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Wiley InterScience | ||
![]() The Plant JournalVolume 48 Issue 1, Pages 113 - 124 Published Online: 30 Aug 2006 Journal compilation © 2010 Blackwell Publishing Ltd and the Society for Experimental Biology Published in association with the Society for Experimental Biology
Abstract | References | Full Text: HTML, PDF (Size: 993K) | Supporting Information | Related Articles | Citation Tracking Multi-site genetic modulation of monolignol biosynthesis suggests new routes for formation of syringyl lignin and wall-bound ferulic acid in alfalfa (Medicago sativa L.) Copyright 2006 The Authors Journal compilation 2006 Blackwell Publishing Ltd KEYWORDS cell wall phenolics • genetic modification • lignification •
O-methylation • transgenic alfalfa ABSTRACTGenes encoding seven enzymes of the monolignol pathway were independently downregulated in alfalfa (Medicago sativa) using antisense and/or RNA interference. In each case, total flux into lignin was reduced, with the largest effects arising from the downregulation of earlier enzymes in the pathway. The downregulation of l-phenylalanine ammonia-lyase, 4-coumarate 3-hydroxylase, hydroxycinnamoyl CoA quinate/shikimate hydroxycinnamoyl transferase, ferulate 5-hydroxylase or caffeic acid 3-O-methyltransferase resulted in compositional changes in lignin and wall-bound hydroxycinnamic acids consistent with the current models of the monolignol pathway. However, downregulating caffeoyl CoA 3-O-methyltransferase neither reduced syringyl (S) lignin units nor wall-bound ferulate, inconsistent with a role for this enzyme in 3-O-methylation ofS monolignol precursors and hydroxycinnamic acids. Paradoxically, lignin composition differed in plants downregulated in either cinnamate 4-hydroxylase or phenylalanine ammonia-lyase. No changes in the levels of acylated flavonoids were observed in the various transgenic lines. The current model for monolignol and ferulate biosynthesis appears to be an over-simplification, at least in alfalfa, and additional enzymes may be needed for the 3-O-methylation reactions of S lignin and ferulate biosynthesis. Received 5 April 2006; revised 17 June 2006; accepted 21 June 2006. |