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Bioscience, Biotechnology, and Biochemistry|November 13, 2010
Arabidopsis seedlings over-accumulated indole-3-acetic acid in response to aminooxyacetic acidTakahiro Ishii, Kazuo Soeno, Tadao Asami, et al.
Bioscience, Biotechnology, and Biochemistry|February 24, 2021
Induction of tocopherol biosynthesis through heat shock treatment in ArabidopsisMiyuki Kusajima, Moeka Fujita, Takumi Nishiuchi, et al.
Plant Biotechnology Journal|February 20, 2008
Immunomodulation of bioactive gibberellin confers gibberellin-deficient phenotypes in plantsYoshihito Suzuki, Toru Mizuno, Eriko Urakami, et al.
Bioorganic & Medicinal Chemistry|April 26, 2005
Biotin-labeled abscisic acid as a probe for investigating abscisic acid binding sites on plasma membranes of barley aleurone protoplastsNobutaka Kitahata, Takeshi Nakano, Kazuyuki Kuchitsu, et al.
Journal of Pesticide Science|December 8, 2022
Emerging technologies for the chemical control of root parasitic weedsKojiro Kawada, Tomoyuki Koyama, Ikuo Takahashi, et al.
Bioscience, Biotechnology, and Biochemistry|October 12, 2017
Helminthosporic acid functions as an agonist for gibberellin receptorSho Miyazaki, Kai Jiang, Masatomo Kobayashi, et al.
Plant Signaling & Behavior|March 21, 2013
Effects of strigolactone-biosynthesis inhibitor TIS108 on ArabidopsisShinsaku Ito, Mikihisa Umehara, Atsushi Hanada, et al.
Journal of Pesticide Science|October 27, 2018
Discovery and identification of 2-methoxy-1-naphthaldehyde as a novel strigolactone-signaling inhibitorOkishi Mashita, Hikaru Koishihara, Kosuke Fukui, et al.
Journal of Pesticide Science|April 13, 2022
Insect growth regulators with hydrazide moiety inhibit strigolactone biosynthesis in riceKojiro Kawada, Yasuyuki Sasaki, Tadao Asami, et al.
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