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Field and saccharification performances of poplars severely downregulated in CAD1
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Engineering Curcumin Biosynthesis in Poplar Affects Lignification and Biomass Yield
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Whole genome duplication of wild-type and CINNAMYL ALCOHOL DEHYDROGENASE1-downregulated hybrid poplar reduces biomass yield and causes a brittle apex phenotype in field-grown wild types
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Rewired phenolic metabolism and improved saccharification efficiency of a Zea mays cinnamyl alcohol dehydrogenase 2 (zmcad2) mutant
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Vessel‐ and ray‐specific monolignol biosynthesis as an approach to engineer fiber‐hypolignification and enhanced saccharification in poplar
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CRISPR‐Cas9 editing of Caffeoyl Shikimate Esterase 1 and 2 shows their importance and partial redundancy in lignification in Populus tremula x P. alba
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Tailoring poplar lignin without yield penalty by combining a null and haploinsufficient CINNAMOYL-CoA REDUCTASE2 allele
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Introducing curcumin biosynthesis in Arabidopsis enhances lignocellulosic biomass processing
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Significant influence of lignin on axial elastic modulus of poplar wood at low microfibril angles under wet conditions
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RNAi-suppression of barley caffeic acid O-methyltransferase modifies lignin despite redundancy in the gene family