Updated on 2026/07/20

写真a

 
OTANI MASAHIKO
 
Organization
Undergraduate School School of Agriculture Assistant Professor (non-tenured)
Title
Assistant Professor (non-tenured)
External link

Degree

  • Doctor of Agriculture ( 2024.3   Meiji University )

  • Master of Agriculture ( 2020.3   Meiji University )

  • Bachelor of Buddhism ( 2018.3   Taisho University )

  • Bachelor of Agriculture ( 2016.3   Meiji University )

Research Interests

  • secondary metabolism

  • phytohormone

  • chemical biology

  • seed viability

  • seed germination

  • parasitic plant

  • MAP kinase cascade

  • signal transduction

  • Arabidopsis

  • seed dormancy

Research Areas

  • Life sciences / Molecular biology

  • Life sciences / Plants: molecular biology and physiology

Education

  • Meiji University   Graduate School of Agriculture Doctoral program   Life sciences

    2020.4 - 2024.3

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    Country/Region: Japan

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  • Meiji University   Graduate School of Agriculture Master’s program   Life sciences

    2018.4 - 2020.3

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    Country/Region: Japan

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  • Taisho University   Faculty of Buddhist   Department of Buddhist Studies

    2016.4 - 2018.3

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    Country/Region: Japan

    Notes: entered a university as a transfer student

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  • Meiji University   School of Agriculture   Department of Life Sciences

    2012.4 - 2016.3

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    Country/Region: Japan

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  • Shiba-gakuen

    2006.4 - 2012.3

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    Country/Region: Japan

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Research History

  • Meiji University   School of Agriculture   Assistant Professor

    2026.4

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  • Meiji University   School of Science and Technology

    2025.4 - 2026.3

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  • Meiji University   Organization for the Strategic Coordination of Research and Intellectual Properties   Postdoctoral Researcher

    2024.4 - 2026.3

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  • Meiji University   School of Agriculture   Research Assistant

    2023.4 - 2024.3

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  • Meiji University   School of Agriculture   Research Assistant(Associate)

    2020.4 - 2023.3

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    Country/Region:Japan

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  • Meiji University   School of Agriculture   teaching assistant

    2018.4 - 2020.3

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    Country/Region:Japan

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Professional Memberships

Papers

  • Functional conservation of the strigolactone biosynthetic pathway in root parasitic plants Reviewed

    Daichi Okawa, Takumi Yuge, Mayu Kawabuchi, Shiho Jitsukawa, Masahiko Otani, Risa Fujita, Michio Kuruma, Kenji Miura, Satoko Yoshida, Kotaro Nishiyama, Yoshinori Fukasawa, Marco Bürger, Takahito Nomura, Yoshiya Seto

    Plant and Cell Physiology   2026.5

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    Publishing type:Research paper (scientific journal)  

    DOI: 10.1093/pcp/pcaf099

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  • Two phytohormones synergistically induce parasitic weeds seed germination via KAI2d receptors

    Taiki Suzuki, Tomoya Ishikawa, Marco Bürger, Masahiko Otani, Koji Miyamoto, Wendi Jiang, Hanae Kaku, Naoki Kitaoka, Hideyuki Matsuura, Michio Kuruma, Kotaro Nishiyama, Yoshiya Seto

    2025.12

  • Highly Sensitive Strigolactone Perception by a Divergent Clade KAI2 Receptor in a Facultative Root Parasitic Plant, Phtheirospermum japonicum Reviewed

    Saori Takei, Masahiko Otani, Tomoya Ishikawa, Taiki Suzuki, Shoma Okabe, Kotaro Nishiyama, Naoto Kawakami, Yoshiya Seto

    Plant And Cell Physiology   65 ( 12 )   1958 - 1968   2024.12

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    Publishing type:Research paper (scientific journal)  

    DOI: 10.1093/pcp/pcae105

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  • The MKK3 module integrates nitrate and light signals to modulate secondary dormancy in <i>Arabidopsis thaliana</i>. Reviewed

    Regnard Sarah, Masahiko Otani, Marc Keruzore, Teinturier A., Marc Blondel, Naoto Kawakami, Anne Krapp, Jean Colcombe

    Proceedings of the National Academy of Sciences of the United States of America   121 ( 40 )   2024.9

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    Publishing type:Research paper (scientific journal)   Publisher:Cold Spring Harbor Laboratory  

