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Plant Molecular Biology|September 11, 2012
Constitutive activation of brassinosteroid signaling in the Arabidopsis elongated-D/bak1 mutantYuhee Chung, Vitnary Choe, Shozo Fujioka, et al.The Plant Cell|November 15, 2003
A rice brassinosteroid-deficient mutant, ebisu dwarf (d2), is caused by a loss of function of a new member of cytochrome P450Zhi Hong, Miyako Ueguchi-Tanaka, Kazuto Umemura, et al.Proceedings of the National Academy of Sciences of the United States of America|November 23, 2011
Brassinosteroid control of sex determination in maizeThomas Hartwig, George S Chuck, Shozo Fujioka, et al.Plant Physiology|January 13, 2006
The regulation of DWARF4 expression is likely a critical mechanism in maintaining the homeostasis of bioactive brassinosteroids in ArabidopsisHo Bang Kim, Mi Kwon, Hojin Ryu, et al.Plos One|January 22, 2013
Genetic variation in plant CYP51s confers resistance against voriconazole, a novel inhibitor of brassinosteroid-dependent sterol biosynthesisWilfried Rozhon, Sigrid Husar, Florian Kalaivanan, et al.Plant Physiology|November 8, 2003
CYP72B1 inactivates brassinosteroid hormones: an intersection between photomorphogenesis and plant steroid signal transductionEdward M Turk, Shozo Fujioka, Hideharu Seto, et al.The Biochemical Journal|September 28, 2002
Triadimefon, a fungicidal triazole-type P450 inhibitor, induces brassinosteroid deficiency-like phenotypes in plants and binds to DWF4 protein in the brassinosteroid biosynthesis pathwayTadao Asami, Masaharu Mizutani, Yukihisa Shimada, et al.Developmental Cell|April 24, 2002
Nuclear-localized BZR1 mediates brassinosteroid-induced growth and feedback suppression of brassinosteroid biosynthesisZhi Yong Wang, Takeshi Nakano, Joshua Gendron, et al.The Plant Cell|February 12, 2005
A novel cytochrome P450 is implicated in brassinosteroid biosynthesis via the characterization of a rice dwarf mutant, dwarf11, with reduced seed lengthSumiyo Tanabe, Motoyuki Ashikari, Shozo Fujioka, et al.Scientific Reports|July 20, 2017
Evolutionarily conserved BIL4 suppresses the degradation of brassinosteroid receptor BRI1 and regulates cell elongationAyumi Yamagami, Chieko Saito, Miki Nakazawa, et al.Pageof 12