Rchr
J-GLOBAL ID:200901001353949165
Update date: Oct. 08, 2024
Taniguchi Mitsutaka
Taniguchi Mitsutaka
Affiliation and department:
Job title:
Professor
Research field (1):
Crop production science
Research keywords (6):
C4植物
, transporter
, mitochondria
, chloroplast
, environmental stress
, photosynthesis
Research theme for competitive and other funds (25):
- 2024 - 2029 Omics of morphogenesis and physiological function in plasma treated plants focusing on their root system
- 2024 - 2026 Spatial division of labor in photosynthetic metabolism by uneven distribution of Rubisco and starch in chloroplast stroma space
- 2020 - 2023 C4植物で普遍的に起こる葉肉葉緑体凝集運動の誘導機構と生理的役割の解明
- 2017 - 2020 Study on three-dimensional arrangement of organelles in C4 photosynthetic cells and its arrangement formation mechanism
- 2016 - 2018 Crosstalk between C4 photosynthetic cycles through aspartate transport
- 2015 - 2018 The elucidation of the relationship between the formation of stromule and salinity tolerance by 3D reconstruction
- 2014 - 2017 C4植物に特異的なアブシジン酸応答性葉緑体凝集運動の生理的役割と分子機構の解明
- 2014 - 2016 迅速細胞分離法を用いたイネ科植物の葉肉・維管束鞘細胞特異的機能に関わる遺伝子同定
- 2011 - 2013 リンゴ酸バルブ増強による作物の窒素同化能および環境ストレス耐性能向上の試み
- 2009 - 2012 C4植物の葉肉葉緑体が環境ストレスに応答して集合運動する分子機構とその生理的意義
- 2008 - 2012 イネ科におけるグリシンベタイン合成・輸送・蓄積機構に関する研究
- 2010 - 2010 C4光合成に関わる葉緑体の新たな機能分化
- 2006 - 2009 C4植物における塩ストレス障害発現機構と耐塩性機構の解明
- 2005 - 2007 代謝産物輸送体発現変異株を用いた葉緑体リンゴ酸バルブの解析
- 2004 - 2007 作物組織における遺伝子発現過程の可視化に関する研究
- 2003 - 2006 作物における塩ストレス障害の発現機構とその軽減対策
- 2002 - 2004 葉緑体包膜に局在する代謝産物輸送体の生理機能の解明
- 2000 - 2004 植物ホルモンを介した窒素情報伝達におけるHis・Aspリン酸リレー系の役割
- 2000 - 2002 C4光合成回路に関与するリンゴ酸輸送体の同定と機能特性の解析
- 1998 - 2000 C4植物キビのミトコンドリアに存在するトランスロケーターの機能と発現の解析
- 1997 - 1998 名古屋大学-ロザリオ大学間協定による南米固有の資源生物に関する生化学研究の推進
- 1996 - 1997 窒素に応答したサイトカイニン蓄積の分子機構
- 1995 - 1995 高等植物におけるリンゴ酸輸送体の機能分化と発現の解析
- 1994 - 1994 トランスロケーターを指標としたC4植物細胞の機能分化の解析
- 1992 - 1993 The Regulation of Photosynthesis and Nitrogen Assimilation Genes by Nitrogen in C4 Plants
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Papers (104):
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Yuta Kato, Takao Oi, Yoshikatsu Sato, Mitsutaka Taniguchi. Bundle sheath cell-dependent chloroplast movement in mesophyll cells of C4plants analyzed using live leaf-section imaging. 2024
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Uchida, Y., Uchida, H., Sato, T., Nishimoto, Y., Tsutsumi, K., Oi, T., Taniguchi, M., Inoue, K., Suzuki, Y. Cytochrome c oxidase subunit I gene in Thalassiosira nordenskioeldii strains inhabiting in cold and warm sea waters. Proceedings of the Japan Academy Series B: Physical and Biological Sciences. 2024. 100. 2
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Rachana Ouk, Takao Oi, Daisuke Sugiura, Mitsutaka Taniguchi. Structural changes of mesophyll cells in the rice leaf tissue in response to salinity stress based on the three-dimensional analysis. AoB PLANTS. 2024. 16. 2. plae016
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Saki Yamakawa, Yuta Kato, Mitsutaka Taniguchi, Takao Oi. Intracellular positioning of mesophyll chloroplasts following to aggregative movement in Setaria viridis analysed three-dimensionally with a confocal laser scanning microscope. Flora. 2023
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Y. Kato, T. Oi, M. Taniguchi. Aggregative movement of C 4 mesophyll chloroplasts is promoted by low CO 2 under high intensity blue light. Plant Biology. 2023
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MISC (90):
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Effects of salinity stress on the intracellular arrangement and three-dimensional structure of chloroplasts in the rice mesophyll cells. 2021. 31. 1. 4-13