    Abstract

    Seed dormancy corresponds to a reversible blockage of germination. Primary dormancy is established during seed maturation while secondary dormancy is set up on the dispersed seed, following an exposure to unfavourable factors. Both dormancies are relieved in response to environmental factors, such as light, nitrate and coldness. QTL analyses for preharvest sprouting identified MKK3 kinase in cereals as a player in dormancy control. Here, we showed that MKK3 also plays a role in secondary dormancy in Arabidopsis within a signalling module composed of MAP3K13/14/19/20, MKK3 and clade-C MAPKs. Seeds impaired in this module acquired heat-induced secondary dormancy more rapidly than WT seeds and this dormancy is less sensitive to nitrate, a signal able to release dormancy. We also demonstrated that MPK7 was strongly activated in the seed during dormancy release, especially in response to light and nitrate. This activation was greatly reduced inmap3k13/14/19/20andmkk3mutants. Finally, we showed that the module was not regulated, and apparently did not regulate, the genes controlling ABA/GA hormone balance, one of the crucial mechanisms of seed dormancy control. Overall, our work identified a whole new MAPK module controlling seed germination and enlarged the panel of functions of the MKK3-related modules in plants.

    DOI: 10.1073/pnas.2403646121

    PubMed

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  • Genetic, Epigenetic, and Environmental Control of Seed Dormancy and Germination Reviewed

    Masahiko Otani, Lipeng Zheng, Naoto Kawakami

    Methods in Molecular Biology   2024.7

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    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1007/978-1-0716-3965-8_1

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  • Assessment of Dormancy Level and Germination Ability of Seeds with Physiological Dormancy Reviewed

    Lipeng Zheng, Masahiko Otani, Naoto Kawakami

    Methods in Molecular Biology   2024.7

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    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1007/978-1-0716-3965-8_3

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  • The MKK3 MAPK cascade integrates temperature and after-ripening signals to modulate seed germination Reviewed

    Masahiko Otani, Ryo Tojo, Sarah Regnard, Lipeng Zheng, Takumi Hoshi, Suzuha Ohmori, Natsuki Tachibana, Tomohiro Sano, Shizuka Koshimizu, Kazuya Ichimura, Jean Colcombet, Naoto Kawakami

    Proceedings of the National Academy of Sciences   121 ( 28 )   e2404887121   2024.7

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    Authorship:Lead author   Publishing type:Research paper (scientific journal)   Publisher:Cold Spring Harbor Laboratory  

    Abstract

    Temperature is a major environmental cue for seed germination. The permissive temperature range for germination is narrow in dormant seeds and expands during after-ripening. Quantitative trait loci analyses of pre-harvest sprouting in cereals have revealed that MKK3, a mitogen-activated protein kinase (MAPK) cascade protein, is a negative regulator of grain dormancy. Here we show that the MAPKKK19/20-MKK3-MPK1/2/7/14 cascade modulates germination temperature range in Arabidopsis seeds by elevating germinability of the seeds at sub- and supra-optimal temperatures. The expression ofMAPKKK19andMAPKKK20is regulated by an unidentified temperature sensing and signaling mechanism the sensitivity of which is modulated during after-ripening of the seeds, and MPK7 is activated at the permissive temperature for germination regulated by expression levels ofMAPKKK19/20. Activation of the MKK3 cascade represses abscisic acid (ABA) biosynthesis enzyme gene expression, and induces expression of ABA catabolic enzyme and gibberellic acid biosynthesis enzyme genes, resulting in expansion of the germinable temperature range. Our data demonstrate that the MKK3 cascade integrates temperature and after-ripening signals to germination processes including phytohormone metabolism.

    DOI: 10.1073/pnas.2404887121

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  • Group C MAP kinases phosphorylate MBD10 to regulate ABA-induced leaf senescence in Arabidopsis Reviewed

    Yangdan Li, Yoshiaki Kamiyama, Fuko Minegishi, Yuki Tamura, Kota Yamashita, Sotaro Katagiri, Hinano Takase, Masahiko Otani, Ryo Tojo, Gabrielle E. Rupp, Takamasa Suzuki, Naoto Kawakami, Scott C. Peck, Taishi Umezawa

    The Plant Journal   2024.3

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    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1111/TPJ.16706

    Web of Science

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  • A comprehensive survey and prospect of molecular genetic approaches to understand regulatory mechanism of seed dormancy and germination Reviewed

    Masahiko Otani, Naoto Kawakami

    Bulletin of school of agriculture Meiji university   73 ( 1 )   11 - 23   2024.3

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    Authorship:Lead author   Language:Japanese   Publishing type:Research paper (bulletin of university, research institution)  

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  • Seed dormancy 4 like1 of Arabidopsis is a key regulator of phase transition from embryo to vegetative development Reviewed

