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The New Phytologist|July 21, 2010
The origin and evolution of lignin biosynthesisJing-Ke Weng, Clint ChappleBMC Genomics|June 9, 2005
Functional analysis and comparative genomics of expressed sequence tags from the lycophyte Selaginella moellendorffiiJing-Ke Weng, Milos Tanurdzic, Clint ChappleThe Plant Journal : for Cell and Molecular Biology|May 15, 2008
Improvement of biomass through lignin modificationXu Li, Jing-Ke Weng, Clint ChappleThe Plant Journal : for Cell and Molecular Biology|December 15, 2010
Over-expression of F5H in COMT-deficient Arabidopsis leads to enrichment of an unusual lignin and disruption of pollen wall formationJing-Ke Weng, Huaping Mo, Clint ChappleCommunicative & Integrative Biology|August 26, 2009
Parallels in lignin biosynthesis: A study in Selaginella moellendorffii reveals convergence across 400 million years of evolutionJing-Ke Weng, Jo Ann Banks, Clint ChappleThe Plant Cell|July 12, 2011
Independent recruitment of an O-methyltransferase for syringyl lignin biosynthesis in Selaginella moellendorffiiJing-Ke Weng, Takuya Akiyama, John Ralph, et al.Science (New York, N.Y.)|August 28, 2012
Assembly of an evolutionarily new pathway for α-pyrone biosynthesis in ArabidopsisJing-Ke Weng, Yi Li, Huaping Mo, et al.Proceedings of the National Academy of Sciences of the United States of America|May 29, 2008
Independent origins of syringyl lignin in vascular plantsJing-Ke Weng, Xu Li, Jake Stout, et al.The Plant Cell|June 1, 2010
The growth reduction associated with repressed lignin biosynthesis in Arabidopsis thaliana is independent of flavonoidsXu Li, Nicholas D Bonawitz, Jing-Ke Weng, et al.Current Opinion in Biotechnology|April 12, 2008
Emerging strategies of lignin engineering and degradation for cellulosic biofuel productionJing-Ke Weng, Xu Li, Nicholas D Bonawitz, et al.Pageof 16