumarate conjugates into the lignin of these plants. In poplar, specifically, the addition of these conjugates did not occur at the expense of the naturally incorporated monolignol p-hydroxybenzoates. Plants expressing the p-COUMAROYL-Coenzyme A MONOLIGNOL TRANSFERASE transgene can therefore produce monolignol p-coumarate conjugates essentially without competing with the formation of other acylated monolignols and without drastically impacting normal monolignol production.