    Lipeng Zheng, Masahiko Otani, Yuri Kanno, Mitsunori Seo, Yushi Yoshitake, Kohki Yoshimoto, Kazuhiko Sugimoto, Naoto Kawakami

    The Plant Journal   2022.10

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    Language:English   Publishing type:Research paper (scientific journal)  

    <jats:title>SUMMARY</jats:title><jats:p>Seed dormancy is an adaptive trait that enables plants to survive adverse conditions and restart growth in a season and location suitable for vegetative and reproductive growth. Control of seed dormancy is also important for crop production and food quality because it can help induce uniform germination and prevent preharvest sprouting. Rice preharvest sprouting quantitative trait locus analysis has identified <jats:italic>Seed dormancy 4</jats:italic> (<jats:italic>Sdr4</jats:italic>) as a positive regulator of dormancy development. Here, we analyzed the loss‐of‐function mutant of the Arabidopsis ortholog, <jats:italic>Sdr4 Like1</jats:italic> (<jats:italic>SFL1</jats:italic>), and found that the <jats:italic>sfl1‐1</jats:italic> seeds showed precocious germination at the mid‐ to late‐maturation stage similar to rice <jats:italic>sdr4</jats:italic> mutant, but converted to become more dormant than the wild type during maturation drying. Coordinated with the dormancy levels, expression levels of the seed maturation and dormancy master regulator genes, <jats:italic>ABI3</jats:italic>, <jats:italic>FUS3</jats:italic>, and <jats:italic>DOG1</jats:italic> in <jats:italic>sfl1‐1</jats:italic> seeds were lower than in wild type at early‐ and mid‐maturation stages, but higher at the late‐maturation stage. In addition to the seed dormancy phenotype, <jats:italic>sfl1‐1</jats:italic> seedlings showed a growth arrest phenotype and heterochronic expression of <jats:italic>LAFL</jats:italic> (<jats:italic>LEC1</jats:italic>, <jats:italic>ABI3</jats:italic>, <jats:italic>FUS3</jats:italic>, <jats:italic>LEC2</jats:italic>) and <jats:italic>DOG1</jats:italic> in the seedlings. These data suggest that <jats:italic>SFL1</jats:italic> is a positive regulator of initiation and termination of the seed dormancy program. We also found genetic interaction between <jats:italic>SFL1</jats:italic> and the <jats:italic>SFL2</jats:italic>, <jats:italic>SFL3</jats:italic>, and <jats:italic>SFL4</jats:italic> paralogs of <jats:italic>SFL1</jats:italic>, which impacts on the timing of the phase transition from embryo maturation to seedling growth.</jats:p>

    DOI: 10.1111/tpj.15959

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MISC

  • 休眠性と温度の情報を統合し,発芽を制御するメカニズム Invited

    大谷 真彦, 川上 直人

    化学と生物   63 ( 5 )   197 - 199   2025.5

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    Authorship:Lead author   Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)  

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  • Effect of Phenylethanoid Glycosides from the Orobanche minor on the Symbiotic Response between Red Clover and Rhizobia

    大谷真彦, 小野寺唯, 大野春香, 鈴木涼太, 原田智彦, 橋本駿, 西山康太郎, 佐藤修正, 瀬戸義哉, 瀬戸義哉

    植物の生長調節   60 ( Supplement )   2025

  • Distribution and biosynthesis of phenylethanoid glycosides in root parasitic plants in the Orobanchaceae family.

    大野春香, 大谷真彦, CUI Mengqi, 吉田聡子, 西山康太郎, 瀬戸義哉

    植物の生長調節   59 ( Supplement )   2024

Presentations

  • 根寄生植物ヤセウツボから滲出するフェニルエタノイド配糖体を介した生物間相互作用の解析

    大谷真彦, 小野寺唯, 大野春香, 鈴木涼太, 原田智彦, 橋本駿, 番場大, 西山康太郎, 佐藤修正, 瀬戸義哉

    第67回日本植物生理学会年会  2026.3 

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    Event date: 2026.3

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  • Effect of Phenylethanoid Glycosides from the Orobanche minor on the Symbiotic Response between Red Clover and Rhizobia

    2025.11 

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    Event date: 2025.11

    Presentation type:Oral presentation (general)  

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  • The MKK3-MAPK Cascade Modulates Seed Germination by Integrating Temperature and After-ripening Signals

    Masahiko Otani, Ryo Tojo, Sarah Regnard, Lipeng Zheng, Kazuya Ichimura, Jean Colcombet, Naoto Kawakami

    The 66th annual meeting of the japanese society of plant physiology  2025.3 

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    Event date: 2025.3

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  • 種子休眠の制御における穂発芽関連因子Sdr4とMKK3の生理・分子機能

    川上直人, 大谷真彦, 鄭李鵬

    令和6年度穂発芽研究会  2024.12 

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    Event date: 2024.12

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  • Distribution and biosynthesis of phenylethanoid glycosides in root parasitic plants in the Orobanchaceae family.

