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Nature Plants|October 6, 2018
Structural basis for brassinosteroid response by BIL1/BZR1Shohei Nosaki, Takuya Miyakawa, Yuqun Xu, et al.
Bioscience, Biotechnology, and Biochemistry|July 17, 2025
Shaping apple tree architecture: 1,3,4-oxathiazol-2-one derivatives as inhibitors of MdDOX-Co activityYuta Kitajima, Taiki Inoue, Kojiro Kawada, et al.
Plant & Cell Physiology|June 17, 2005
Brassinosteroid regulates fiber development on cultured cotton ovulesYan Sun, Suresh Veerabomma, Haggag A Abdel-Mageed, et al.
Current Biology : CB|June 30, 2007
BAK1 and BKK1 regulate brassinosteroid-dependent growth and brassinosteroid-independent cell-death pathwaysKai He, Xiaoping Gou, Tong Yuan, et al.
Bioscience, Biotechnology, and Biochemistry|July 19, 2014
Analysis of a putative auxin biosynthesis inhibitor, indole-3-oxoethylphosphonic acid, in ArabidopsisYosuke Ishida, Ken-Ichiro Hayashi, Kazuo Soeno, et al.
The New Phytologist|May 14, 2011
Induction of systemic stress tolerance by brassinosteroid in Cucumis sativusXiao-Jian Xia, Yan-Hong Zhou, Ju Ding, et al.
Tree Physiology|February 11, 2009
Shooting control by brassinosteroids: metabolomic analysis and effect of brassinazole on Malus prunifolia, the Marubakaido apple rootstockAdaucto B Pereira-Netto, Ute Roessner, Shozo Fujioka, et al.
International Journal of Molecular Sciences|June 27, 2024
Priming of Immune System in Tomato by Treatment with Low Concentration of L-MethionineTomoya Tanaka, Moeka Fujita, Miyuki Kusajima, et al.
Journal of Agricultural and Food Chemistry|August 10, 2007
Simple and sensitive method for pyrroloquinoline quinone (PQQ) analysis in various foods using liquid chromatography/electrospray-ionization tandem mass spectrometryNatsumi Noji, Takemichi Nakamura, Nobutaka Kitahata, et al.
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