Present address: Chemistry Division, Doğuş University, Istanbul, Turkey.
Biosynthesis and incorporation of side-chain-truncated lignin monomers to reduce lignin polymerization and enhance saccharification
Version of Record online: 27 MAR 2012
© 2012 The Authors. Plant Biotechnology Journal © 2012 Society for Experimental Biology, Association of Applied Biologists and Blackwell Publishing Ltd
Plant Biotechnology Journal
Volume 10, Issue 5, pages 609–620, June 2012
How to Cite
Eudes, A., George, A., Mukerjee, P., Kim, J. S., Pollet, B., Benke, P. I., Yang, F., Mitra, P., Sun, L., Çetinkol, Ö. P., Chabout, S., Mouille, G., Soubigou-Taconnat, L., Balzergue, S., Singh, S., Holmes, B. M., Mukhopadhyay, A., Keasling, J. D., Simmons, B. A., Lapierre, C., Ralph, J. and Loqué, D. (2012), Biosynthesis and incorporation of side-chain-truncated lignin monomers to reduce lignin polymerization and enhance saccharification. Plant Biotechnology Journal, 10: 609–620. doi: 10.1111/j.1467-7652.2012.00692.x
- Issue online: 1 MAY 2012
- Version of Record online: 27 MAR 2012
- Received 22 December 2011; revised 9 February 2012; accepted 14 February 2012.
Figure S1 Synthesis of C6C1 monomers upon HCHL activity.
Figure S2 Organ- and tissue-specific activity of the IRX5 promoter in Arabidopsis.
Figure S3 Spectral analysis of IRX5:HCHL and wild-type plants.
Table S1 Quantitative analysis of soluble aromatics in stems from 5-week-old wild-type (WT) and IRX5:HCHL plants.
Table S2 Quantitative analysis of acid-hydrolysed soluble aromatics in stems from 5-week-old wild-type (WT) and IRX5:HCHL plants.
Table S3 List of genes differentially expressed genes in the IRX5:HCHL stems.
Data S1 Supporting experimental procedures for supplemental data.
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