Down-regulation of OsMYB103L distinctively alters beta-1,4-glucan polymerization and cellulose microfibers assembly for enhanced biomass enzymatic saccharification in riceLeiming Wu, Tao Xia, Liangcai Peng et al.|Biotechnology for Biofuels|2021Cited by 30
Additional file 6 of Down-regulation of OsMYB103L distinctively alters beta-1,4-glucan polymerization and cellulose microfibers assembly for enhanced biomass enzymatic saccharification in riceLeiming Wu, Tao Xia, Mingliang Zhang et al.|Figshare|2021Cited by 0
Additional file 4 of Down-regulation of OsMYB103L distinctively alters beta-1,4-glucan polymerization and cellulose microfibers assembly for enhanced biomass enzymatic saccharification in riceLeiming Wu, Tao Xia, Mingliang Zhang et al.|Figshare|2021Cited by 0
Additional file 5 of Down-regulation of OsMYB103L distinctively alters beta-1,4-glucan polymerization and cellulose microfibers assembly for enhanced biomass enzymatic saccharification in riceLeiming Wu, Tao Xia, Mingliang Zhang et al.|Figshare|2021Cited by 0
Additional file 2 of Down-regulation of OsMYB103L distinctively alters beta-1,4-glucan polymerization and cellulose microfibers assembly for enhanced biomass enzymatic saccharification in riceLeiming Wu, Tao Xia, Mingliang Zhang et al.|Figshare|2021Cited by 0