    2024.10 

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    Event date: 2024.10 - 2024.11

    Presentation type:Oral presentation (general)  

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  • Functional analysis of strigolactone biosynthesis enzymes in the root parasitic plant Orobanche minor

    2024.10 

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    Event date: 2024.10 - 2024.11

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  • グループC MAP キナーゼはMBD10 をリン酸化してシロイヌナズナのアブシジン酸誘導の葉の老化を制御する

    李揚丹, 神山佳明, 峯岸芙有子, 田村由貴, 山下昂太, 片桐壮太郎, 高瀬緋奈乃, 大谷真彦, 東城僚, Gabrielle E. Rupp, 鈴木孝征, 川上直人, Scott C. Peck, 梅澤泰史

    第65回日本植物生理学会年会  2024.3 

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    Event date: 2024.3

    Presentation type:Oral presentation (general)  

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  • The MKK3-MAPK cascade modulates primary dormancy and germination temperature range in Arabidopsis seeds

    Masahiko Otani, Ryo Tojo, Sarah Regnard, Kazuya Ichimura, Jean Colcombet, Naoto Kawakami

    14th Biennial Conference of the International Society for Seed Science  2023.7 

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    Event date: 2023.7

    Language:English   Presentation type:Poster presentation  

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  • The MKK3 module integrates nitrate and light signals to modulate secondary dormancy

    Sarah Regnard, Masahiko Otani, Naoto Kawakami, Anne Krapp, Jean Colcombet

    14th Biennial Conference of the International Society for Seed Science  2023.7 

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    Event date: 2023.7

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  • シロイヌナズナ種子発芽の高温阻害におけるMAPKカスケードとアブシシン酸の相互作用

    大谷真彦, 東城僚, 横田航平, 市村和也, 川上直人

    第64回日本植物生理学会年会  2023.3 

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    Event date: 2023.3

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  • MAPKカスケードによるシロイヌナズナ種子の休眠と発芽の制御

    大谷真彦, 東城僚, 川上直人

    穂発芽研究会第24回ワークショップ  2023.3 

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    Event date: 2023.3

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  • シロイヌナズナのSFL(Sdr4 Like)は、未熟種子の休眠性を高め、完熟種子の休眠性を低下させる

    鄭李鵬, 大谷真彦, 川上直人

    穂発芽研究会第24回ワークショップ  2023.3 

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    Event date: 2023.3

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  • シロイヌナズナのSdr4-like1(SFL1)は,種子の休眠から発芽への転換を制御する

    鄭李鵬, 大谷真彦, 杉本和彦, 川上直人

    第63回日本植物生理学会年会  2022.3 

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    Event date: 2022.3

    Presentation type:Poster presentation  

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  • Sdr4-like genes of Arabidopsis modulate seed dormancy, germination and early seeding growth by regulating maturation and dormancy regulator genes

    LiPeng Zheng, Masahiko Otani, Kazuhiko Sugimoto, Naoto Kawakami

    13th Triennial Meeting of the International Society for Seed Science  2021.8 

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    Event date: 2021.8

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  • シロイヌナズナのSdr4-like (SFL)は胚発生および休眠遺伝子の発現を制御し、種子発芽と初期芽生えの発達を促進する

    鄭李鵬, 大谷真彦, 杉本和彦, 川上直人

    第62回日本植物生理学会大会  2021.3 

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    Event date: 2021.3

    Presentation type:Poster presentation  

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  • 種子発達過程や発芽時に誘導されるMAPKKKの役割

    大谷真彦, 東城僚, 鄭李鵬, 田中瑞季, 杉本和彦, 市村和也, 川上直人

    第62回日本植物生理学会大会  2021.3 

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    Event date: 2021.3

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  • ハマウツボ科根寄生植物が生産するフェニルエタノイド配糖体の生合成に関する研究

    小野寺唯, 大野春香, 大谷真彦, 西山康太郎, 瀬戸義哉

    日本農芸化学会関東支部2025年度大会  2025.8 

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  • MAPキナーゼカスケードによる種子の休眠と発芽の温度反応性の制御

    大谷真彦

    第2回 多細胞休止を研究する会(主催:文部科学省 学術変革領域B フィロスタシス)  2025.7 

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    Language:Japanese   Presentation type:Oral presentation (general)  

