Rchr
J-GLOBAL ID:201801012019037505
Update date: Jan. 10, 2025
Namiki MITANI-Ueno
ミタニ ナミキ | Namiki MITANI-Ueno
Affiliation and department:
Job title:
Associate Professor
Homepage URL (1):
http://www.rib.okayama-u.ac.jp/plant.stress/index-j.html
Research field (1):
Plant nutrition, soil science
Research keywords (6):
輸送体
, 植物ストレス
, 植物栄養
, transporter
, Plant stress
, Plant nutrition
Research theme for competitive and other funds (17):
- 2024 - 2028 イネのケイ素集積ロジスティクス
- 2023 - 2026 Molecular basis and substrate selectivity of toxic metalloid channels and transporters
- 2021 - 2026 Plasticity of mineral element transport system in response to soil environmental fluctuations in plants
- 2021 - 2025 イネ科作物の有害ミネラル集積機構の解明
- 2021 - 2024 Integrated analysis of mineral ion dynamics in rice crop exposed to acute herbivory stress
- 2020 - 2023 低投入を目指したイネ体内におけるミネラル再分配機構の分子生物学的解析
- 2019 - 2023 イネの環境応答統合メカニズムにおける節の役割
- 2019 - 2022 Study on the regulation mechanism of transformation amenability in barley
- 2016 - 2021 Integrated analysis of mineral transport system in crops
- 2019 - 2020 Identification and functional analysis of transporter genes involved in phosphorus recycling in rice
- 2015 - 2018 Elucidation of function of rice node for nutrients distribution
- 2016 - 2017 イネの有害ミネラル集積を制御する因子の同定
- 2016 - 2017 Soil-pH adaptivity trade-off in gramineous plants
- 2015 - 2017 Regulation mechanisms of expression for rice Si transporter Lsi1
- 2012 - 2015 Identification and application of genes involved in accumulation of toxic elements in rice
- 2011 - 2012 Studies on regulation mechanisms of Si transporters
- 2006 - 2008 イネケイ酸吸収遺伝子の機能解析
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Papers (62):
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Naoki Yamaji, Namiki Mitani-Ueno, Toshiki Fujii, Tomonori Shinya, Ji Feng Shao, Shota Watanuki, Yasunori Saitoh, Jian Feng Ma. Shoot-Silicon-Signal protein to regulate root silicon uptake in rice. Nature Communications. 2024. 15. 1
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Dandy Ahamefula Osibe, Yuko Hojo, Tomonori Shinya, Namiki Mitani-Ueno, Ivan Galis. Comprehensive analysis of silicon impact on defense and metabolic responses in rice exposed to herbivory stress. Frontiers in Plant Science. 2024. 15
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Peitong Wang, Naoki Yamaji, Namiki Mitani-Ueno, Jun Ge, Jian Feng Ma. Knockout of a rice K5.2 gene increases Ca accumulation in the grain. Journal of integrative plant biology. 2024
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Namiki Mitani-Ueno, Naoki Yamaji, Sheng Huang, Yuma Yoshioka, Takaaki Miyaji, Jian Feng Ma. A silicon transporter gene required for healthy growth of rice on land. Nature communications. 2023. 14. 1. 6522-6522
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Noriyuki Konishi, Namiki Mitani-Ueno, Naoki Yamaji, Jian Feng Ma. Polar localization of a rice silicon transporter requires isoleucine at both C- and N-termini as well as positively charged residues. The Plant cell. 2023. 35. 6. 2232-2250
more...
MISC (88):
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山地直樹, 三谷奈見季, 馬 建鋒. イネケイ酸応答初期過程のトランスクリプトーム解析. 日本土壌肥料学会 講演要旨集. 2024
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三谷奈見季, 山地直樹, 小西範幸, 馬 建鋒. ケイ酸応答性長距離シグナルSSS相互作用因子の探索. 日本土壌肥料学会 講演要旨集. 2024
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YAMAJI Naoki, SHINYA Tomonori, MITANI-UENO Namiki, GALIS Ivan, MA Jian Feng. Development of a method for collection of rice phloem sap by a DIY insect-laser device. 日本植物生理学会年会(Web). 2024. 65th
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HUANG Hengliang, HISANO Hiroshi, HUANG Sheng, MITANI-UENO Namiki, SATO Kazuhiro, YAMAJI Naoki, MA Jian Feng. Functional characterization of two genes involved in phosphorus loading into barley grains. 日本植物生理学会年会(Web). 2023. 64th
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山地直樹, 櫻井玄, 三谷奈見季, 黄勝, 馬建鋒. イネのケイ酸チャネルLsi6の変異体を用いたケイ素吸収・分配制御の詳細解析. 日本土壌肥料学会講演要旨集(Web). 2023. 69
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Books (1):
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Rice Genomics, Genetics and Breeding
Springer 2018
Lectures and oral presentations (63):
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Functional characterization of a HvSPDT-like gene in barley
(2023)
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ケイ素応答性長距離シグナルの同定
(日本土壌肥料学会2023年度愛媛大会 2023)
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イネのケイ酸チャネルLsi6の変異体を用いたケイ素吸収・分配制御の詳細解析
(日本土壌肥料学会2023年度愛媛大会 2023)
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Functional characterization of two genes involved in phosphorus loading into barley grains.
(2023)
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イネのケイ素吸収を制御する長距離シグナルタンパク質の同定
(第64回日本植物生理学会年会 2023)
more...
Education (1):
- 2006 - 2008 Okayama University
Professional career (1):
Work history (3):
- 2017 - 現在 -
- 2013 - 2017 Okayama University Institute of Plant Science and Resources
- 2010 - 2013 Okayama University Institute of Plant Science and Resources
Association Membership(s) (2):
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