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Koji Yamane, Takao Oi, Sakiko Enomoto, Tomoyo Nakao, Shigeo Arai, Hiroshi Miyake, Mitsutaka Taniguchi. Three-dimensional ultrastructure of chloroplast pockets formed under salinity stress. Plant Cell and Environment. 2018. 41. 3. 563-575
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Takao Oi, Sakiko Enomoto, Tomoyo Nakao, Shigeo Arai, Koji Yamane, Mitsutaka Taniguchi. Three-dimensional intracellular structure of a whole rice mesophyll cell observed with FIB-SEM. ANNALS OF BOTANY. 2017. 120. 1. 21-28
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Eiji Omoto, Yugo Iwasaki, Hiroshi Miyake, Mitsutaka Taniguchi. Salinity induces membrane structure and lipid changes in maize mesophyll and bundle sheath chloroplasts. PHYSIOLOGIA PLANTARUM. 2016. 157. 1. 13-23
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Sarit Weissmann, Fangfang Ma, Koki Furuyama, James Gierse, Howard Berg, Ying Shao, Mitsutaka Taniguchi, Doug K. Allen, Thomas P. Brutnell. Interactions of C-4 Subtype Metabolic Activities and Transport in Maize Are Revealed through the Characterization of DCT2 Mutants. PLANT CELL. 2016. 28. 2. 466-484
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Books (10):
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Significance of C4 leaf structure at the tissue and cellular levels.
Springer 2018
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植物のCO2固定機能を高めるC4光合成の最近の話題
日本の科学者 2012
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青色光とABAに応答したC4植物の葉肉細胞における葉緑体の運動
光合成研究 2011
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光合成事典
学会出版センター 2003
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医薬バイオテクノロジー事典
廣川書店 2003
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Lectures and oral presentations (31):
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トウモロコシの葉肉細胞と維管束鞘細胞における塩ストレスに応答した遺伝子発現の比較
(日本作物学会第245回講演会 2018)
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ローズグラスの葉表面における塩腺の増加に浸透圧ストレスおよびイオンストレスが及ぼす影響
(日本作物学会第245回講演会 2018)
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C4植物における低CO2濃度により促進される葉肉葉緑体の凝集配置.
(日本作物学会第245回講演会 2018)
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C4植物葉肉葉緑体の凝集運動に伴う細胞内配置と形態の三次元解析
(日本作物学会第245回講演会 2018)
-
イネ科植物における維管束鞘葉緑体の細胞内配置と形状の三次元解析
(日本作物学会第245回講演会 2018)
more...
Education (2):
- 1986 - 1988 Saitama University Graduate School, Division of Natural Science
- 1981 - 1986 Osaka University School of Science
Professional career (2):
- Master of Science (Saitama University)
- Doctor of Agriculture (Nagoya University)
Work history (9):
- 2018/04/01 - 現在 Nagoya University Graduate School of Bioagricultural Sciences Professor
- 2013/11/16 - 現在 Nagoya University Graduate School of Bioagricultural Sciences
- 2013/11/16 - 2018/03/31 Nagoya University Graduate School of Bioagricultural Sciences Department of Biosphere Resources Science Division of Bioresource Production and Agroecology Professor
- 2007/04/01 - 2013/11/15 Nagoya University Graduate School of Bioagricultural Sciences
- 2007/04/01 - 2013/11/15 Nagoya University Graduate School of Bioagricultural Sciences Department of Biosphere Resources Science Associate professor
- 2000/12/01 - 2007/03/31 Nagoya University Graduate School of Bioagricultural Sciences
- 2007/03/31 - Nagoya University Graduate School of Bioagricultural Sciences Department of Biosphere Resources Science Assistant Professor
- 1997/04/01 - 2000/11/30 Nagoya University Graduate School of Bioagricultural Sciences
- 1990/11/01 - 1997/03/31 Nagoya University School of Agricultural Sciences
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Association Membership(s) (3):
The Japanese Society of Photosynthesis Research
, 日本植物生理学会
, 日本作物学会
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