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Annual Review of Genetics|September 3, 2010
The genetics of lignin biosynthesis: connecting genotype to phenotypeNicholas D Bonawitz, Clint ChapplePlant & Cell Physiology|February 8, 2017
Conservation and Divergence of Mediator Structure and Function: Insights from PlantsWhitney L Dolan, Clint ChappleJournal of Immunological Methods|September 8, 2004
Immunodetection and quantification of cytochromes P450 using epitope tagging: immunological, spectroscopic, and kinetic analysis of cinnamate 4-hydroxylaseJohn M Humphreys, Clint ChappleThe New Phytologist|July 30, 2013
The evolutionary paths towards complexity: a metabolic perspectiveJing-Ke WengThe Arabidopsis Book|February 4, 2012
The phenylpropanoid pathway in ArabidopsisChristopher M Fraser, Clint ChappleMolecular Plant|December 9, 2009
The ARABIDOPSIS accession Pna-10 is a naturally occurring sng1 deletion mutantXu Li, Joy Bergelson, Clint ChappleJournal of Experimental Botany|September 11, 2019
Mediator function in plant metabolism revealed by large-scale biologyXiangying Mao, Vikki M Weake, Clint ChappleCurrent Opinion in Biotechnology|January 25, 2019
Linking phenylpropanoid metabolism, lignin deposition, and plant growth inhibitionFabiola Muro-Villanueva, Xiangying Mao, Clint ChappleChemical Society Reviews|September 22, 2017
Natural product modulators of human sensations and mood: molecular mechanisms and therapeutic potentialTomáš Pluskal, Jing-Ke WengThe Plant Cell|January 2, 2003
The Arabidopsis ref2 mutant is defective in the gene encoding CYP83A1 and shows both phenylpropanoid and glucosinolate phenotypesMatthew R Hemm, Max O Ruegger, Clint ChapplePageof 16