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  • シロイヌナズナにおけるSdr4オーソログ、SFL1は未熟発芽を抑制すると共に、完熟種子の休眠を抑制し、芽生えの確立に寄与する

    鄭李鵬, 大谷真彦, 菅野裕理, 瀬尾光範, 杉本和彦, 川上直人

    穂発芽研究会第23回ワークショップ  2021.8 

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  • 種子発芽時のジベレリン制御におけるMAPKカスケードの役割

    大谷 真彦, 東城 僚, 鄭 李鵬, 大森 涼葉, 田中 瑞季, 杉本 和彦, 市村 和也, 川上 直人

    第61回日本植物生理学会年会  2020.3 

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  • ROLE OF MAPK CASCADE IN SEED DORMANCY AND GERMIANTION

    Masahiko Otani, LiPeng Zheng, Kazuya Ichimura, Kazuhiko Sugimoto, Naoto Kawakami

    6th Workshop in the Molecular Aspects of Seed Dormancy and Germination  2019.9 

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  • MAPキナーゼカスケードによるシロイヌナズナ種子休眠の制御機構

    大谷 真彦, 東城 僚, 大森 涼葉, 鄭 李鵬, 川上 直人

    私立大学戦略的研究基盤形成支援事業プロジェクト・シンポジウム  2019.3 

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  • Genetic interactions of seed dormancy regulatory genes that identified from different plant species in Arabidopsis

    LiPeng Zheng, Ryo Tojo, Masahiko Otani, Kazuhiko Sugimoto, Naoto Kawakami

    6th Plant Dormancy Symposium 2018  2018.10 

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  • Functional analysis of MAP kinase cascade genes in dormancy of Arabidopsis seeds

    Masahiko Otani, Ryo Tojo, Suzuha Omori, Kazuhiko Sugimoto, Naoto Kawakami

    6th Plant Dormancy Symposium 2018  2018.10 

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  • 種子休眠制御因子とタンパク質リン酸化カスケードの遺伝的相互作用

    東城 僚, 大森 涼葉, 鄭 李鵬, 大谷 真彦, 杉本 和彦, 川上 直人

    第59回日本植物生理学会年会  2018.3 

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  • 異なる種から同定された種子休眠制御遺伝子のシロイヌナズナにおける遺伝的相互作用

    鄭 李鵬, 東城 僚, 大谷 真彦, 大森 涼葉, 杉本 和彦, 川上 直人

    第58回日本植物生理学会年会  2017.3 

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  • Contribution of MAP kinase cascade to seed dormancy of Arabidopsis

    Ryo Tojo, Masahiko Otani, Naoto Kawakami

    5th Workshop in the Molecular Aspects of Seed Dormancy and Germination  2016.6 

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Research Projects

  • 根寄生植物ヤセウツボの温度による種子発芽調節機構の分子基盤構築

    2026.4 - 2026.9

    東京農業大学生物資源ゲノム解析センター  生物資源ゲノム解析拠点 2026年度(前期)共同利用・共同研究 

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  • 種子発芽を調節するMAPキナーゼカスケードの温度依存的な活性制御因子の探索

    Grant number:25K23721  2025.7 - 2027.3

    日本学術振興会  科学研究費助成事業  研究活動スタート支援

    大谷 真彦

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    Grant amount:\2600000 ( Direct Cost: \2000000 、 Indirect Cost:\600000 )

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  • MKK3-MAPキナーゼカスケードを介した温度依存的な発芽制御メカニズムの解明

    2025.7 - 2026.3

    明治大学  若手研究 

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    Authorship:Principal investigator 

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  • 植物のMKK3を中心としたリン酸化カスケードにおける分子複合体モデルの検証

    Grant number:2025-4011  2025.4 - 2026.2

    公益財団法人 日本科学協会  2025年度 笹川科学研究助成 

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    Authorship:Principal investigator 

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  • 種子発芽を制御する温度の情報伝達におけるMAPKカスケードの役割

    2022.4 - 2023.3

    明治大学  新領域創成型研究

    大谷真彦, 川上直人

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    Authorship:Coinvestigator(s) 

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Teaching Experience

  • 有機化学・有機分析実験

    2026.4 Institution:明治大学

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  • 植物分子生理学

    2025.9 - 2026.3 Institution:明治大学

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  • 基礎化学実験1

    2025.4 - 2025.9 Institution:明治大学

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Media Coverage

  • 根寄生雑草が宿主植物由来の発芽シグナル分子 生産能力を有すると解明 明治大 Internet

    JAcom (農業協同組合新聞)  2025.10

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