Rchr
J-GLOBAL ID:200901086325387424
Update date: Mar. 14, 2023
Taji Teruaki
Taji Teruaki
Papers (43):
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Kajino T, Yamaguchi M, Oshima Y, Nakamura A, Narushima J, Yaguchi Y, Yotsui I, Sakata Y, Taji T. KLU/CYP78A5, a cytochrome P450 monooxygenase identified via FOX hunting, contributes to cuticle biosynthesis and improves various abiotic stress tolerances. Frontiers in Plant Science. 2022. 13. 904121. 904121-904121
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Miao Y, Xun Q, Teruaki Taji T, Tanaka K, Yasuno N, Ding C, Kyozuka J. ABERRANT PANICLE ORGANIZATION2 controls multiple steps in panicle formation through common direct target genes. Plant Physiology. 2022. 189. 4. 2210-2226
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Uchida K, Yamaguchi M, Kanamori K, Ariga H, Isono K, Kajino T, Tanaka K, Saijo Y, Yotsui I, Sakata Y, et al. MAP KINASE PHOSPHATASE1 promotes osmotolerance by suppressing PHYTOALEXIN DEFICIENT4-independent immunity. Plant Physiology. 2022
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Tsukimoto, R, Isono, K, Kajino, T, Iuchi, S, Shinozawa, A, Yotsui, I, Sakata, Y, Taji., T. Mitochondrial fission complex is required for long-term heat tolerance of Arabidopsis. Plant and Cell Physiology. 2022. 63. 3. 296-304
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Toriyama, T, Shinozawa, A, Yasumura, Y, Saruhashi, M, Hiraide, M, Ito, S, Matsuura, H, Kuwata, K, Yoshida, M, Baba, T, et al. Sensor histidine kinases mediate ABA and osmostress signaling in the moss Physcomitrium patens. Current Biology. 2022. 32. 1. 164-175
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MISC (20):
Books (2):
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プラントミメティクスー植物に学ぶー
NTS社 2006
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Inositols and their metabolites in abiotic and biotic stress responses
Subcellular Biochemistry 2006
Lectures and oral presentations (51):
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植物の高温に対するレジリエンス機構
(日本植物生理学会シンポジウム 2022)
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Dissecting the genetic control of natural variation in abiotic stress tolerances among Arabidopsis thaliana accessions
(農学先端研究国際フォーラム ファイトジーンの可能性と未来XI 2019)
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Dissecting the genetic control of natural variation in acquired osmotolerance among Arabidopsis thaliana accessions
(Japan-Taiwan Plant Biology 2019 2019)
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ナチュラルバリエーションを利用した植物の高温耐性付与遺伝子の探索
(日本農芸化学会2015年度大会シンポジウム 2015)
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Arabidopsis thaliana accessionsにおける高温ストレス耐性のQTL解析
(第54回 日本植物生理学会大会 2015)
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