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Pest Management Science|December 7, 2018
Metyltetraprole, a novel putative complex III inhibitor, targets known QoI-resistant strains of Zymoseptoria tritici and Pyrenophora teresHaruka Suemoto, Yuichi Matsuzaki, Fukumatsu IwahashiPesticide Biochemistry and Physiology|April 11, 2021
Metabolomic analysis of Schoenoplectus juncoides reveals common markers of acetolactate synthase inhibition among paddy weedsMasashi Hikosaka, Fukumatsu Iwahashi, Seiji YamatoPest Management Science|February 12, 2024
In vitro and in planta investigation of succinate dehydrogenase inhibitor resistance conferred by target-site amino acid substitutions in Puccinia horiana, chrysanthemum white rustYuichi Matsuzaki, Toshiyuki Harada, Fukumatsu IwahashiPest Management Science|October 14, 2020
Microtiter plate test using liquid medium is an alternative method for monitoring metyltetraprole sensitivity in Cercospora beticolaYuichi Matsuzaki, Yukie Uda, Makoto Kurahashi, et al.Pest Management Science|November 27, 2019
Antifungal activity of metyltetraprole against the existing QoI-resistant isolates of various plant pathogenic fungi: Metyltetraprole against QoI-R isolatesYuichi Matsuzaki, So Kiguchi, Haruka Suemoto, et al.Mass Spectrometry (Tokyo, Japan)|October 16, 2023
Using Mass Spectrometry Imaging to Visualize Pesticide Accumulation and Time-Dependent Distribution in Fungicide-Coated SeedsShuichi Shimma, Hiromi Saito, Takuya Inoue, et al.Journal of Pesticide Science|September 11, 2020
Physiological effects of mandestrobinKunio Ido, So Kiguchi, Fukumatsu Iwahashi, et al.Journal of Pesticide Science|December 11, 2020
Sensitivity of Botrytis cinerea to fenpyrazamine in Japan and its disease control efficacy against the low-sensitive isolateDai Hirotomi, Soichi Tanaka, Fukumatsu Iwahashi, et al.Plos One|November 20, 2018
Features of interactions responsible for antifungal activity against resistant type cytochrome bc1: A data-driven analysis based on the binding free energy at the atomic levelAkihiko Arakawa, Yukako Kasai, Kazuto Yamazaki, et al.Pest Management Science|October 18, 2019
Pyridachlometyl has a novel anti-tubulin mode of action which could be useful in anti-resistance managementYuichi Matsuzaki, Satoshi Watanabe, Toshiyuki Harada, et al.Pageof 2